Silvia Bombelli, Chiara Grasselli, Paolo Mazzola ...
· Oxidative Stress
· School of Medicine and Surgery, University of Milano-Bicocca, Monza, Italy.
· pubmed
Frailty is an age-related syndrome that drives multiple physiological system impairments in some older adults, and its pathophysiological mechanisms remain unclear. We evaluated whether frailty-related biological processes could impair stem cell compartments, specifically the ren...
Frailty is an age-related syndrome that drives multiple physiological system impairments in some older adults, and its pathophysiological mechanisms remain unclear. We evaluated whether frailty-related biological processes could impair stem cell compartments, specifically the renal stem compartment, given that kidney dysfunctions are frequent in frailty. A well-characterized in vitro nephrosphere model of human adult renal stem/progenitor cells has been instrumental to and was appropriate for verifying this hypothesis in our current research. Evaluating the effects of plasma from older individuals with frailty (frail plasma) on allogeneic renal stem/progenitor cells, we showed significant functional impairment and nuclear DNA damage in the treated cells of the renal stem compartment. The analysis of the frail plasma revealed mitochondrial functional impairment associated with the activation of oxidative stress and a unique inflammatory mediator profile in frail individuals. In addition, the plasma of frail subjects also contained the highest percentage of DNA-damaged autologous circulating hematopoietic progenitor/stem cells. The integration of both molecular and functional data obtained allowed us to discern patterns associated with frailty status, irrespective of the comorbidities present in the frail individuals. The data obtained converged toward biological conditions that in frailty caused renal and hematopoietic impairment of stem cells, highlighting the possibility of concomitant exhaustion of several stem compartments.
Longevity Relevance Analysis
(4)
The paper investigates the biological mechanisms underlying frailty, an age-related syndrome, and its impact on stem cell compartments, specifically in the context of oxidative stress and DNA damage. This focus on the root causes of frailty and its implications for stem cell function is relevant to longevity research. However, while the findings contribute to understanding frailty and its biological underpinnings, they represent solid research with limited immediate implications for broader longevity strategies, thus warranting a score of 4.
Yibing Zhu, Xiaomeng Tong, Jingyuan Xue ...
· Saccharomyces cerevisiae
· Zhejiang Provincial Key Laboratory for Cancer Molecular Cell Biology, Life Sciences Institute, Zhejiang University, Hangzhou, China.
· pubmed
Phospholipid and nucleotide syntheses are fundamental metabolic processes in eukaryotic organisms, with their dysregulation implicated in various disease states. Despite their importance, the interplay between these pathways remains poorly understood. Using genetic and metabolic ...
Phospholipid and nucleotide syntheses are fundamental metabolic processes in eukaryotic organisms, with their dysregulation implicated in various disease states. Despite their importance, the interplay between these pathways remains poorly understood. Using genetic and metabolic analyses in Saccharomyces cerevisiae, we elucidate how cytidine triphosphate usage in the Kennedy pathway for phospholipid synthesis influences nucleotide metabolism and redox balance. We find that deficiencies in the Kennedy pathway limit nucleotide salvage, prompting compensatory activation of de novo nucleotide synthesis and the pentose phosphate pathway. This metabolic shift enhances the production of antioxidants such as NADPH and glutathione. Moreover, we observe that the Kennedy pathway for phospholipid synthesis is inhibited during replicative aging, indicating its role in antioxidative defense as an adaptive mechanism in aged cells. Our findings highlight the critical role of phospholipid synthesis pathway choice in the integrative regulation of nucleotide metabolism, redox balance and membrane properties for cellular defense.
Longevity Relevance Analysis
(4)
The paper explores the interplay between phospholipid biosynthesis and nucleotide metabolism, highlighting how these processes are affected during replicative aging. While it provides insights into metabolic shifts that may relate to cellular defense mechanisms in aged cells, the findings are more focused on metabolic pathways rather than directly addressing the root causes of aging or lifespan extension. Thus, it represents solid research but with limited impact on the broader field of longevity.
Ziyi Cai, Anna Olia Papacosta, Lucy T Lennon ...
· Loneliness
· Population Health Sciences Institute, Newcastle University, Newcastle upon Tyne, United Kingdom.
· pubmed
Social connections may impact the dynamic trajectory of frailty. Using data from the British Regional Heart Study (BRHS) in the UK (n = 715) and the US Health, Aging and Body Composition (Health ABC) Study (n = 1256), we conducted multinominal regression analyses to examine the a...
Social connections may impact the dynamic trajectory of frailty. Using data from the British Regional Heart Study (BRHS) in the UK (n = 715) and the US Health, Aging and Body Composition (Health ABC) Study (n = 1256), we conducted multinominal regression analyses to examine the association of baseline and change in social engagement and loneliness with progression to prefrailty and frailty, as well as their association with reversal to prefrailty and robust status among older adults. A higher level of social engagement at baseline (BRHS: relative risk ratio [RRR] 0.69 [95% CI, 0.55-0.85]; Health ABC: 0.56 [0.45-0.70]) and an increase in social engagement (BRHS: 0.73 [0.59-0.90]; Health ABC: 0.51 [0.41-0.63]) were associated with a lower risk of developing frailty. In BRHS, a higher level of loneliness at baseline (1.42 [1.10-1.83]) and an increase in loneliness (1.50 [1.18-1.90]) raised the risk of developing frailty. For reversal of frailty, higher social engagement at baseline (Health ABC: 1.63 [1.08-2.47]) and an increase in social engagement (BRHS: 1.74 [1.18-2.50]; Health ABC: 1.79 [1.17-.274]) were beneficial. Social connections may be potentially important and modifiable factors in both preventing and reversing progression of frailty in older adults.
Longevity Relevance Analysis
(3)
Higher social engagement is associated with a lower risk of developing frailty and may aid in its reversal among older adults. The paper is relevant as it explores modifiable social factors that could influence the trajectory of frailty, a significant aspect of aging and longevity.
Nikolaos Theodorakis, Georgios Feretzakis, Georgia Vamvakou ...
· Testosterone
· Department of Cardiology & 65+ Clinic, Sismanogleio-Amalia Fleming General Hospital, 14, 25th Martiou Str, Melissia, 15127, Greece.
· pubmed
Population aging is a global phenomenon driving research focus toward preventing and managing age-related disorders. Functional hypogonadism (FH) has been defined as the combination of low testosterone levels, typically serum total testosterone below 300-350 ng/dL, together with ...
Population aging is a global phenomenon driving research focus toward preventing and managing age-related disorders. Functional hypogonadism (FH) has been defined as the combination of low testosterone levels, typically serum total testosterone below 300-350 ng/dL, together with manifestations of hypogonadism, in the absence of an intrinsic pathology of the hypothalamic-pituitary-testicular (HPT) axis. It is usually seen in middle-aged or elderly males as a product of aging and multimorbidity. This age-related decline in testosterone levels has been associated with numerous adverse outcomes. Testosterone therapy (TTh) is the mainstay of treatment for organic hypogonadism with an identifiable intrinsic pathology of the HPT axis. Current guidelines generally make weak recommendations for TTh in patients with FH, mostly in the presence of sexual dysfunction. Concerns about long-term safety have historically limited TTh use in middle-aged and elderly males with FH. However, recent randomized controlled trials and meta-analyses have demonstrated safe long-term outcomes regarding prostatic and cardiovascular health, together with decreases in all-cause mortality and improvements in various domains, including sexual function, body composition, physical strength, bone density, and hematopoiesis. Furthermore, there are numerous insightful studies suggesting additional benefits of TTh, for instance in cardio-renal-metabolic conditions. Specifically, future trials should investigate the role of TTh in improving symptoms and prognosis in various clinical contexts, including sarcopenia, frailty, dyslipidemia, arterial hypertension, diabetes mellitus, fracture risk, heart failure, stable angina, chronic kidney disease, mood disorders, and cognitive dysfunction.
Longevity Relevance Analysis
(3)
The paper discusses testosterone therapy in the context of functional hypogonadism, which is associated with aging and multimorbidity. While it addresses a condition prevalent in older males, the focus is primarily on treatment rather than addressing the underlying mechanisms of aging or extending lifespan. The findings may contribute to the management of age-related symptoms but do not fundamentally alter our understanding of aging itself. Thus, while it is relevant to longevity research, its impact is limited.
Hwan-Hee Sim, Saugat Shiwakoti, Ji-Hyeok Lee ...
· Cellular Senescence
· College of Pharmacy and Natural Medicine Research Institute, Mokpo National University, Muan 58554, Republic of Korea.
· pubmed
Nanoplastics (NPs), plastic particles ranging from 1 to 100 nm are ubiquitous environmental pollutants infiltrating ecosystems. Their small size and widespread use in various products raise concerns for human health, particularly their association with cardiovascular diseases (CV...
Nanoplastics (NPs), plastic particles ranging from 1 to 100 nm are ubiquitous environmental pollutants infiltrating ecosystems. Their small size and widespread use in various products raise concerns for human health, particularly their association with cardiovascular diseases (CVD). NPs can enter the human body through multiple routes, causing oxidative stress, and leading to the senescence and dysfunction of endothelial cells (ECs). Although there are potential natural compounds for treating CVD, there is limited research on preventing CVD induced by NPs. This study investigates the efficacy of Ecklonia cava extract (ECE) in preventing NPs-induced premature vascular senescence and dysfunction. Exposure of porcine coronary arteries (PCAs) and porcine coronary ECs to NPs, either alone or in combination with ECE, demonstrated that ECE mitigates senescence-associated β-galactosidase (SA-β-gal) activity induced by NPs, thus preventing premature endothelial senescence. ECE also improved NPs-induced vascular dysfunction. The identified active ingredient in Ecklonia cava, 2,7'-Phloroglucinol-6,6'-bieckol (PHB), a phlorotannin, proved to be pivotal in these protective effects. PHB treatment ameliorated SA-β-gal activity, reduced oxidative stress, restored cell proliferation, and decreased the expression of cell cycle regulatory proteins such as p53, p21, p16, and angiotensin type 1 receptor (AT1), well known triggers for EC senescence. Moreover, PHB also improved NPs-induced vascular dysfunction by upregulating endothelial nitric oxide synthase (eNOS) expression and restoring endothelium-dependent vasorelaxation. In conclusion, Ecklonia cava and its active ingredient, PHB, exhibit potential as therapeutic agents against NPs-induced premature EC senescence and dysfunction, indicating a protective effect against environmental pollutants-induced CVDs associated with vascular dysfunction.
Longevity Relevance Analysis
(4)
The paper addresses the impact of nanoplastics on endothelial cell senescence and dysfunction, which are relevant to the aging process and cardiovascular diseases. It explores a natural compound that may mitigate these effects, suggesting a potential therapeutic approach to a root cause of vascular aging. However, while the findings are solid, they primarily focus on a specific environmental pollutant rather than broader mechanisms of aging, limiting their overall impact on the field of longevity research.
Wenbo Chen, Xin Chen, Lei Yao ...
· Computational and structural biotechnology journal
· School of Basic Medical Sciences, Taikang Medical School, Wuhan University, Wuhan 430071, China.
· pubmed
Altered cell-cell communication is a hallmark of aging, but its impact on bone marrow aging remains poorly understood. Based on a common and effective pipeline and single-cell transcriptome sequencing, we detected 384,124 interactions including 2575 ligand-receptor pairs and 16 n...
Altered cell-cell communication is a hallmark of aging, but its impact on bone marrow aging remains poorly understood. Based on a common and effective pipeline and single-cell transcriptome sequencing, we detected 384,124 interactions including 2575 ligand-receptor pairs and 16 non-adherent bone marrow cell types in old and young mouse and identified a total of 5560 significantly different interactions, which were then verified by flow cytometry and quantitative real-time PCR. These differential ligand-receptor interactions exhibited enrichment for the senescence-associated secretory phenotypes. Further validation demonstrated supplementing specific extracellular ligands could modify the senescent signs of hematopoietic stem cells derived from old mouse. Our work provides an effective procedure to detect the ligand-receptor interactions based on single-cell sequencing, which contributes to understand mechanisms and provides a potential strategy for intervention of bone marrow aging.
Longevity Relevance Analysis
(4)
The paper investigates altered ligand-receptor interactions in bone marrow aging, which is directly related to the mechanisms of aging and potential interventions. While it provides solid research and contributes to understanding the cellular communication changes associated with aging, the findings appear to be incremental rather than groundbreaking. The potential for intervention is noted, but the overall impact on the field of longevity research seems limited at this stage.
Michael C Lanz, Shuyuan Zhang, Matthew P Swaffer ...
· Proteome
· Department of Biology, Stanford University, Stanford, CA, USA. mikelanz@stanford.edu.
· pubmed
Cell size is tightly controlled in healthy tissues and single-celled organisms, but it remains unclear how cell size influences physiology. Increasing cell size was recently shown to remodel the proteomes of cultured human cells, demonstrating that large and small cells of the sa...
Cell size is tightly controlled in healthy tissues and single-celled organisms, but it remains unclear how cell size influences physiology. Increasing cell size was recently shown to remodel the proteomes of cultured human cells, demonstrating that large and small cells of the same type can be compositionally different. In the present study, we utilize the natural heterogeneity of hepatocyte ploidy and yeast genetics to establish that the ploidy-to-cell size ratio is a highly conserved determinant of proteome composition. In both mammalian and yeast cells, genome dilution by cell growth elicits a starvation-like phenotype, suggesting that growth in large cells is restricted by genome concentration in a manner that mimics a limiting nutrient. Moreover, genome dilution explains some proteomic changes ascribed to yeast aging. Overall, our data indicate that genome concentration drives changes in cell composition independently of external environmental cues.
Longevity Relevance Analysis
(4)
The paper explores the relationship between cell size, genome dilution, and proteome remodeling, which may have implications for understanding cellular aging processes. By linking genome concentration to changes in cell composition and suggesting a starvation-like phenotype, it touches on fundamental aspects of cellular physiology that could relate to aging. However, while the findings are interesting and contribute to the understanding of cellular mechanisms, they do not directly address root causes of aging or lifespan extension, limiting their overall impact on the field.
Mengyang Chang, Yue Dong, Alexis B Cruickshank-Taylor ...
· Prodrugs
· Department of Chemistry and Biochemistry, University of Arizona, Tucson, Arizona, 85721, USA.
· pubmed
Cellular senescence has emerged as a potential therapeutic target for aging and a wide range of age-related disorders. Despite the encouraging therapeutic impact of senolytic agents on improving lifespan and the outcomes of pharmacological intervention, the senolytic induced side...
Cellular senescence has emerged as a potential therapeutic target for aging and a wide range of age-related disorders. Despite the encouraging therapeutic impact of senolytic agents on improving lifespan and the outcomes of pharmacological intervention, the senolytic induced side effects pose barriers to clinical application. There is a pressing need for selective ablation of senescent cells (SnCs). The design of senolytic prodrugs has been demonstrated as a promising approach to addressing these issues. These prodrugs are generally designed via modification of senolytics with a cleavable galactose moiety to respond to the senescent biomarker - senescence-associated β-galactosidase (SA-β-gal) to restore their therapeutic effects. In this Concept, we summarize the developments by categorizing these prodrugs into two classes: 1) galactose-modified senolytic prodrugs, in which sensing unit galactose is either directly conjugated to the drug or via a self-immolative linker and 2) bioorthogonal activation of senolytic prodrugs. In the bioorthogonal prodrug design, galactose is incorporated into dihydrotetrazine to sense SA-β-gal for click activation. Notably, in addition to repurposed chemotherapeutics and small molecule inhibitors, PROTACs and photodynamic therapy have been introduced as new senolytics in the prodrug design. It is expected that the senolytic prodrugs would facilitate translating small-molecule senolytics into clinical use.
Longevity Relevance Analysis
(4)
The paper discusses the development of senolytic prodrugs aimed at selectively targeting and eliminating senescent cells, which is directly related to addressing the root causes of aging and age-related diseases. While the concept of senolytics is promising and could lead to advancements in longevity research, the paper primarily summarizes existing developments rather than presenting novel findings or significant new data. Thus, it represents a solid contribution to the field but lacks the depth or groundbreaking nature to warrant a higher impact score.
Catherine Arden, Seo H Park, Xaviera Riani Yasasilka ...
· Lysosomes
· Biosciences Institute, Newcastle University, Newcastle Upon Tyne, UK.
· pubmed
Autophagy is critical for energy homeostasis and the function of organelles such as endoplasmic reticulum (ER) and mitochondria. Dysregulated autophagy due to aging, environmental factors, or genetic predisposition can be an underlying cause of not only diabetes through β-cell dy...
Autophagy is critical for energy homeostasis and the function of organelles such as endoplasmic reticulum (ER) and mitochondria. Dysregulated autophagy due to aging, environmental factors, or genetic predisposition can be an underlying cause of not only diabetes through β-cell dysfunction and metabolic inflammation, but also diabetic complications such as diabetic kidney diseases (DKDs). Dysfunction of lysosomes, effector organelles of autophagic degradation, due to metabolic stress or nutrients/metabolites accumulating in metabolic diseases is also emerging as a cause or aggravating element in diabetes and its complications. Here, we discuss the etiological role of dysregulated autophagy and lysosomal dysfunction in diabetes and a potential role of autophagy or lysosomal modulation as a new avenue for treatment of diabetes and its complications.
Longevity Relevance Analysis
(3)
The paper discusses the role of autophagy and lysosomal dysfunction in diabetes and its complications, which are indeed related to aging and metabolic health. However, it primarily focuses on the mechanisms of disease rather than addressing the root causes of aging or proposing significant interventions for lifespan extension. The findings contribute to understanding diabetes in the context of aging but do not present groundbreaking insights that would significantly advance the field of longevity research. Thus, while relevant, its impact is limited.
Li-Li Zhang, Jia-Ying Xu, Wei Wei ...
· Nucleotidyltransferases
· Department of Nutrition and Food Hygiene, School of Public Health, Soochow University, Suzhou, China.
· pubmed
Radiation injury to the intestine is one of the most common complications in patients undergoing abdominal or pelvic cavity radiotherapy, limiting the clinical application of this treatment. Evidence shows the potential benefits of dietary restriction in improving metabolic profi...
Radiation injury to the intestine is one of the most common complications in patients undergoing abdominal or pelvic cavity radiotherapy, limiting the clinical application of this treatment. Evidence shows the potential benefits of dietary restriction in improving metabolic profiles and age-related diseases. The present study investigated the effects and mechanisms of dietary restriction in radiation-induced intestinal injury. The mice were randomly divided into the control group, 10 Gy total abdominal irradiation (TAI) group, and groups pretreated with 30% caloric restriction (CR) for 7 days or 24 h fasting before TAI. After radiation, the mice were returned to ad libitum. The mice were sacrificed 3.5 days after radiation, and tissue samples were collected. CR and fasting reduced radiation-induced intestinal damage and promoted intestinal recovery by restoring the shortened colon length, improving the impaired intestinal structure and permeability, and remodeling gut microbial structure. CR and fasting also significantly reduced mitochondrial damage and DNA damage, which in turn reduced activation of the cyclic GMP-AMP synthase/stimulator of interferon gene (cGAS/STING) pathway and the production of type I interferon and other chemokines in the jejunum. Since the cGAS/STING pathway is linked with innate immunity, we further showed that CR and fasting induced polarization to immunosuppressive M2 macrophage, decreased CD8
Longevity Relevance Analysis
(3)
The paper investigates the effects of dietary restriction and fasting on radiation-induced intestinal injury, which is relevant to longevity research as it explores mechanisms that may influence aging-related processes, particularly in the context of metabolic health and immune response. However, while the findings contribute to our understanding of dietary interventions, the impact is limited as it primarily addresses a specific injury rather than broader mechanisms of aging or lifespan extension.
Swati Rane Levendovszky, Jaqueline Flores, Elaine R Peskind ...
· Cerebrovascular Circulation
· Department of Radiology, University of Washington School of Medicine, Seattle, WA, USA.
· pubmed
We discuss two potential non-invasive MRI methods to study phenomena related to subarachnoid cerebrospinal fluid (CSF) motion and perivascular fluid transport, and their association with sleep and aging. We apply diffusion-based intravoxel incoherent motion (IVIM) imaging to eval...
We discuss two potential non-invasive MRI methods to study phenomena related to subarachnoid cerebrospinal fluid (CSF) motion and perivascular fluid transport, and their association with sleep and aging. We apply diffusion-based intravoxel incoherent motion (IVIM) imaging to evaluate pseudodiffusion coefficient,
Longevity Relevance Analysis
(3)
The paper investigates non-invasive MRI methods to study cerebrospinal fluid motion and its association with aging and sleep, which are relevant to understanding mechanisms of aging. However, the focus on imaging techniques and fluid transport does not directly address root causes of aging or lifespan extension, limiting its impact. The findings may contribute to the field but are more incremental than groundbreaking.
Ronghua Ma, Xi Zhao, Jing Zhao ...
· Oocytes
· Research Center for High Altitude Medicine, Key Laboratory for High Altitude Medicine, Ministry of Education, Qinghai University, Xining, 810016, China; Qinghai Provincial People's Hospital, Xining, 810000, China.
· pubmed
Postovulatory aging of oocytes involves a series of deleterious molecular and cellular changes, which adversely affect oocyte maturation, fertilization, and early embryonic development. Petunidin-3-O-(6-O-pcoumaroyl)-rutinoside-5-O-glucoside (PrG), the main active ingredient of a...
Postovulatory aging of oocytes involves a series of deleterious molecular and cellular changes, which adversely affect oocyte maturation, fertilization, and early embryonic development. Petunidin-3-O-(6-O-pcoumaroyl)-rutinoside-5-O-glucoside (PrG), the main active ingredient of anthocyanin, exerts antioxidant effects. This study investigated whether PrG supplementation could delay postovulatory oocyte aging by alleviating oxidative stress. Our results showed that PrG supplementation decreased the number of abnormal morphology oocytes and improved the oxidative stress of aged oocytes by facilitating the reduction of the reactive oxygen species, the increase in glutathione content, and the recovery of expression of antioxidant-related gene expression. In addition, PrG treatment recovered mitochondrial dysfunction, including mitochondrial distribution, mitochondrial membrane potential and adenosine triphosphate in aged oocytes. PrG-treated oocytes returned to normal levels of cytoplasmic and mitochondrial calcium. Notably, PrG inhibited early apoptosis in aged oocytes. RNA-seq and qRT-PCR results revealed that PrG ameliorated oxidative stress injury in postovulatory aging oocytes of mice via the putrescine pathway. In conclusion, in vitro PrG supplementation is a potential therapy for delaying postovulatory oocyte aging.
Longevity Relevance Analysis
(3)
The paper investigates the effects of PrG on postovulatory oocyte aging, focusing on oxidative stress and mitochondrial dysfunction, which are relevant to the aging process. However, while it contributes to understanding mechanisms of oocyte aging, the findings are specific to reproductive biology and do not broadly address the root causes of aging or lifespan extension. Thus, the impact is solid but limited.
Priscila Farias Tempaku, Vânia D'Almeida, Monica Levy Andersen ...
· Telomere Shortening
· Departamento de Psicobiologia, Universidade Federal de São Paulo, Sleep Institute, São Paulo, Brazil.
· pubmed
As the chronological age increases, there is a decrease in the telomere length (TL). Associations between TL and age-related diseases have been described. Since the major pathophysiological factors related to inadequate sleep (including sleep complaints and sleep disorders) contr...
As the chronological age increases, there is a decrease in the telomere length (TL). Associations between TL and age-related diseases have been described. Since the major pathophysiological factors related to inadequate sleep (including sleep complaints and sleep disorders) contribute to the exacerbation of inflammation and oxidative stress, an association of sleep and TL has been proposed. The aim of this study was to evaluate the association between sleep-related variables with TL in a longitudinal framework. We used data derived from the EPISONO cohort, which was followed over 8 years. All individuals answered sleep-related questionnaires, underwent a full-night polysomnography (PSG), and had their blood collected for DNA extraction. The TL was measured through a quantitative real time polymerase chain reaction. Age, sex, body mass index (BMI), smoking, physical activity status, and the 10 principal components (ancestry estimate) were considered covariables. Of the 1042 individuals in the EPISONO cohort, 68.3% agreed to participate in the follow-up study (n = 712). Baseline SpO
Longevity Relevance Analysis
(3)
The paper claims that sleep-related variables are associated with telomere shortening in a longitudinal study. This research is relevant as it explores the relationship between sleep and telomere length, which may contribute to understanding the biological mechanisms of aging and age-related diseases.
Saul Kushinsky, Matthew V Puccetti, Clare M Adams ...
· Hematopoiesis
· Department of Pharmacology, Physiology, and Cancer Biology, Sidney Kimmel Cancer Center, Thomas Jefferson University, Philadelphia, Pennsylvania, USA.
· pubmed
Over a lifetime, hematopoietic stem and progenitor cells (HSPCs) are forced to repeatedly proliferate to maintain hematopoiesis, increasing their susceptibility to DNA damaging replication stress. However, the proteins that mitigate this stress, protect HSPC replication, and prev...
Over a lifetime, hematopoietic stem and progenitor cells (HSPCs) are forced to repeatedly proliferate to maintain hematopoiesis, increasing their susceptibility to DNA damaging replication stress. However, the proteins that mitigate this stress, protect HSPC replication, and prevent aging-driven dysregulation are unknown. We report two evolutionarily conserved, ubiquitously expressed chromatin remodeling enzymes with similar DNA replication fork reversal biochemical functions, Zranb3 and Smarcal1, have surprisingly specialized roles in distinct HSPC populations. While both proteins actively mitigate replication stress and prevent DNA damage and breaks during lifelong hematopoiesis, the loss of either resulted in distinct biochemical and biological consequences. Notably, defective long-term HSC function, revealed with bone marrow transplantation, caused hematopoiesis abnormalities in young mice lacking Zranb3. Aging significantly worsened these hematopoiesis defects in Zranb3-deficient mice, including accelerating the onset of myeloid-biased hematopoietic dysregulation to early in life. Such Zranb3-deficient HSPC abnormalities with age were driven by accumulated DNA damage and replication stress. Conversely, Smarcal1 loss primarily negatively affected progenitor cell functions that were exacerbated with aging, resulting in a lymphoid bias. Simultaneous loss of both Zranb3 and Smarcal1 compounded HSPC defects. Additionally, HSPC DNA replication fork dynamics had unanticipated HSPC type and age plasticity that depended on the stress and Zranb3 and/or Smarcal1. Our data reveal both Zranb3 and Smarcal1 have essential HSPC cell intrinsic functions in lifelong hematopoiesis that protect HSPCs from replication stress and DNA damage in unexpected, unique ways.
Longevity Relevance Analysis
(5)
The paper investigates the roles of Zranb3 and Smarcal1 in hematopoietic stem and progenitor cells (HSPCs) and their relationship with aging, specifically focusing on how these proteins mitigate replication stress and DNA damage over a lifetime. This addresses a fundamental aspect of aging at the cellular level, making it relevant to longevity research. The findings contribute important insights into the mechanisms of aging in hematopoiesis, but while they are significant, they do not represent a major breakthrough that could transform the field, hence the score of 5.
Xue Yin, Fangzhou Dai, Dongyang Ran ...
· Caenorhabditis elegans
· School of Basic Medical Sciences, Henan University, Kaifeng, China.
· pubmed
Alternative day fasting (ADF) has been shown to enhance the lifespan of animals. However, human trials evaluating the efficacy of ADF have only recently emerged, presenting challenges due to the extreme nature of this dietary regimen. To better understand the effects of ADF, we i...
Alternative day fasting (ADF) has been shown to enhance the lifespan of animals. However, human trials evaluating the efficacy of ADF have only recently emerged, presenting challenges due to the extreme nature of this dietary regimen. To better understand the effects of ADF, we investigated its impact using Caenorhabditis elegans as a model organism. Our findings reveal that ADF extends the lifespan of worms nourished on animal-based protein source, while those fed with plant-based protein as the primary protein source do not experience such benefits. Remarkably, initiating ADF during midlife is sufficient to prolong lifespan, whereas implementation during youth results in developmental damage, and in older age, fails to provide additional extension effects. Furthermore, we discovered that midlife ADF up-regulates the expression of two cysteine protease cathepsin B genes, cpr-2 and cpr-5, which preserve lysosomal integrity and enhance its function in digesting aggregated proteins, as well as enhancing lipid metabolism and ameliorating neurodegenerative disease markers and phenomena during aging. This suggests that midlife ADF has long lasting anti-aging effects and may delay the onset of related diseases, specifically in animals consuming animal-based protein source. These findings offer valuable insights into the effects of ADF and provide guidance for future research and potential applications in individuals.
Longevity Relevance Analysis
(4)
The paper investigates the effects of alternative day fasting (ADF) on lifespan extension in a model organism, Caenorhabditis elegans, and explores the underlying mechanisms involving cysteine protease cathepsin B. This research is relevant to longevity as it addresses dietary interventions that may influence aging processes and lifespan. However, while the findings are solid and contribute to understanding the relationship between diet and aging, they do not present groundbreaking insights or transformative implications for the field, thus warranting a moderate impact score.
Debarati Chattopadhyay, Susan Mary Philip, Grace Prabhakar ...
· Thioctic Acid
· School of Life Sciences, Department of Biotechnology, St Joseph's University, 36 Lalbagh Road, Shantinagar, Bangalore, Karnataka, 560027, India. debarati.chattopadhyay@sju.edu.in.
· pubmed
Consumption of a high-fat diet is accompanied by the risks of obesity and early onset of age-associated complications for which dietary interventions are imperative to combat. α-lipoic acid has been shown to hinder diet-induced obesity and induce lifespan-extending efficacy in mo...
Consumption of a high-fat diet is accompanied by the risks of obesity and early onset of age-associated complications for which dietary interventions are imperative to combat. α-lipoic acid has been shown to hinder diet-induced obesity and induce lifespan-extending efficacy in model organisms. In this study, α-lipoic acid was investigated for its efficacy in improving lifespan and stress resistance in the Canton-S strain of Drosophila melanogaster fed with a high-fat diet. Furthermore, as mating status significantly impacts survival in fruit flies, flies were reared in two experimental groups-group one, in which males and females were bred together, and group two, in which males and females were bred separately. In group one, α-lipoic acid improved the mean lifespan, reduced the fecundity of females, and reduced the mean body weight of flies at a dose range of 2-2.5 mM, respectively. In group two, α-lipoic acid improved the mean lifespan, reduced the fecundity of females, and reduced the mean body weight of flies at a dose range of 1-2.5 mM, respectively. Improved climbing efficiency was observed with α-lipoic acid at the dose range of 1.5-2.5 mM in flies of group one and 1-2.5 mM in flies of group two, respectively. Administration of α-lipoic acid improved resistance to oxidative stress in only female flies of group one at 2.5 mM, whereas in group two, both male and female flies exhibited enhanced resistance to oxidative stress with α-lipoic acid at a dose range of 2-2.5 mM, respectively. Male and female flies of only group one showed improved resistance to heat shock stress with α-lipoic acid at a dose range of 2-2.5 mM. Only female flies of group two exhibited a slight improvement in recovery time following cold shock with α-lipoic acid only at 2.5 mM. No significant change in resistance to starvation stress was observed with any dose of α-lipoic acid in either group of flies. To summarize, data from this study suggested a probable dose and gender-dependent efficacy of α-lipoic acid in flies fed with a high-fat diet, which was significantly influenced by the mating status of flies due to varied rearing conditions.
Longevity Relevance Analysis
(3)
The paper investigates the effects of α-lipoic acid on lifespan and stress resistance in Drosophila melanogaster, which is relevant to longevity research as it explores potential dietary interventions that may influence aging processes. However, the findings appear to be incremental and specific to a model organism, limiting their broader applicability and impact on the field of longevity research.
Emma J Stowe, Madelyn R Keller, Brianne K Connizzo
· Extracellular Matrix
· Department of Biomedical Engineering, Boston University, Boston, Massachusetts, USA.
· pubmed
Musculoskeletal injuries, including tendinopathies, present a significant clinical burden for aging populations. While the biological drivers of age-related declines in tendon function are poorly understood, it is well accepted that dysregulation of extracellular matrix (ECM) rem...
Musculoskeletal injuries, including tendinopathies, present a significant clinical burden for aging populations. While the biological drivers of age-related declines in tendon function are poorly understood, it is well accepted that dysregulation of extracellular matrix (ECM) remodeling plays a role in chronic tendon degeneration. Senescent cells, which have been associated with multiple degenerative pathologies in musculoskeletal tissues, secrete a highly pro-inflammatory senescence-associated secretory phenotype (SASP) that has potential to promote ECM breakdown. However, the role of senescent cells in the dysregulation of tendon ECM homeostasis is largely unknown. To assess this directly, we developed an in vitro model of induced cellular senescence in murine tendon explants. This novel technique enables us to study the isolated interactions of senescent cells and their native ECM without interference from age-related systemic changes. We document multiple biomarkers of cellular senescence in induced tendon explants including cell cycle arrest, apoptosis resistance, and sustained inflammatory responses. We then utilize this in vitro senescence model to compare the ECM remodeling response of young, naturally aged, and induced-senescent tendons to an altered mechanical stimulus. We found that both senescence and aging independently led to alterations in ECM-related gene expression, reductions in protein synthesis, and tissue compositional changes. Furthermore, MMP activity was sustained, thus shifting the remodeling balance of aged and induced-senescent tissues towards degradation over production. Together, this demonstrates that cellular senescence plays a role in the altered mechano-response of aged tendons and likely contributes to poor clinical outcomes in aging populations.
Longevity Relevance Analysis
(4)
The paper addresses the role of cellular senescence in tendon extracellular matrix remodeling, which is pertinent to understanding age-related declines in musculoskeletal function. By exploring the mechanisms behind tendon degeneration, it contributes to the broader field of aging research. However, while the findings are solid and provide insights into a specific aspect of aging, they do not present a major breakthrough or transformative implications for longevity research, thus warranting a moderate impact score.
Min-Gu Kang, Hee-Won Jung, Beom-Jun Kim
· Frailty
· Department of Internal Medicine, Chonnam National University Bitgoeul Hospital, Gwangju, Korea.
· pubmed
Despite the possible role of systemic low-grade inflammation on frailty, the majority of previous studies have focused solely on the phenotypic frailty with limited participant numbers, thereby weakening the evidence supporting the notion that circulating C-reactive protein (CRP)...
Despite the possible role of systemic low-grade inflammation on frailty, the majority of previous studies have focused solely on the phenotypic frailty with limited participant numbers, thereby weakening the evidence supporting the notion that circulating C-reactive protein (CRP) could be a potential frailty biomarker.
Longevity Relevance Analysis
(3)
The paper investigates the relationship between systemic low-grade inflammation and frailty in older adults, which is pertinent to understanding age-related decline and potential biomarkers for frailty. However, while it contributes to the understanding of frailty, it does not directly address the root causes of aging or propose interventions for lifespan extension. The findings may be solid but are limited in their broader implications for longevity research.
Zhuyubing Fang, Umar Raza, Jia Song ...
· Aging
· Cardiovascular Department of Internal Medicine, Karamay Hospital of People's Hospital of Xinjiang Uygur Autonomous Region, Karamay, Xinjiang Uygur Autonomous Region, China.
· pubmed
Systemic aging influences various physiological processes and contributes to structural and functional decline in cardiac tissue. These alterations include an increased incidence of left ventricular hypertrophy, a decline in left ventricular diastolic function, left atrial dilati...
Systemic aging influences various physiological processes and contributes to structural and functional decline in cardiac tissue. These alterations include an increased incidence of left ventricular hypertrophy, a decline in left ventricular diastolic function, left atrial dilation, atrial fibrillation, myocardial fibrosis and cardiac amyloidosis, elevating susceptibility to chronic heart failure (HF) in the elderly. Age-related cardiac dysfunction stems from prolonged exposure to genomic, epigenetic, oxidative, autophagic, inflammatory and regenerative stresses, along with the accumulation of senescent cells. Concurrently, age-related structural and functional changes in the vascular system, attributed to endothelial dysfunction, arterial stiffness, impaired angiogenesis, oxidative stress and inflammation, impose additional strain on the heart. Dysregulated mechanosignalling and impaired nitric oxide signalling play critical roles in the age-related vascular dysfunction associated with HF. Metabolic aging drives intricate shifts in glucose and lipid metabolism, leading to insulin resistance, mitochondrial dysfunction and lipid accumulation within cardiomyocytes. These alterations contribute to cardiac hypertrophy, fibrosis and impaired contractility, ultimately propelling HF. Systemic low-grade chronic inflammation, in conjunction with the senescence-associated secretory phenotype, aggravates cardiac dysfunction with age by promoting immune cell infiltration into the myocardium, fostering HF. This is further exacerbated by age-related comorbidities like coronary artery disease (CAD), atherosclerosis, hypertension, obesity, diabetes and chronic kidney disease (CKD). CAD and atherosclerosis induce myocardial ischaemia and adverse remodelling, while hypertension contributes to cardiac hypertrophy and fibrosis. Obesity-associated insulin resistance, inflammation and dyslipidaemia create a profibrotic cardiac environment, whereas diabetes-related metabolic disturbances further impair cardiac function. CKD-related fluid overload, electrolyte imbalances and uraemic toxins exacerbate HF through systemic inflammation and neurohormonal renin-angiotensin-aldosterone system (RAAS) activation. Recognizing aging as a modifiable process has opened avenues to target systemic aging in HF through both lifestyle interventions and therapeutics. Exercise, known for its antioxidant effects, can partly reverse pathological cardiac remodelling in the elderly by countering processes linked to age-related chronic HF, such as mitochondrial dysfunction, inflammation, senescence and declining cardiomyocyte regeneration. Dietary interventions such as plant-based and ketogenic diets, caloric restriction and macronutrient supplementation are instrumental in maintaining energy balance, reducing adiposity and addressing micronutrient and macronutrient imbalances associated with age-related HF. Therapeutic advancements targeting systemic aging in HF are underway. Key approaches include senomorphics and senolytics to limit senescence, antioxidants targeting mitochondrial stress, anti-inflammatory drugs like interleukin (IL)-1β inhibitors, metabolic rejuvenators such as nicotinamide riboside, resveratrol and sirtuin (SIRT) activators and autophagy enhancers like metformin and sodium-glucose cotransporter 2 (SGLT2) inhibitors, all of which offer potential for preserving cardiac function and alleviating the age-related HF burden.
Longevity Relevance Analysis
(5)
The paper claims that systemic aging contributes to heart failure through various molecular mechanisms and suggests therapeutic interventions targeting aging processes. The focus on systemic aging as a modifiable process and the exploration of therapeutic avenues to address the root causes of age-related heart failure align with longevity research objectives.
Jeferson Jantsch, Fernanda da Silva Rodrigues, Victor Silva Dias ...
· Caloric Restriction
· Graduate Program in Biosciences, Federal University of Health Sciences of Porto Alegre (UFCSPA), Porto Alegre, 90050-170, Brazil.
· pubmed
Obesity and aging collectively potentiate inflammatory responses, particularly within the central nervous system. Managing obesity presents a significant challenge, even more so considering the context of aging. Caloric restriction (CR) has been extensively documented in the lite...
Obesity and aging collectively potentiate inflammatory responses, particularly within the central nervous system. Managing obesity presents a significant challenge, even more so considering the context of aging. Caloric restriction (CR) has been extensively documented in the literature for its multiple health benefits. Motivated by these findings, we hypothesized that CR could serve as a valuable intervention to address the brain alterations and cognitive decline associated with obesity in aged rats. Our investigation revealed that cafeteria diet increased hippocampal and hypothalamic transcripts related to neuroinflammation, along with cognitive deficits determined in the object recognition test in 18-month-old male rats. Western blot data indicate that the obesogenic diet may disrupt the blood-brain barrier and lead to an increase in Toll-like receptor 4 in the hippocampus, events that could contribute to the cognitive deficits observed. Implementing CR after the onset of obesity mitigated neuroinflammatory changes and cognitive impairments. We found that CR increases GABA levels in the hippocampus of aged animals, as demonstrated by liquid chromatography coupled with mass spectrometry analysis. These findings underscore the potential of CR as a therapeutic opportunity to ameliorate the neuroinflammatory and cognitive alterations of obesity, especially in the context of aging.
Longevity Relevance Analysis
(4)
Caloric restriction mitigates neuroinflammatory changes and cognitive impairments associated with obesity in aged rats. The study addresses the underlying mechanisms of cognitive decline and neuroinflammation in the context of aging and obesity, which are critical factors in longevity research.
A Golubev
· Aging
· Department of Carcinogenesis and Oncogerontology, N.N. Petrov National Medical Research Center of Oncology, 68 Leningradskaya ul., Pesochny-2, Saint Petersburg, 197758, Russia. lxglbv@rambler.ru.
· pubmed
According to the Gompertz law, the age-dependent change in the logarithm of mortality (life-table aging rate, LAR) is equal to the population-averaged age-independent biological aging rate (γ), and LAR would be constant if aging were the only cause of mortality increase. However,...
According to the Gompertz law, the age-dependent change in the logarithm of mortality (life-table aging rate, LAR) is equal to the population-averaged age-independent biological aging rate (γ), and LAR would be constant if aging were the only cause of mortality increase. However, LAR is influenced by population exposures to the external hazards. If they were constant, according to the Gompertz-Makeham law (GML), LAR would be below γ at lower ages and asymptotically and monotonically approach γ with increasing age. Actually, LAR trajectories derived from data on mortality in different countries and historical periods feature systematic undulations. In the present investigation, mortality-vs.-age trajectories were modeled based on a generalized GML (gGML). Unlike the canonical GML terms, which are population-specific constants, the respective terms of the gGML are represented with some population-specific functions of age. Invariant in gGML are the modes of translation of these functions into the dependency of mortality on age: linear for population exposure to the irresistible external hazards or exponential for population-averaged ability to withstand the resistible external and internal hazards. Modeling suggests that, at earlier ages, LAR undulations are attributable to changes in population exposures to the former hazards. However, only their unrealistically high levels can produce the transient increase in LAR at about 65 to 90 years. This pervasive undulation of LAR-vs.-age trajectory is rather caused by an increment in γ. Reasons to regard gGML as a genuine natural law, which defines relations between mortality, aging and environment, are discussed.
Longevity Relevance Analysis
(4)
The paper addresses the relationship between aging, mortality, and external hazards through a novel modeling approach, which is relevant to understanding the biological mechanisms of aging. However, while it presents a solid theoretical framework, the findings appear to be more of an incremental advance rather than a significant breakthrough that could lead to practical applications in lifespan extension or addressing the root causes of aging.
Wanzi Yao, Yifeng Zhang, Gaiping Zhang
· Peptides
· Department of Food Safety and Health, School of Advanced Agricultural Sciences, Peking University, Beijing 100871, China.
· pubmed
Aging is a universal biological process characterized by a decline in physiological functions, leading to increased susceptibility to diseases. With global aging trends, understanding and mitigating the aging process is paramount. Recent studies highlight marine peptides as promi...
Aging is a universal biological process characterized by a decline in physiological functions, leading to increased susceptibility to diseases. With global aging trends, understanding and mitigating the aging process is paramount. Recent studies highlight marine peptides as promising bioactive substances with potential anti-aging properties. This review critically examines the potential of marine peptides as novel food ingredients in anti-aging, exploring their sources, preparation methods, physicochemical properties, and the underlying mechanisms through which they impact the aging process. Marine peptides exhibit significant potential in targeting aging, extending lifespan, and enhancing healthspan. They act through mechanisms such as reducing oxidative stress and inflammation, modulating mitochondrial dysfunction, inducing autophagy, maintaining extracellular matrix homeostasis, and regulating longevity-related pathways. Despite challenges in stability, bioavailability, and scalability, marine peptides offer significant potential in health, nutraceuticals, and pharmaceuticals, warranting further research and development in anti-aging.
Longevity Relevance Analysis
(4)
The paper discusses marine peptides as potential anti-aging agents, focusing on their mechanisms of action and implications for healthspan and lifespan extension. This aligns with the goal of addressing the root causes of aging rather than merely treating age-related diseases. However, while the review presents a solid overview of the topic, it does not introduce groundbreaking findings or novel methodologies that would significantly advance the field, thus warranting a moderate impact score.
Jia-Ping Ke, Jia-Yi Li, Zi Yang ...
· Caenorhabditis elegans
· Natural Products Laboratory, International Joint Laboratory of Tea Chemistry and Health Effects, State Key Laboratory of Tea Plant Biology and Utilization, Anhui Agricultural University, Hefei, People's Republic of China.
· pubmed
Tea drinking impacts aging and aging-related diseases. However, knowledge of anti-aging molecules other than the major catechins in complex tea extracts remains limited. Here we used Caenorhabditis elegans to analyze the longevity effects of tea extracts and constituents comprehe...
Tea drinking impacts aging and aging-related diseases. However, knowledge of anti-aging molecules other than the major catechins in complex tea extracts remains limited. Here we used Caenorhabditis elegans to analyze the longevity effects of tea extracts and constituents comprehensively. We found that the hot water extract of green tea prolonged lifespan and heathspan. Further, the MeOH fraction prolonged lifespan significantly longer than other fractions. Correlation analysis between mass spectroscopic data and anti-aging activity suggests that ester-type catechins (ETCs) are the major anti-aging components, including 4 common ETCs, 6 phenylpropanoid-substituted ester-type catechins (PSECs), 5 cinnamoylated catechins (CCs), 7 ester-type flavoalkaloids (ETFs), and 4 cinnamoylated flavoalkaloids (CFs). CFs (200 μM) are the strongest anti-aging ETCs (with the longest 73% lifespan extension). Green tea hot water extracts and ETCs improved healthspan by enhancing stress resistance and reducing ROS accumulation. The mechanistic study suggests that they work by multiple pathways. Moreover, ETCs modulated gut microbial homeostasis, increased the content of short-chain fatty acids, and reduced fat content. Altogether, our study provides new evidence for the anti-aging benefits of green tea and insights into a deep understanding of the chemical truth and multi-target mechanism.
Longevity Relevance Analysis
(4)
The paper investigates the anti-aging properties of green tea extracts and their constituents using C. elegans, which is a relevant model organism for longevity research. It identifies specific compounds that may contribute to lifespan extension and healthspan improvement, thus addressing mechanisms related to aging. However, while the findings are solid and contribute to the understanding of dietary influences on aging, they do not present groundbreaking insights or transformative implications for the field, resulting in a moderate impact score.
Brain aging is a complex process that involves functional alterations in multiple subnetworks and brain regions. However, most previous studies investigating aging-related functional connectivity (FC) changes using resting-state functional magnetic resonance images (rs-fMRIs) hav...
Brain aging is a complex process that involves functional alterations in multiple subnetworks and brain regions. However, most previous studies investigating aging-related functional connectivity (FC) changes using resting-state functional magnetic resonance images (rs-fMRIs) have primarily focused on the linear correlation between brain subnetworks, ignoring the nonlinear casual properties of fMRI signals.
Longevity Relevance Analysis
(3)
The paper investigates functional connectivity changes in the brain related to aging, which is pertinent to understanding the aging process itself. However, it primarily focuses on the analysis of brain connectivity patterns rather than addressing root causes of aging or proposing interventions for lifespan extension. The findings may contribute to the field of neuroscience but do not significantly advance the broader goals of longevity research.