H Shafeeq Ahmed
· Aging
· Bangalore Medical College and Research Institute, K.R Road, Bangalore, 560002, Karnataka, India. shafeeqahmed2002@gmail.com.
· pubmed
Prevotella species, notably Prevotella copri, significantly populate the human gut. In particular, P. copri is prevalent among non-Western populations with diets high in fiber. These species show complex relationships with diverse health aspects, associating with beneficial outco...
Prevotella species, notably Prevotella copri, significantly populate the human gut. In particular, P. copri is prevalent among non-Western populations with diets high in fiber. These species show complex relationships with diverse health aspects, associating with beneficial outcomes, including reduced visceral fat and improved glucose tolerance. Studies implicate various Prevotella species in specific diseases. Prevotella nigrescens and Porphyromonas gingivalis were linked to periodontal disease, promoting immune responses and influencing T helper type 17 (Th17) cells. Prevotella bivia was associated with bacterial vaginosis and a specific increase in activated cells in the vaginal mucosa. In contrast, they have shown substantial potential for inducing connective tissue degradation and alveolar bone resorption. Prevotella's role in neuroinflammatory disorders and autoinflammatory conditions such as Alzheimer's disease and Parkinson's disease has also been noted. The complex relationship between Prevotella and age-related conditions further extends to neurobiological changes in aging, with varying associations with Alzheimer's, Parkinson's, and other inflammatory conditions. Studies have also identified Prevotella to be implicated in cognitive decline in middle aged and the elderly. Future directions in this research area are anticipated to explore Prevotella-associated inflammatory mechanisms and therapeutic interventions. Investigating specific drug targets and immunomodulatory measures could lead to novel therapeutic strategies. Understanding how Prevotella-induced inflammation interacts with aging diseases would offer promising insights for treatments and interventions. This review urges ongoing research to discover therapeutic targets and mechanisms for moderating Prevotella-associated inflammation to further enhance our understanding and improve health outcomes.
Longevity Relevance Analysis
(3)
The paper discusses the role of Prevotella species in neuroinflammatory disorders and their associations with age-related cognitive decline, which aligns with the broader context of aging research. However, it primarily focuses on the implications of these bacteria in disease contexts rather than addressing the root causes of aging or lifespan extension. The findings contribute to understanding the relationship between gut microbiota and neurobiology in aging, but the impact is limited as it does not propose significant novel therapeutic strategies or insights that could fundamentally alter approaches to aging.
Francesca Matteini, Sara Montserrat-Vazquez, M Carolina Florian
· Longevity
· Stem Cell Aging Group, Regenerative Medicine Program, The Bellvitge Institute for Biomedical Research (IDIBELL), Barcelona, Spain.
· pubmed
Aging is associated with a global decline in stem cell function. To date, several strategies have been proposed to rejuvenate aged stem cells: most of these result in functional improvement of the tissue where the stem cells reside, but the impact on the lifespan of the whole org...
Aging is associated with a global decline in stem cell function. To date, several strategies have been proposed to rejuvenate aged stem cells: most of these result in functional improvement of the tissue where the stem cells reside, but the impact on the lifespan of the whole organism has been less clearly established. Here, we review some of the most recent work dealing with interventions that improve the regenerative capacity of aged somatic stem cells in mammals and that might have important translational possibilities. Overall, we underscore that somatic stem cell rejuvenation represents a strategy to improve tissue homeostasis upon aging and present some recent approaches with the potential to affect health span and lifespan of the whole organism.
Longevity Relevance Analysis
(4)
The paper discusses strategies to rejuvenate aged stem cells, which is directly related to improving health span and potentially lifespan by addressing the decline in stem cell function associated with aging. While the review highlights important interventions and their translational possibilities, it primarily summarizes existing work rather than presenting novel findings or groundbreaking insights. Thus, it contributes solidly to the field but lacks the depth or novelty to be considered highly impactful.
Wei Zhang, Junchao Wang, Fang Xie ...
· Machine Learning
· First Affiliated Hospital of Kunming Medical University, Kunming, China.
· pubmed
Early identification and intervention of the frailty of the elderly will help lighten the burden of social medical care and improve the quality of life of the elderly. Therefore, we used machine learning (ML) algorithm to develop models to predict frailty risk in the elderly.
Early identification and intervention of the frailty of the elderly will help lighten the burden of social medical care and improve the quality of life of the elderly. Therefore, we used machine learning (ML) algorithm to develop models to predict frailty risk in the elderly.
Longevity Relevance Analysis
(3)
The paper addresses the prediction of frailty risk in the elderly using machine learning, which is relevant to longevity research as it aims to identify and potentially mitigate a significant aspect of aging. However, the focus on prediction rather than intervention or addressing the root causes of frailty limits its impact. While it contributes to the understanding of frailty, it does not present groundbreaking findings or methodologies that would significantly advance the field of longevity research.
Elizabeth M L Duxbury, Hanne Carlsson, Annabel Kimberley ...
· Caenorhabditis elegans
· School of Biological Sciences, University of East Anglia, Norwich, UK. E.Duxbury@uea.ac.uk.
· pubmed
Reduced insulin/IGF-1 signalling (rIIS) improves survival across diverse taxa and there is a growing interest in its role in regulating immune function. Whilst rIIS can improve anti-bacterial resistance, the consequences for anti-viral immunity are yet to be systematically examin...
Reduced insulin/IGF-1 signalling (rIIS) improves survival across diverse taxa and there is a growing interest in its role in regulating immune function. Whilst rIIS can improve anti-bacterial resistance, the consequences for anti-viral immunity are yet to be systematically examined. Here, we show that rIIS in adult Caenorhabditis elegans increases the expression of key genes in two different anti-viral immunity pathways, whilst reducing viral load in old age, increasing survival and reducing rate-of-senescence under infection by naturally occurring positive-sense single-stranded RNA Orsay virus. We found that both drh-1 in the anti-viral RNA interference (RNAi) pathway and cde-1 in the terminal uridylation-based degradation of viral RNA pathway were upregulated in early adulthood under rIIS and increased anti-viral resistance was not associated with reproductive costs. Remarkably, rIIS increased anti-viral gene expression only in infected worms, potentially to curb the costs of constitutively upregulated immunity. RNA viruses are found across taxa from plants to mammals and we demonstrate a novel role for rIIS in regulating resistance to viral infection. We therefore highlight this evolutionarily conserved signalling pathway as a promising therapeutic target to improve anti-viral immunity.
Longevity Relevance Analysis
(4)
The paper investigates the role of reduced insulin/IGF-1 signaling in enhancing anti-viral immunity in C. elegans, which is relevant to longevity research as it explores a signaling pathway associated with lifespan extension and survival under stress. However, while the findings contribute to our understanding of immune function in the context of aging, the impact is limited as it primarily focuses on a specific model organism and does not directly address broader implications for human aging or age-related diseases.
Alfredo L Lopez Kolkovsky, Beatrice Matot, Pierre-Yves Baudin ...
· Aging
· NMR Laboratory, Neuromuscular Investigation Center, Institute of Myology, Paris, France.
· pubmed
Improved characterization of healthy muscle aging is needed to establish early biomarkers in age-related diseases.
Improved characterization of healthy muscle aging is needed to establish early biomarkers in age-related diseases.
Longevity Relevance Analysis
(3)
The paper focuses on characterizing healthy muscle aging, which is pertinent to understanding the aging process and identifying early biomarkers for age-related diseases. However, the study appears to be more descriptive and does not directly address the root causes of aging or propose interventions for lifespan extension. Thus, while it contributes to the field, its impact is limited.
Marina Minto Cararo-Lopes, Ratchell Sadovnik, Allen Fu ...
· Brain-Derived Neurotrophic Factor
· Department of Cell Biology and Neuroscience, Rutgers, The State University of New Jersey, Piscataway, NJ, USA.
· pubmed
α-Klotho (α-Kl) is a modulator of aging, neuroprotection, and cognition. Transcription of the Klotho gene produces two splice variants-a membrane protein (mKl), which can be cleaved and released into the extracellular milieu, and a truncated secreted form (sKl). Despite mounting ...
α-Klotho (α-Kl) is a modulator of aging, neuroprotection, and cognition. Transcription of the Klotho gene produces two splice variants-a membrane protein (mKl), which can be cleaved and released into the extracellular milieu, and a truncated secreted form (sKl). Despite mounting evidence supporting a role for α-Kl in brain function, the specific roles of α-Kl isoforms in neuronal development remain elusive. Here, we examined α-Kl protein levels in rat brain and observed region-specific expression in the adult that differs between isoforms. In the developing hippocampus, levels of isoforms decrease after the third postnatal week, marking the end of the critical period for development. We overexpressed α-Kl isoforms in primary cultures of rat cortical neurons and evaluated effects on brain-derived neurotrophic factor (BDNF) signaling. Overexpression of either isoform attenuated BDNF-mediated signaling and reduced intracellular Ca
Longevity Relevance Analysis
(3)
The paper investigates the role of α-Klotho isoforms in neuronal development and their effects on BDNF signaling, which are relevant to neuroprotection and cognitive function in the context of aging. However, the focus is primarily on the mechanisms of neuronal signaling rather than addressing the root causes of aging or lifespan extension. The findings contribute to understanding the molecular underpinnings of neurobiology but do not present a significant breakthrough or transformative implications for longevity research.
Massiré Traoré, Chiara Noviello, Amélie Vergnol ...
· Growth Differentiation Factor 5
· Sorbonne Université, INSERM, Institut de Myologie, Centre de Recherche en Myologie, F-75013 Paris, France.
· pubmed
Sarcopenia involves a progressive loss of skeletal muscle force, quality and mass during ageing, which results in increased inability and death; however, no cure has been established thus far. Growth differentiation factor 5 (GDF5) has been described to modulate muscle mass maint...
Sarcopenia involves a progressive loss of skeletal muscle force, quality and mass during ageing, which results in increased inability and death; however, no cure has been established thus far. Growth differentiation factor 5 (GDF5) has been described to modulate muscle mass maintenance in various contexts. For our proof of concept, we overexpressed GDF5 by AAV vector injection in tibialis anterior muscle of adult aged (20 months) mice and performed molecular and functional analysis of skeletal muscle. We analysed human vastus lateralis muscle biopsies from adult young (21-42 years) and aged (77-80 years) donors, quantifying the molecular markers modified by GDF5 overexpression in mouse muscle. We validated the major effects of GDF5 overexpression using human immortalized myotubes and Schwann cells. We established a preclinical study by treating chronically (for 4 months) aged mice using recombinant GDF5 protein (rGDF5) in systemic administration and evaluated the long-term effect of this treatment on muscle mass and function. Here, we demonstrated that GDF5 overexpression in the old tibialis anterior muscle promoted an increase of 16.5% of muscle weight (P = 0.0471) associated with a higher percentage of 5000-6000 µm2 large fibres (P = 0.0211), without the induction of muscle regeneration. Muscle mass gain was associated with an amelioration of 26.8% of rate of force generation (P = 0.0330) and better neuromuscular connectivity (P = 0.0098). Moreover, GDF5 overexpression preserved neuromuscular junction morphology (38.5% of nerve terminal area increase, P < 0.0001) and stimulated the expression of reinnervation-related genes, in particular markers of Schwann cells (fold-change 3.19 for S100b gene expression, P = 0.0101). To characterize the molecular events induced by GDF5 overexpression during ageing, we performed a genome-wide transcriptomic analysis of treated muscles and showed that this factor leads to a 'rejuvenating' transcriptomic signature in aged mice, as 42% of the transcripts dysregulated by ageing reverted to youthful expression levels upon GDF5 overexpression (P < 0.05). Towards a preclinical approach, we performed a long-term systemic treatment using rGDF5 and showed its effectiveness in counteracting age-related muscle wasting, improving muscle function (17.8% of absolute maximal force increase, P = 0.0079), ensuring neuromuscular connectivity and preventing neuromuscular junction degeneration (7.96% of AchR area increase, P = 0.0125). In addition, in human muscle biopsies, we found the same age-related alterations than those observed in mice and improved by GDF5 and reproduced its major effects on human cells, suggesting this treatment as efficient in humans. Overall, these data provide a foundation to examine the curative potential of GDF5 drug in clinical trials for sarcopenia and, eventually, other neuromuscular diseases.
Longevity Relevance Analysis
(4)
The paper addresses the underlying mechanisms of sarcopenia, a significant age-related condition, by investigating the potential of GDF5 as a rejuvenating treatment. It explores the molecular changes associated with aging and presents evidence that GDF5 can reverse some of these changes, suggesting a pathway to mitigate age-related muscle loss. However, while the findings are solid and contribute to the understanding of muscle aging, they are still in the preclinical stage and may not have immediate transformative implications for the field of longevity research.