Aging & Longevity
A Dual-Event Analysis of Rural and Nonrural Differences in Nursing Home Disaster Resilience
CONCLUSIONS AND IMPLICATIONS: Rural nursing homes exhibited disaster resilience under baseline disaster conditions but not during evacuation. It is possible that evacuation exposes rural nursing home residents to structural and operational constraints that may differentially compromise postdisaster survival. Future federal and state guidance may benefit from aligning preparedness standards with the distinct constraints of rural nursing homes.
Senescent cells: Leaving cellular waste behind
Cellular senescence is one of the best-studied biological programs, yet it continues to reveal unexpected aspects. In this issue of Developmental Cell, Durik et al.¹ describe how senescent cells shed large cytoplasmic fragments that promote their survival and may represent a mechanism of communication with neighboring cells.
Caloric restriction modulates genome-wide somatic mutation in mice
Somatic mutations accumulate throughout life in every cell, and this process constitutes one of the hallmarks of aging-genomic instability. Caloric restriction (CR) has been shown to extend lifespan across diverse species. Using high-fidelity duplex DNA sequencing of bulk liver, bulk kidney, hepatocytes, and cerebellar neurons, we found that CR in mice reduces genome-wide somatic mutation burdens across multiple tissues and cell types. CR reduced both substitution and insertion/deletion burdens,...
Mapping cell-type- and age-dependent neuronal vulnerability through genome-wide in vivo CRISPRi screens in the mouse brain
Current brain atlases are largely descriptive, cataloging correlative molecular snapshots such as gene expression signatures yet offering limited functional insight. Here, we develop a scalable, cell-type-resolved in vivo CRISPR interference (CRISPRi) platform enabling systematic gene function profiling in the mouse brain. Through genome-wide screens across four neuronal populations at three time points spanning youth to aging, we identify neuronal essential genes missed in vitro and define a...
Epigenetic aging and autosomal methylation remodeling in Anderson-Fabry disease
Anderson-Fabry disease (AFD) is a rare X-linked lysosomal storage disorder characterized by marked clinical heterogeneity and incompletely understood genotype-phenotype correlations. While X-chromosome inactivation has been extensively investigated, the contribution of autosomal epigenetic mechanisms to phenotypic variability remains poorly defined. Here, we performed an exploratory genome-wide DNA methylation analysis in 32 AFD patients (22 females and 10 males; mean age 51.7 years) recruited...
The GAIP-interacting protein C-terminal 1 (GIPC1) in health and disease: an update
GAIP-interacting protein C-terminal 1 (GIPC1/GIPC) is a well-established protein in the field of cancer biology. Recent studies have revealed that GIPC1 may exert opposing, context-dependent functions in various diseases or physiological processes, although the underlying regulatory mechanisms remain to be explored. Since GIPC1 contains a PDZ domain that interacts with various proteins, this domain is a promising therapeutic target. Molecular probes designed against the GIPC1-PDZ domain could...
Canonical Complement C3a-C3AR1 Signalling in Ageing and Age-Related Disease: Cellular Mechanisms, Tissue-Specific Effects and Translational Challenges
As the body ages, chronic low-grade inflammation, metabolic dysregulation, and loss of tissue resilience occur; however, the pathways linking these processes have not been fully characterized. Beyond traditional host defence, the canonical complement C3a-C3AR1 signalling axis has been identified as an ageing-sensitive pathway. Studies involving naturally aged animals, older human cohorts, and models of age-related diseases indicate that chronic C3a-C3AR1 signalling can drive the reprogramming of...
The evolution of asymmetrical regulation of physiology is central to aging
The evolutionary biology of aging is fundamental to understanding the mechanisms of aging and how to develop anti-aging treatments. Thus far most evolutionary theory concerns the genetics of aging with limited physiological integration. Here we present an intuitive evolutionary framework built on how physiology is regulated and how this regulation itself ages. Life has evolved to secure reproduction and avoid system failure in early life, and it is the regulation that evolves in response to...
Androgen receptor imprints satellite cell stemness and preserves their reservoir for lifelong regeneration and optimal repair
Skeletal muscle stem cells (MuSC) are the guardians of muscle regeneration, sustaining tissue integrity through a delicate balance of quiescence, activation, and lineage commitment. While numerous molecular cues have been implicated in regulating these processes, the influence of androgen receptor (AR) signaling, an essential hormonal pathway for male muscle physiology, has remained largely unexplored. Here, we show that AR expression defines quiescent MuSC and acts as a safeguard of their...
Rubisco functional integrity requires a dedicated three-step maturation pathway
Proteins generally begin with methionine, which is often removed to expose the second residue. RuBP carboxylase/oxygenase (Rubisco), the most abundant enzyme on Earth and a major carbon and nitrogen reservoir, escapes this paradigm. Its catalytic subunit, RbcL, undergoes unusual amino terminal maturation, including atypical initiator methionine-serine cleavage and proline acetylation, a modification not seen in other biological systems. We define a specialized pathway of two sequential...
Living Arrangements and Life Without and With Depression in Japan: A Longitudinal Analysis
ObjectiveThis study examines how life expectancy (LE) without and with depression differs by living arrangement among older adults in Japan, with particular attention to gender differences.MethodsData were drawn from the Nihon University Japanese Longitudinal Study of Aging (1999-2009). Multistate life table methods were used to estimate LE spent without and with depression among adults aged 65 years and older across different living arrangements.ResultsPronounced gender differences were...
3D Culture Reverses Limbal Niche Cell Replicative Aging via FOSL1 Upregulation
Limbal niche cells (LNCs) serve as essential regulators of limbal microenvironmental homeostasis and corneal epithelial wound repair, representing a promising therapeutic resource for limbal stem cell deficiency (LSCD). However, their clinical application is constrained by replicative aging during in vitro expansion. In this study, we investigated whether a three-dimensional (3D) Matrigel-based culture system could modulate replicative aging in LNCs. Compared with conventional two-dimensional...
Puberty, pregnancy, and menopause show shared and distinct structural changes across the lifespan
The female brain undergoes substantial reorganization during major hormonal transitions, yet whether puberty, pregnancy, and menopause engage shared or distinct neuroplastic mechanisms remains unknown. We compared longitudinal structural brain changes across all three major hormonal life events using identical analytical methods within a single cohort framework (n = 1095), with stable control groups to control for normative developmental and aging trajectories. Both pre-to-post menarche and...
Cellular Senescence as Endocrine Information Failure in Aging
Endocrine organs translate nutrient, stress and circadian cues into hormone outputs that coordinate whole-body physiology. Cellular senescence can distort this communication by changing endocrine-cell identity, stimulus-secretion coupling, secretory timing and local immune or paracrine signaling. Evidence is strongest in pancreatic β-cells and the adrenal zona fasciculata, where composite senescence phenotypes have been linked to endocrine dysfunction and modified by targeted perturbations....
Social vulnerability and psychological resources in aging: the role of index weighting and attrition bias
No abstract
LAPTM5 correlates with RPE senescence and subretinal fibrosis through the LAPTM5-WWP2-OPTN mitophagy cascade and cGAS/STING activation in a D-galactose-induced aging model
Retinal pigment epithelium (RPE) senescence acts as a core driver of subretinal fibrosis, a major irreversible pathological feature that exacerbates age-related macular degeneration (AMD). Mitophagy is essential for maintaining RPE homeostasis during aging. However, the upstream molecular mechanisms underlying mitophagy impairment in senescent RPE remain poorly defined. Here, we show that lysosomal-associated transmembrane protein 5 (LAPTM5) is significantly upregulated in human AMD specimens...
eIF5A and polyamines restrict mRNA levels in response to ribosome stalls
Obstacles to translation elongation stall ribosomes and allow deleterious proteins to accumulate, which threatens cellular health. Cells recognize and clear stalled ribosomes via several interrelated pathways, although the mechanisms by which cells distinguish stalled from normally elongating ribosomes and mount an appropriate response are incompletely understood. While recent work highlights how ribosome collisions help cells to recognize stalled ribosomes, how other factors contribute to...
Epicenter mapping of cortical morphological dedifferentiation in type 2 diabetes mellitus using morphometric inverse divergence
CONCLUSION: The group-level spatial map showed exploratory correspondence with selected normative functional connectivity (FC)- and structural connectivity (SC)-based candidate profiles. Individualized profiles showed greater cross- sectional correspondence with the selected SC-based profile than with the FC-based profile, providing a network-informed description of diabetic brain alterations.
The association between hearing loss in adults and cognitive outcomes: an umbrella review and meta-analysis
CONCLUSION: Adult hearing loss is significantly associated with increased risks of cognitive impairment and dementia. These findings highlight the importance of hearing health in cognitive aging and support further prospective and interventional studies.
Muscle-Specific Upregulation of Timeless Mediates Exercise-Induced Amelioration of Age-Related Circadian Rhythm Disruption and Cardiac Dysfunction in Drosophila
The core genes of the circadian pathway, such as Timeless(Tim), not only participate in the regulation of biological rhythms, but also play significant roles in DNA damage repair, chronic inflammation, and cellular metabolism. However, it remains unclear whether exercise can delay the age-related phenotypic degeneration by regulating the muscle Tim gene. In here, we first carried out the expression regulation of the muscle Tim gene in the Drosophila by constructing the Mhc-gal4/Tim-UAS system,...
Aging and Longevity: Latest results from PubMed
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