Aging & Longevity
Preserved cerebellar functions despite structural degeneration in older adults
Aging is frequently perceived negatively due to its association with declines in brain and motor function yet not all aspects of brain function are equally affected. The cerebellum, a brain region closely linked to motor control, undergoes clear structural changes with age, but the impact of this degeneration on cerebellar function remains debated. The present study thoroughly investigates the impact of age on cerebellar function by measuring cerebellar motor and cognitive performance across the...
Early life sugar rationing and ageing related diseases, biological ageing and mortality
Early-life nutrition may influence lifelong ageing, yet human evidence is scarce. Using Britain's postwar sugar rationing as a natural experiment, we examine its long-term effects in 64,809 United Kingdom Biobank participants. Exposure to sugar rationing during the first 1,000 days of life is associated with a 9% lower incidence of hallmark-related disease, with a hazard ratio of 0.91 and a 95% confidence interval of 0.88-0.94, and a 19% lower risk of all-cause mortality, with a hazard ratio of...
Vascular Frailty: A New Paradigm Linking Biological Aging, Gero-Nephrology, and Vascular Medicine
Chronic kidney disease (CKD) is increasingly recognized as a model of accelerated biological aging, characterized by premature cardiovascular disease and frailty. Although frailty has become a cornerstone of gero-nephrology, current frailty models primarily emphasize physical performance and functional decline, providing limited insight into the vascular mechanisms underlying biological vulnerability. Conversely, vascular aging is traditionally framed within cardiovascular medicine, with little...
Experience-Dependent Plasticity of Large-Scale Brain Networks in Aging: How Different Training Modalities Shape Neural Connectivity
Brain regions are organized into large-scale networks through dynamic functional connections that support sensorimotor and cognitive processes across the lifespan. Age-related disruptions of these functional systems are associated with cognitive and motor decline and increased risk of neurocognitive disorders. A growing body of evidence suggests that structured physical training can modulate resting-state functional connectivity within these networks, offering a potential neuroprotective...
Growth Hormone Receptor Antagonism Extends Lifespan
Interventions that disrupt growth hormone (GH) action are recognized as some of the most potent methods for extending lifespan. Accordingly, GH receptor antagonists (GHA) represent potential therapeutics to improve healthspan. Somavert (Pegvisomant for injection), used for treating patients with acromegaly, is currently the only FDA approved GHA. This drug was based on our laboratory's early 1990s discovery that mutating a codon for a conserved glycine-at position 119 in bovine GH or 120 in...
Longitudinal infection trajectories and biological aging acceleration in adults: a prospective cohort study
Infections remain a major cause of mortality and may threaten healthy aging. Previous studies have focused on isolated severe infections rather than longitudinal infection burden. We aimed to examine associations of infection trajectories with biological age acceleration (BAA) and assessed infection severity and genetic susceptibility. We included adults aged 20-74 years from the Shanghai Suburban Adult Cohort and Biobank, China, enrolled between 2016 and 2019 with valid biological age (BA)...
Mitochondria-Endoplasmic Reticulum Contact Sites (MERCS/MAM): Multi-Layered Upstream Regulators of Microglial Senescence in Alzheimer's Disease
CONCLUSION: Translational development faces several barriers, including poor blood-brain barrier (BBB) penetration, off-target neurotoxicity, uncharacterised long-term safety and limited generalisability from APP/PS1 models lacking tauopathy. All MERCS-targeted and senolytic combinatorial strategies discussed herein represent prospective pre-clinical research directions rather than mature clinical therapeutic approaches. We propose an experimental roadmap based on conditional knockouts,...
Breaking the Self-Reinforcing Cycle of Aging: Biomaterial Strategies for Aged Bone Regeneration
With accelerating population aging, age-related bone loss, osteoporosis, and delayed bone defect repair have become major challenges in regenerative medicine. Bone aging is not caused by the decline of a single cell type, but is a multilevel pathological process driven by the continuous coupling and mutual reinforcement of intracellular damage accumulation, senescence signal propagation, and microenvironmental deterioration. Based on established aging theories, this review integrates...
Sex difference in brain reserve of working memory among older adults
Working memory is one of the core cognitive functions that declines in older adulthood. Brain reserve (BR) refers to neurobiological status of the brain that supports cognition, offering a valuable neurostructural framework for understanding working memory decline among older adults. However, most existing studies rely on gross, whole-brain measures of BR which may lack sensitivity to specific cognitive functions, and few studies have examined their sex differences. Based on 131 healthy older...
Metal-sulfur metabolic derangement and regulated cell death in age-related cardiovascular diseases: mechanisms, biomarkers, and emerging interventions
Cardiovascular ageing is accompanied by progressive impairment of redox buffering, mitochondrial quality control, proteostasis and metal homeostasis. Iron and copper homeostasis, together with cystine-glutathione and thiol/disulfide redox metabolism, are increasingly recognized as interconnected determinants of metabolic vulnerability and regulated cell death (RCD) in age-related cardiovascular diseases. Ferroptosis, defined by iron-dependent lipid peroxidation and impaired anti-peroxidative...
Neuromodulation for restoring and amplifying brain function
Neuromodulation aims to improve brain function by altering neural activity. While many rehabilitation strategies seek to restore normal, healthy-like dynamics, some adopt a complementary strategy, using neuromodulation to strengthen repurposed processes that support function. Here we formalize these approaches as 'restorative normalization' (RN) and 'compensatory amplification' (CA), respectively. Drawing on cognitive neurophysiology, we evaluate the following four factors that enable CA to be...
Secreted Frizzled-Related Protein 2 (SFRP2) Induces Follistatin-Like 1 (FSTL1) to Regulate Dihydrotestosterone (DHT)-Induced Dermal Papilla Cell Mitochondrial Dysfunction and Senescence
Androgenetic alopecia (AGA) is the most common form of non-scarring hair loss, driven by genetic factors and increased sensitivity of scalp hair follicles to dihydrotestosterone (DHT), which causes progressive miniaturization of dermal papilla cells and shortens the hair growth phase. The precise molecular pathogenesis of AGA remains incompletely understood. The study aimed to elucidate the regulatory mechanism between secreted frizzled-related protein 2 (SFRP2) and follistatin-like 1 (FSTL1),...
Midlife Growth Hormone Receptor Ablation Extends Healthy Lifespan and Induces Sex-Specific Hepatic Transcriptional Changes at Single-Cell Resolution
Suppression of growth hormone (GH) signaling is known to be effective to extend lifespan in mammals, yet most models rely on congenital disruption of the GH/insulin-like growth factor-1 (IGF-1) axis. Whether modulation of this pathway later in life can still influence aging and the underlying cellular mechanisms remains incompletely understood. To address this, we ablated the growth hormone receptor (Ghr) at 12-months of age in mice (12mGHRKO), using a tamoxifen-inducible model. Midlife Ghr...
Daily briefing: GLP-1 obesity drugs slow signs of ageing in mice
No abstract
Therapy induced senescence promotes immunogenicity in acute myeloid Leukemia through reduced EZH2 activity
Chemotherapy resistance and disease relapse are major determinants of treatment failure in acute myeloid leukemia (AML). Therapy-induced senescence (TIS) is one outcome of chemotherapy, but its immunological consequences in AML remain unclear. Here we show that ex vivo chemotherapy induces senescence in a subset of therapy-naïve AML samples. TIS is marked by elevated interferon signaling, upregulation of human leukocyte antigen (HLA) class I and II molecules, and increased presentation of...
IGF2 acts downstream of Hippo signaling to regulate organ growth and restore liver regeneration in aging
Precise regulation of organ size is essential for proper function, yet the underlying logic remains unclear. Here, we identify a Hippo-IGF2 signaling axis as a regulator of organ growth. During mouse liver development, Igf2 is highly expressed in fetal and neonatal hepatocytes to fuel rapid growth but is directly silenced by the Hippo signaling pathway at the postnatal stage, enforcing growth arrest and determining liver size. In contrast, chronic liver injury inactivates Hippo signaling and...
Posttranslational Oxidation of SOD1 and Skin Aging: Evidence, Gaps, and Future Directions
As the body's primary barrier against environmental insults, the skin is continually exposed to oxidative stress, which may contribute to progressive proteotoxic stress. Excess reactive oxygen species (ROS) can overwhelm cellular protein-quality-control systems, promoting the accumulation of damaged and misfolded proteins, proteome instability, and eventual Protein homeostasis (proteostasis) collapse. Superoxide dismutase 1 (SOD1), a Cu/Zn-dependent cytosolic antioxidant enzyme and key component...
Targeting the mitochondrial functional network: Decoding upstream pathological mechanisms and novel therapeutic paradigms for Alzheimer's disease
Alzheimer's disease (AD) is the most prevalent neurodegenerative disorder worldwide. Conventional downstream interventions targeting β-amyloid (Aβ) and tau proteins have repeatedly failed in clinical practice, and mitochondrial functional decline has been identified as the core upstream driver of AD pathogenesis. Focusing on the mitochondrial functional network as the core target, this paper systematically dissects the key molecular mechanisms of mitochondrial dysfunction during AD progression,...
Akkermansia muciniphila and Its Bioactive Derivatives: Emerging Regulators of Healthy Aging
The global aging trend underscores the urgent need for innovative interventions against aging-related decline. Accumulating evidence identifies Akkermansia muciniphila (A. muciniphila) as a key gut microbiota regulator of aging, with its depletion associated with age-related diseases (ARDs), whereas its abundance is enriched in healthy centenarians. This review summarized current evidence linking A. muciniphila to aging, examining their causal relationship, the roles of its bioactive...
Tissue-Level Transcriptomic Entropy Reveals Organ-Specific Aging Patterns and Predicts Cancer Progression
Although aging and cancer share complex molecular mechanisms, distinguishing causative factors from byproducts remains challenging. Here, we investigated the role of tissue transcriptomic entropy-a measure of transcriptional disorder-in aging and cancer processes by analyzing RNA-sequencing data from over 25,000 samples from human and mouse tissues. We found that entropy changes during aging are highly tissue-specific, with some tissues showing increased entropy while others exhibit decreased or...
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