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ZNF865 (BLST) a Novel Regulator of DNA Damage and Cell Senescence in Back Pain
Senescence has been shown to contribute to the progression of aging-related diseases including degenerative disc disease (DDD). However, the mechanisms regulating senescence in the intervertebral disc (IVD) and other tissues/diseases remain poorly understood. Recently, ZNF865 (BLST) was identified as a previously uncharacterized zinc finger protein that regulates a wide array of genes related to protein processing, cell senescence, and DNA damage repair. Here, we show that ZNF865 expression...
Problems in 22 scientific fields had solutions hiding in plain sight. An AI has found them
Teams led by physicist used “BootLoops” software to produce 36 papers in weeks on everything from linguistics to health policy
Only one workout helped older adults lose fat and keep muscle
A six-month study suggests that high-intensity interval training (HIIT) may offer older adults a powerful advantage: losing body fat while keeping their muscle. Unlike moderate-intensity workouts, which led to a small loss of lean muscle, HIIT preserved it while also improving body composition around the waist.
Magnetic Electroluminescent response as a predictive indicator of operational lifetime in phosphorescent blue OLEDs
Improving operational lifetime remains a major challenge for blue organic light-emitting diodes (OLEDs) harvesting triplet excitons. Achieving substantial lifetime enhancement requires analytical techniques that elucidate degradation mechanisms. Because conventional lifetime analysis involves destructive aging tests, developing non-invasive methods that correlate strongly with device longevity is highly desirable. Here, we show that the operational lifetime of blue phosphorescent OLEDs...
Menopause-associated proteomic changes link to brain ageing and dementia risk
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Author Correction: The kinase complex mTORC2 promotes the longevity of virus-specific memory CD4(+) T cells by preventing ferroptosis
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Publisher Correction: Sleep chart of biological ageing clocks in middle and late life
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Goals and challenges for senescence research
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Lymph node contraction links sex-biased naive CD8<sup>+</sup> T cell decline to compromised antigen recognition during middle age
The abundance of diverse naive CD8^(+) T cell clones is essential for broad protection against infection and cancer, but how sex and aging jointly shape this compartment remains poorly understood. Here, using mouse models with supporting human data, we uncover a sex-biased mechanism of immune aging in which early male-biased depletion of naive CD8^(+) T cells driven by accelerated, antigen-agnostic differentiation into virtual memory cells combines with thymic involution, limiting naive CD8^(+)...
Mitochondrial dysfunction and inflammaging: a mechanistic bridge between bioenergetic failure and senescence
Ageing is characterized by a progressive decline in mitochondrial integrity that extends beyond impaired energy production to include redox imbalance, defective quality control, altered organelle dynamics, and persistent inflammatory signalling. This review examines mitochondrial dysfunction as a mechanistic bridge linking bioenergetic failure to cellular senescence and inflammaging, two central features of biological ageing. We discuss how impaired oxidative phosphorylation, loss of...
Identification of cognitive subtypes and risk networks in Chinese older adults: based on latent profile analysis and explainable machine learning
CONCLUSION: This study defines a cognitive impairment subtype primarily driven by education poverty and digital exclusion, which is prone to be missed in routine memory-centric screenings. The findings suggest that biomedical interventions alone may be insufficient to prevent such decline; promoting digital inclusion among older adults should be regarded as a critical public health strategy to compensate for early-life educational deficits and prevent the decline of calculation and executive...
Microbiota-regulated TCDCA associates with Parkinson's disease severity and promotes BBB dysfunction through VSMC TGR5 signaling in mice
Parkinson's disease (PD) is a systemic disorder linked to gut dysbiosis, yet key microbiota-regulated metabolites remain unclear. Here, we observe elevated taurochenodeoxycholic acid (TCDCA) in patients with PD that correlates with disease severity. Reduced bile salt hydrolase (BSH) gene abundance correlates inversely with circulating TCDCA, consistent with altered bile acid deconjugation. Exogenous TCDCA correlates with aggravated motor and gastrointestinal deficits, impaired blood-brain...
Tau phosphorylation from neuronal adaptation to Alzheimer's disease
Tau phosphorylation is classically associated with neurodegeneration, yet similar phosphorylation patterns emerge during physiological states and acute stress responses. How these overlapping patterns of phosphorylated Tau (pTau) relate to neuronal adaptation and Alzheimer's disease pathology remains unresolved. We synthesize findings from human to rodent and fly brains and from neuronal cell models, across neurodevelopment, sleep, hibernation, cellular stress, and disease. Across these...
Polysaccharide-based drug conjugates and related delivery systems for Alzheimer's disease: from molecular design to translational challenges
Alzheimer's disease (AD) presents distinct extracellular, intracellular and vascular delivery targets, yet brain exposure of candidate therapeutics remains difficult to establish. This narrative review compares hyaluronic acid, chitosan, cyclodextrin, dextran, alginate and pectin systems by construct architecture, route, blood-brain barrier (BBB) evidence, cargo release and biological response. The literature includes covalent drug conjugates, loaded or coated carriers, host-guest complexes and...
Single-cell analyses of global cohorts outline determinants of immune aging and link the ratio of GZMK(+) to GZMB(+) Tem cells to health trajectories
Human immune aging is heterogeneous, with immune responses becoming increasingly variable over the lifespan. Here, we integrated seven large-scale public single-cell peripheral blood mononuclear cell (PBMC) datasets and a newly generated cohort, encompassing 2,609 ostensibly healthy individuals across diverse ages, ancestries, and biological sexes. We identified both conserved and cohort-associated age-associated remodeling across 59 immune populations, together with sex- and ancestry-dependent...
Tau phosphorylation from neuronal adaptation to Alzheimer's disease
Tau phosphorylation is classically associated with neurodegeneration, yet similar phosphorylation patterns emerge during physiological states and acute stress responses. How these overlapping patterns of phosphorylated Tau (pTau) relate to neuronal adaptation and Alzheimer's disease pathology remains unresolved. We synthesize findings from human to rodent and fly brains and from neuronal cell models, across neurodevelopment, sleep, hibernation, cellular stress, and disease. Across these...
Dystrophic changes of nigrostriatal axons harboring a SYNJ1 Parkinson's mutation suggest catastrophic failure of endocytic mechanisms
Synaptojanin 1 is a brain enriched phosphoinositide phosphatase implicated in endocytosis at the synapse. A mutation (R258Q) that selectively impairs its Sac1 phosphatase domain causes early onset familial Parkinsonism. Neurons of mice with this mutation display synaptic vesicle traffic defects across the brain, but selective dystrophic changes in a subset of dopaminergic axons in the dorsolateral striatum. Using correlative light microscopy-FIB-SEM of mutant mouse striata to visualize in 3D...
A second-generation "hypoxia in a pill" rescues neurodegenerative phenotypes across distinct mouse models
A growing body of preclinical research is demonstrating the therapeutic potential of chronic, continuous hypoxia (11% FIO(2)) for rare and common diseases. However, the chronic delivery of hypoxic gas poses both practical challenges and long-term safety concerns. We previously introduced a small-molecule, "hypoxia-in-a-pill" combining a hemoglobin affinity enhancer (GBT440) to limit oxygen delivery with a HIF-2α inhibitor (PT2399) to prevent detrimental compensatory erythropoiesis. Although this...
A neuronal GPCR modifies neuropeptide signaling to suppress proteostasis in distal tissues
The proteostasis network (PN) safeguards the integrity of proteins by promoting various cellular activities. However, with aging, the PN's competence declines and aggregated proteins accrue within cells. This process underlies the development of neurodegenerative disorders such as Alzheimer's and Huntington's diseases. While the PN functions within cells, proteostasis is regulated across the organism by intertissue communication, which is partially governed by neurons. We previously found that...
A second-generation "hypoxia in a pill" rescues neurodegenerative phenotypes across distinct mouse models
A growing body of preclinical research is demonstrating the therapeutic potential of chronic, continuous hypoxia (11% FIO(2)) for rare and common diseases. However, the chronic delivery of hypoxic gas poses both practical challenges and long-term safety concerns. We previously introduced a small-molecule, "hypoxia-in-a-pill" combining a hemoglobin affinity enhancer (GBT440) to limit oxygen delivery with a HIF-2α inhibitor (PT2399) to prevent detrimental compensatory erythropoiesis. Although this...