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Stanford scientists discover a seafood that can reverse signs of aging
A substance found in edible sea squirts appeared to reverse several signs of aging in older mice. Plasmalogen supplements improved memory and learning, strengthened connections between brain cells, reduced inflammation, and even helped the mice grow thicker, darker hair. Researchers believe the compounds may encourage brain regeneration and protect aging synapses.
A longer exhale may push your brain toward bolder decisions
Slow breathing with a prolonged exhale made people more willing to take risks by changing heart activity and increasing the brain’s sensitivity to rewards. The findings suggest that something as simple as controlling your breath can directly influence how you evaluate choices.
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...
Lysine iminylation derived from ω-3 polyunsaturated fatty acids
Protein posttranslational modifications (PTMs) play a central role for regulating protein function and cellular processes, with many PTMs arising from reactions with electrophilic metabolites. Here we extend the known landscape of PTMs with the identification of "lysine C(3)-iminylation," the conjugation of protein lysine residues with propionaldehyde. To stabilize iminylation for mass spectrometric analyses and distinguish it from other isomeric PTMs, we developed a fixation and stable-isotope...
Mitochondrial superoxide-induced mitohormesis is mediated by citrate and cardioprotective
Mitohormesis, whereby transient mitochondrial stress induces adaptive signaling, promotes organismal resilience and longevity in invertebrates, but how this operates in mammals and the underlying metabolic signals involved remain unclear. Using a mouse model of mitohormesis, we show that transient mitochondrial superoxide stress during embryogenesis reprograms the adult heart to enhance mitochondrial biogenesis and antioxidant capacity. These adaptations confer protection against mitochondrial...
Cardiomyocyte-intrinsic somatic mtDNA mutations induce an OXPHOS-dependent immune response and promote progressive heart failure
Mitochondrial DNA (mtDNA) mutations accumulate with age, but their mechanistic contribution to aging remains unclear. The classical mtDNA mutator mouse expresses a proofreading-deficient mtDNA polymerase (POLG^(D257A)) and accumulates mtDNA mutations across all tissues leading to premature aging. However, this model cannot resolve whether the aging phenotype results from systemic dysfunction or cell-intrinsic effects of somatic mtDNA mutations. To overcome this limitation, we generated...
Superoxide formation upon photochemical aging of secondary organic aerosols derived from biomass burning precursors
Photochemical oxidation in the aqueous phase is critical for chemical evolution of secondary organic aerosols (SOA), but it represents one of the most uncertain processes in aerosols and clouds. Here, we show that photoirradiation of SOA derived from biomass burning precursors leads to substantial formation of superoxide. The combination of laboratory measurements and kinetic modeling reveals that superoxide generation is driven by photosensitization reactions in aromatic SOA, while the dominant...
Natural variation in SL6 determines fatty acid components and seed longevity in rice
Seed longevity (SL) is vital for ensuring food security worldwide. However, the genetic basis of SL has been scarcely documented. Here, we report the cloning of a major SL locus, qSL6, encoding a fatty acyl-ACP thioesterase type B. SL6 is functionally conserved in regulating palmitic acid synthesis in seeds, conferring higher oxidation durability and SL in various species. Through the VP1-SL6 module, a seed desiccation-derived ABA signal is transmitted via VP1, which directly activates SL6...
To prevent forest fires, Trump wants to end a road-building ban. Scientists are skeptical
Administration claims decades-old “roadless rule” prevents efforts to improve forest health
Acceptability and feasibility of an adapted Portuguese folk dance-based therapy in older adults with moderate-to-severe dementia and balance impairment
INTRODUCTION: Population ageing has increased the prevalence of dementia, often accompanied by mobility impairments. It is essential to develop effective interventions and promote adherence among people with dementia. Culturally meaningful activities may enhance motivation, engagement, and rehabilitation outcomes.
Role of complement and complement-targeted therapeutics in neurological diseases
Complement comprises a group of plasma and membrane proteins that provide an effective bridging function for innate and adaptive humoral immunity. Understanding complement pathophysiology is fundamental given that inappropriate complement function in host defence can lead to infectious diseases and inefficient disposal of altered, damaged or senescent cells can lead to or enhance autoimmune neurological processes. Although the rising number of approved drugs targeting complement pathways remains...
Priming of CD8<sup>+</sup> T cells by peripheral dendritic cells exacerbates tau-mediated neurodegeneration
Alzheimer's disease and primary tauopathies are marked by changes in adaptive immunity, with increased brain CD8^(+) T cells correlating with tau pathology severity. However, how peripheral T cells get primed to enter the brain and contribute to tau-mediated neurodegeneration remains unclear. In different disease conditions, conventional type 1 dendritic cells (cDC1s) cross-present antigens to prime CD8^(+) T cells into effector cells. We show that tauopathy mice lacking cDC1s or antigen...
Role of complement and complement-targeted therapeutics in neurological diseases
Complement comprises a group of plasma and membrane proteins that provide an effective bridging function for innate and adaptive humoral immunity. Understanding complement pathophysiology is fundamental given that inappropriate complement function in host defence can lead to infectious diseases and inefficient disposal of altered, damaged or senescent cells can lead to or enhance autoimmune neurological processes. Although the rising number of approved drugs targeting complement pathways remains...
A consensus roadmap from the SENESCENCE2030 network towards precision senescence medicine
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GLP-1 receptor agonism extends median lifespan in mice
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NSF initiative seeks tech fixes for Colorado River water crisis
$100 million program to ensure water for industry overlooks shortage’s root causes, critics say