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Daily multivitamin may help older adults stay independent
Taking a daily multivitamin may help older adults preserve the strength and stamina needed for everyday activities. After three years, users reported better functional health than those taking a placebo, although the preliminary findings still require peer review.
Scientists find a simple way to stop cavities without drilling
A liquid brushed onto cavities in seconds may spare many young children from pain, infection, and surgery. A major U.S. trial found that silver diamine fluoride stopped decay in more than half of treated baby teeth. The treatment requires no drilling, shots, or sedation, although it does permanently darken the decayed area.
Your gut may help your brain decide what to remember
Signals traveling from the gut to the brain may help turn meals into lasting memories. Rats showed stronger memory activity after consuming nutritious foods, but not after drinking sweet liquids with little or no nutritional value. Blocking the vagus nerve erased this effect and made it harder for the animals to remember where food had been located. Over time, diets high in fat and sugar also weakened this memory system.
Odd shapes hidden in dense Amazon rainforest reveal sprawling ancient civilization
Newly found earthworks suggest about 3 million people might have lived in just about 3% of the forest’s entire area
New microwave frying method could make french fries much healthier
A new cooking method could make French fries crispier in less time while significantly limiting how much oil they absorb. Researchers propose combining microwave heating, which keeps oil out, with conventional frying, which provides the crunch consumers expect.
Mitochondrial accumulation and lysosomal dysfunction result in mitochondrial plaques in Alzheimer's disease
Dysfunctional mitophagy is proposed as a key component of Alzheimer's disease (AD) pathology, yet direct in vivo evidence and mechanistic insights are still lacking. Here we show that AD model mice expressing a mitophagy reporter (APP/PSEN1/mt-Keima) develop large accumulation of acidic and neutral mitochondria within neuronal processes that form a previously unrecognized pathological structure termed mitochondrial plaques (MPs). The development of MPs is driven by abnormal mitochondrial buildup...
CRISPR screens identify targets to rescue age-related T cell dysfunction in cancer
Immune aging impairs T cell-mediated tumor control as well as cancer immunotherapy outcomes. The most important drivers of T cell dysfunction in aged tumors remain unknown. We performed single-cell CRISPR screens to identify Dusp5 and Zfp219 as key regulators of CD8^(+) T cell persistence and effector differentiation within aged tumors. Loss of Dusp5 increased extracellular signal-regulated kinase (ERK) phosphorylation and globally enhanced T cell proliferation. Conversely, Zfp219 deletion...
Interaction between mental and cardiometabolic health in relation to telomere length among university staff in Australia
CONCLUSIONS: Age was the primary correlate of TL. Burnout, sleep-related impairment, and mental quality of life may moderate the association between FPG and TL. These exploratory findings suggest that addressing both psychological and cardiometabolic health may support TL in working adults.
Restoring testosterone homeostasis: The therapeutic potential of stem Leydig cells for late-onset hypogonadism
Late-Onset Hypogonadism (LOH), also known as male menopause syndrome, is a common health problem plaguing middle-aged and elderly men. Its core pathophysiological change lies in the progressive decline of testosterone levels in men with age. This leads to a series of symptoms involving sexual function, physical, and psychological aspects, seriously affecting the quality of life and overall health of patients. The core pathophysiological link of LOH lies in the progressive decline of testosterone...
The role of ageing-specific PTM remodeling in myocardial ischemia-reperfusion injury
Myocardial ischemia-reperfusion injury (MIRI) in patients with acute myocardial infarction (AMI) after thrombolytic therapy or percutaneous coronary intervention is one of the diseases with threatening health and increasing mortality. Despite decades of research, the precise mechanisms of MIRI remain incompletely understood. Ageing is considered one of the factors that exacerbate MIRI. Emerging evidence highlights that protein post‑translational modifications (PTMs) serve as critical regulators...
Genomic, epigenomic and transcriptomic regulation of cellular senescence
Cellular senescence is a complex, highly regulated cell state induced by cellular damage and stress. Senescence is central to many areas of biology, with roles in tumour suppression, tissue regeneration, antiviral defence and diverse age-related pathologies. Senescence is characterized by stable cell cycle arrest, metabolic alterations, chromatin remodelling and the secretion of pro-inflammatory and tissue-modifying factors that are collectively termed the senescence-associated secretory...
Mitochondrial metabolism and epigenetic crosstalk drive SASP
Senescent cells promote tissue dysfunction in part through the senescence-associated secretory phenotype (SASP)¹. Cytosolic mitochondrial nucleic acids activate innate immune signalling to initiate this inflammatory programme^(2,3). Here we show that mitochondrial metabolism provides a second layer of control that enables execution of the inflammatory programme. In senescent cells, the mitochondrial pyruvate-citrate-acetyl-CoA axis is upregulated, increasing the availability of acetyl-CoA to...
Senotypes define the diverse landscape of senescent cells
Cellular senescence was initially defined in vitro as a stable cell-cycle arrest that occurs after repeated replication, but it is now recognized as a heterogeneous state shaped by cell type, species, senescence-inducing stress, tissue microenvironment and time. To organize this complexity, we propose the term 'senotype' to classify senescent cells by their inputs, molecular features and functional effects. We outline a practical framework incorporating: (1) cell identity and context; (2)...
Bioengineering strategies to interrogate and modulate the aging immune system
Age-related changes in the immune system result in pronounced vulnerability to acute infections and cancers, and in dysregulated inflammation and wound healing that fuel many chronic diseases. Although we understand much about some of these changes, gaps in mechanistic knowledge remain, in part hindered by a lack of well-validated in vitro models of immune aging. We propose that multidisciplinary approaches, nucleated at the interface of immunology, gerontology and engineering, have the...
Statin therapy optimization in older adults: interim results of a randomized controlled trial of pharmacist-led pharmaceutical care
Statin optimization in older adults is increasingly relevant within the geroscience framework of cardiovascular ageing. This randomized controlled trial evaluated whether pharmacist-led pharmaceutical care improves lipid outcomes and statin adherence in community-dwelling older adults receiving primary care. A total of 99 patients aged 65 years or older on long-term statin therapy were randomized to usual care or structured pharmacist-led care delivered every 3 months. The primary outcome was...
Epigenetic aging biomarkers in dietary geroscience: feasibility, participant perceptions, and trial design considerations
Targeting biological processes of aging is a central goal of geroscience; however, limited data exist regarding the feasibility of incorporating biological aging biomarkers into dietary intervention trials. We conducted a pilot feasibility study among 34 adults aged 48-81 years with metabolic syndrome, a condition associated with elevated risk of age-related cardiometabolic disease and advanced biological aging. Participants consumed 1 oz of tree nuts and two tablespoons of extra virgin olive...
Shared striatal neurons exhibit context-specific dynamics for internally and externally driven actions
Animals can initiate movements either in response to external cues or from internal drive, yet how the brain flexibly supports both remains unclear. Disorders such as Parkinson's disease disrupt these modes differently, suggesting distinct underlying mechanisms. These differences could arise from specialized circuits or from shared neuronal populations that shift their dynamics across contexts. To distinguish between these possibilities, we performed two-photon calcium imaging in the...
Multivariate associations between systemic inflammation, metabolic dysregulation, and cognitive performance in project FRONTIER
CONCLUSION: Systemic inflammation and metabolic dysregulation were associated with poorer cognitive performance, particularly executive dysfunction, in this rural aging cohort. These findings, while modest in effect size, support the importance of cardiometabolic health in cognitive aging, motivating future longitudinal and mechanistic studies.
Molecular mechanisms of perimenopausal cognitive impairment in a rat model: multi-omics integration reveals the Adgrl2-Camk2d-TRPV1 signaling axis mediating calcium homeostasis disruption and neuroinflammation
CONCLUSION: The Adgrl2-Camk2d-TRPV1 signaling axis is a core driver pathway of perimenopausal cognitive impairment, exacerbating neuronal damage by mediating calcium overload, neuroinflammation, and metabolic disorders. This discovery provides a novel pathological mechanism for perimenopausal cognitive impairment, identifies Adgrl2 and TRPV1 as potential therapeutic targets, and designates Ca^(2+) as an ideal diagnostic biomarker, offering significant support for clinical diagnosis, treatment,...
Progerin Hinders Autophagy Flux at Its Final Stages in Hutchinson-Gilford Progeria Syndrome Cells, Preventing Its Own Autophagic Degradation
In Hutchinson-Gilford progeria syndrome (HGPS), dysfunctional autophagy results in the accumulation of progerin, a lamin A mutant variant that alters a plethora of processes, inducing senescence and driving premature aging. Therefore, the elimination of progerin through autophagy restoration emerges as a therapeutic intervention against HGPS. However, a comprehensive study of autophagy flux in HGPS remains to be addressed. In this study, the dynamics of autophagy in HGPS fibroblasts were...