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These trees are making air quality in cities worse
AI-designed “intrabodies” could unlock new treatments for Alzheimer’s, Parkinson’s and MND
Researchers have developed a new way to turn ordinary antibodies into tiny disease-fighting molecules that can work inside human cells, potentially opening new paths for treating Alzheimer’s, Parkinson’s, Huntington’s disease, and motor neurone disease.
Researchers reveal deeper workings of brain’s information hub
The brain has a remarkably flexible system for handling uncertainty and changing situations. Researchers found that the frontoparietal cortex constantly shifts how it communicates with other brain regions depending on what information is needed to make a decision. Rather than simply becoming more active when things get difficult, this network appears to reorganize itself in real time.
A mother’s age can shape her offspring without changing their DNA
Scientists have found evidence that the effects of a mother’s age on her offspring may be driven by reversible changes in gene activity rather than permanent DNA damage. The discovery raises the fascinating possibility that biological information from mothers, grandmothers, and even great-grandmothers can shape the health of future generations.
Coffee drinkers have less fat, more muscle, and surprising hormone differences
Coffee drinkers may be getting more than an energy boost. A Finnish study found that people who drank more coffee tended to have less total and abdominal fat, more muscle, and healthier metabolic markers despite having similar BMIs. Higher coffee intake was also linked to lower levels of certain amino acids associated with insulin resistance and type 2 diabetes risk.
Scientists turn probiotic bacteria into tiny drug factories for pancreatic cancer
Engineered probiotic bacteria were able to infiltrate pancreatic tumors, stimulate cancer-fighting immune cells, and slow tumor growth in animal studies. Even more strikingly, the treatment worked better when combined with chemotherapy, radiation, or immunotherapy.
‘Brain-eating amoeba’ appears to love crawling into narrow spaces
Claustrophilic behavior may help Naegleria fowleri find food—and accidentally travel up the human nasal cavity
Former Fauci adviser pleads guilty to hiding COVID-19 communications
David Morens awaits sentencing after admitting to trying to avoid Freedom of Information Act requests
Mysterious droplets in cat kidneys may help felines send long-lasting messages
Lipid envelopes allow cat “calling cards” to survive for months in the environment
Fastest known star could reveal the spin of our galaxy’s giant black hole
Racing at 8% the speed of light, record-setting object orbits the Milky Way’s black hole every 8.7 years
AI-assisted FTIR spectroscopic profiling of exosomes: Emerging frontiers in early detection of Alzheimer's disease
Alzheimer's disease (AD) remains one of the most challenging neurodegenerative disorders, primarily due to the lack of reliable tools for its early and non-invasive diagnosis. Exosomes, nanosized extracellular vesicles secreted by neural and peripheral cells, have emerged as promising biomarkers reflecting the molecular alterations associated with AD pathogenesis. Fourier Transform Infrared (FTIR) spectroscopy, with its capacity to capture unique biochemical fingerprints of biomolecules,...
Vitamin C inhibits ACSL4 to alleviate ferro-aging in primates
No abstract
CD4 CTLs in supercentenarians: Signs of adaptive expansion in healthy aging
Our previous study identified CD4 cytotoxic T lymphocytes (CD4 CTLs) as a hallmark of supercentenarians. CD4 CTLs have primarily been studied in disease contexts; however, their role in healthy aging remains unclear. Using single-cell immune profiling, we analyzed T cells from supercentenarians and found that CD4 CTLs begin to expand around the age of 100, characterized by sequential CD27/CD28 loss without exhaustion. CD4 CTLs were dominated by large clones, with top clones averaging 33.3%,...
Aging in the air we breathe: mechanisms and consequences of air pollution exposure for biological aging
Air pollution is the leading environmental cause of disease burden worldwide and is increasingly recognized as a potent driver of accelerated biological aging. Rather than acting through organ-specific toxicity alone, air pollutants appear to affect the fundamental hallmarks of aging itself, including oxidative stress, chronic inflammation, epigenetic dysregulation, telomere attrition, mitochondrial dysfunction, and cellular senescence. The pollutants of greatest concern are fine and ultrafine...
Tryptophan Metabolism Regulates Immunosenescence and Inflammaging: The Macrophage Immunometabolic Axis and Therapeutic Targets
Aging features two linked immune traits: immunosenescence and chronic low-grade inflammaging. Other than senescent lymphocytes, pathologically remodelled macrophages are key drivers of age-related immune dysfunction, mainly via tryptophan (Trp) metabolism through the kynurenine pathway (KP) and microbiota-related indole pathway. This review suggests a bidirectional amplification loop model, in which dysbiosis of the microbiota in the aged gut causes decreased production of microbial indoles and...
Disease-specific tau polymorphs are associated with unique protein networks across proteinopathies
Tau protein aggregates adopt distinct conformations across tauopathies, yet the protein interactions engaged by disease-specific polymorphs remain poorly characterized. Here, we demonstrate that conformationally distinct tau polymorphs associate with disease-specific interaction networks across Alzheimer's disease (AD), progressive supranuclear palsy (PSP), and dementia with Lewy bodies (DLB). Interactome profiling of tau aggregates from PBS- and sarkosyl-soluble brain fractions identified 493...
Neuronal overexpression of Kcnn1 in A53T α-synuclein mice suppresses phospho-serine 129 α-synuclein formation and doubles survival time
Synucleinopathies, including idiopathic Parkinson's Disease, are driven by misfolding and aggregation of the 140 residue α-synuclein protein that plays a role in presynaptic vesicle regulation. We describe effects of a modifier, neuronal overexpression of the mouse calcium-activated potassium channel subunit Kcnn1, on a mouse model in which transgenic Thy1.2-driven human A53T α-synuclein directs fully penetrant lethal motor disease. Kcnn1 overexpression increased median survival of these mice...
A lactate-alpha-ketoglutarate metabolic circuit in tumor-infiltrating regulatory T cells accelerates tumor progression by inducing NK cell senescence
Regulatory T (T(reg)) cells prevent autoimmune diseases but limit antitumor immunity. Tumor‑infiltrating Treg (Ti‑T(reg)) cells exhibit metabolic traits as potential antitumor targets. Here, we find that Ti-T(reg) cells upregulate glutamate dehydrogenase 1 (GDH1), increasing α-ketoglutarate (α-KG) levels. Elevated GDH1 in Ti-T(reg) cells accelerates tumor progression. Mechanistically, in a lactate rich microenvironment, GDH1 lactylation boosts α-KG production to fuel ALKBH5-mediated Wnt2...
Asia's longevity gains must be translated into better health
No abstract
Palliative Care Interventions for Patients With Kidney Disease: A Scoping Review by the Kidney Disease Aging Research Collaborative
CONCLUSIONS: In our sample of studies evaluating CKD palliative care interventions, limited quality domains were addressed, a variety of measurement tools were used, and less than a quarter of studies were conducted only in older adults. Future research should address the holistic nature of palliative care, apply standardized instruments, and increase inclusion of older adults.