LON9ER 8 STORIES

The daily longevity edition

№41

16 AUG 2026 · 8 STORIES · ABOUT 2 MINS

Today’s lead

Characterizing the SASP‐Dependent Paracrine Spreading of Senescence Between Human Brain Cell Types

In this paper, we characterized the brain cell-type-specific SASP and defined the directionality of a paracrine spreading of senescence phenotypes. We unraveled ligand-receptor pairs underlying this spreading and showed that inhibiting this interaction ameliorates senescence dissemination.

Aging Cell · 08:10

№02 / 8 · Peter Attia

Multifactorial trials: taking apart the kitchen sink

What a multifactorial trial can prove, what it can't, and why the difference matters more than it seems

Peter Attia · 12:00

№03 / 8 · ScienceAlert

A Crucial Part of The Brain's Memory Center Seems to Shrink in People With Depression

A sign of Alzheimer’s… or a sign of something else? ScienceAlert stories are written, fact-checked, and edited by humans, never generated by AI. Don't miss a story, subscribe here.

ScienceAlert · 01:00

№04 / 8 · npj Aging

Gemfibrozil promotes longevity and health by restricting amino acid uptake through the Dipeptide transporter, PEPT1

Gemfibrozil promotes longevity and health by restricting amino acid uptake through the Dipeptide transporter, PEPT1

npj Aging · 01:00

№05 / 8 · Nature Aging

Physical activity delays ovarian aging in part through adiponectin-related signaling pathways

Physical activity has geroprotective properties, yet its role in ovarian aging is incompletely understood.

Nature Aging · 01:00

№06 / 8 · Nature Aging

Exercise slows ovarian aging

Cross-sectional analyses of more than 150,000 participants show an association between higher physical activity levels and delayed menopause. In mice, physical activity can delay ovarian aging; adiponectin knockout attenuated this protection.

Nature Aging · 01:00

№07 / 8 · Nature Ageing

Histological aging signatures for monitoring tissue-specific aging and disease

Nature Ageing · 01:00

№08 / 8 · News-Medical

Youth-associated protein reverses age-related microglial changes in mice

Researchers at The Icahn School of Medicine at Mount Sinai have identified a role for the youth-associated protein TIMP2 in supporting the healthy function of microglia, the brain's resident immune cells.

News-Medical · 21:04

Edition №41 complete

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