Results 261 to 270 of about 65,710 (330)

Fasting as Medicine: Mitochondrial and Endothelial Rejuvenation in Vascular Aging

open access: yesAging Cell, Volume 25, Issue 2, February 2026.
Aging impairs cerebrovascular health by driving mitochondrial dysfunction, oxidative stress, endothelial failure, and neurovascular uncoupling, leading to BBB breakdown and cognitive decline. In contrast, time‐restricted feeding/eating counteracts these mechanisms by restoring mitochondrial function, activating adaptive nutrient‐sensing pathways ...
Madison Milan   +13 more
wiley   +1 more source

Inhibiting miR-200a-3p Increases Sirtuin 1 and Mitigates Kidney Injury in a Tubular Cell Model of Diabetes and Hypertension-Related Renal Damage. [PDF]

open access: yesBiomolecules
Martinez-Arroyo O   +8 more
europepmc   +1 more source

NMNAT1 Activates Autophagy to Delay D‐Galactose‐Induced Aging in Cochlear Hair Cells

open access: yesAging Cell, Volume 25, Issue 2, February 2026.
The study presents mechanistic insights into cochlear hair cells aging using cellular and explant models. The assessment into NMNAT1 regulated NAD+ metabolism, autophagy, and aging in ARHL. NMNAT1 overexpression restores autophagic activity and decelerates aging in cochlear hair cells.
Yongjie Wei   +14 more
wiley   +1 more source

Deficiency of Microglial‐Derived Spp1 Exacerbates Age‐Related Memory Decline by Impairing Mitochondrial Complex I Function

open access: yesAging Cell, Volume 25, Issue 2, February 2026.
Microglia‐derived Spp1 regulates OXPHOS via the AKT/Complex I pathway to mitigate age‐related memory decline. (Graphical Abstract was created using BioRender). ABSTRACT Age‐related memory decline is a hallmark of brain aging and a primary risk factor for neurodegenerative disorders.
Meiling Wang   +9 more
wiley   +1 more source

Correlation between Sirtuin 1 downregulation and reduced vitamin D receptor expression in patients with diabetic neuropathy. [PDF]

open access: yesActa Diabetol
Latini A   +9 more
europepmc   +1 more source

Periodic Therapeutic Phlebotomy Mitigates Systemic Aging Phenotypes by Promoting Bone Marrow Function

open access: yesAging Cell, Volume 25, Issue 2, February 2026.
In D‐galactose‐induced aging model, periodic therapeutic phlebotomy exerts significant and comprehensive anti‐aging effects by inducing bone marrow microenvironment restoration, which rebalances hematopoiesis to restore peripheral blood function and ameliorate systemic aging phenotypes.
Ji‐Ru Cai   +7 more
wiley   +1 more source

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