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期刊名:Nature aging

缩写:NATURE AGING

ISSN:N/A

e-ISSN:2662-8465

IF/分区:19.4/Q1

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Clinical Trial Case Reports Meta-Analysis RCT Review Systematic Review
Classical Article Case Reports Clinical Study Clinical Trial Clinical Trial Protocol Comment Comparative Study Editorial Guideline Letter Meta-Analysis Multicenter Study Observational Study Randomized Controlled Trial Review Systematic Review
Bradley Olinger,Reema Banarjee,Amit Dey et al. Bradley Olinger et al.
Cellular senescence increases with age and contributes to age-related declines and pathologies. We identified circulating biomarkers of senescence and related them to clinical traits in humans to facilitate future noninvasive assessment of ...
Jing Wang,Xiaolan Zhou,Peng Yu et al. Jing Wang et al.
Despite the manifestation and contribution of cellular senescence to aging and various diseases, accurate identification of heterogeneous senescent cells remains challenging. Current senescence evaluation methods rely mainly on limited mark...
Lisonia Gkioni,Tobias Nespital,Maarouf Baghdadi et al. Lisonia Gkioni et al.
Suppression of the insulin-IGF-mTORC1-Ras network ameliorates aging in animals. Many drugs have targets in the network because of its roles in cancer and metabolic disease and are candidates for repurposing as geroprotectors. Rapamycin, an ...
Xiao-Qian Hu,Kenneth Lap-Kei Wu,Kang-Lin Rong et al. Xiao-Qian Hu et al.
Navigational decline is a metric distinct from aging-related cognitive degradation, yet the affected circuits and synaptic changes remain elusive. This study identified a long-range excitatory projection from parvalbumin (PV) neurons in the...
Shiyi Zhou,Katherine E Novak,Rachel Kaletsky et al. Shiyi Zhou et al.
While memory regulation is predominantly understood as autonomous to neurons, factors outside the brain can also affect neuronal function. In Caenorhabditis elegans, the insulin/IGF-1-like signaling (IIS) pathway regulates longevity, metabo...
Zhenguo Wang,Zhe Li,Hongyu Liu et al. Zhenguo Wang et al.
Mitochondria rapidly accumulate mutations throughout a lifetime, potentially acting as a molecular clock for aging and disease. We profiled mitochondrial RNA across 47 human tissues from 838 individuals, revealing rapid development of clona...