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a team led by scientists from the Chinese Academy of Sciences

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as well as those common across tissues, which are vital for basic housekeeping functions in biology.

a team led by scientists from the Chinese Academy of Sciences · said date not stated · reported 2025-07-28

The research team noted that proteins shared across multiple tissues perform critical biological maintenance tasks.

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Temporal analysis revealed an aging inflection around age 50, with blood vessels being a tissue that ages early and is markedly susceptible to aging.

a team led by scientists from the Chinese Academy of Sciences · said date not stated · reported 2025-07-28

Research revealed that human aging accelerates around age 50, with blood vessels aging earlier than other tissues.

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We identified tissue-enriched and tissue-enhanced proteins,

a team led by scientists from the Chinese Academy of Sciences · said date not stated · reported 2025-07-28

The research team categorized proteins discovered across various body systems based on their distribution and function.

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Based on aging-associated protein changes, we developed tissue-specific proteomic age clocks and characterized organ-level aging trajectories,

a team led by scientists from the Chinese Academy of Sciences · said date not stated · reported 2025-07-28

Scientists developed tissue-specific proteomic age clocks to track aging patterns across different human organs.

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Our study is poised to construct a comprehensive multi-tissue proteomic atlas spanning 50 years of the entire human aging process, elucidating the mechanisms behind proteostasis imbalance in aged organs and revealing both universal and tissue-specific aging patterns,

a team led by scientists from the Chinese Academy of Sciences · said date not stated · reported 2025-07-28

The study authors summarized their effort to map multi-tissue proteomic changes across five decades of human aging.

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Our findings lay the groundwork for a systems-level understanding of human aging through the lens of proteins,

a team led by scientists from the Chinese Academy of Sciences · said date not stated · reported 2025-07-28

Researchers described how their investigation of protein changes provides a systems-level view of aging.

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These insights may facilitate the development of targeted interventions for aging and age-related diseases, paving the way to improve the health of older adults.

a team led by scientists from the Chinese Academy of Sciences · said date not stated · reported 2025-07-28

The authors highlighted the potential for their findings to aid the development of treatments for age-related conditions.

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