TY - JOUR
T1 - Gut microbial metabolites
T2 - emerging roles in vascular aging and implications for disease
AU - Li, Tianci
AU - Hua, Yiming
AU - Cao, Yudan
AU - Sun, Hongwei
AU - Yuan, Zuyi
AU - Li, Ting
N1 - Publisher Copyright:
© The Author(s) 2026.
PY - 2026
Y1 - 2026
N2 - Population aging is a critical global health challenge that drives a significant increase in the burden of aging-related chronic diseases. Vascular aging, defined as the progressive structural and functional degeneration of blood vessels, is a pivotal manifestation of systemic aging and a major contributor to cardiovascular morbidity and mortality. Recent advances have highlighted the gut microbiota and its metabolites as crucial modulators of host physiology and disease. This review synthesizes current knowledge on the "gut-vascular axis", focusing on the mechanistic roles of key gut-derived metabolites such as short-chain fatty acids, bile acids, and phenylalanine-derived metabolites in vascular aging. We provide a detailed analysis of how specific microbial metabolites influence these processes, discuss their implicated roles in aging-related vascular diseases, particularly atherosclerosis and aortic aneurysms, and illustrate their potential as both pathogenic drivers and therapeutic targets.
AB - Population aging is a critical global health challenge that drives a significant increase in the burden of aging-related chronic diseases. Vascular aging, defined as the progressive structural and functional degeneration of blood vessels, is a pivotal manifestation of systemic aging and a major contributor to cardiovascular morbidity and mortality. Recent advances have highlighted the gut microbiota and its metabolites as crucial modulators of host physiology and disease. This review synthesizes current knowledge on the "gut-vascular axis", focusing on the mechanistic roles of key gut-derived metabolites such as short-chain fatty acids, bile acids, and phenylalanine-derived metabolites in vascular aging. We provide a detailed analysis of how specific microbial metabolites influence these processes, discuss their implicated roles in aging-related vascular diseases, particularly atherosclerosis and aortic aneurysms, and illustrate their potential as both pathogenic drivers and therapeutic targets.
KW - aortic aneurysms
KW - atherosclerosis
KW - bile acids
KW - phenylalanine-derived metabolites
KW - short-chain fatty acids
KW - Vascular aging
UR - https://www.scopus.com/pages/publications/105048123736
U2 - 10.20517/jca.2026.10
DO - 10.20517/jca.2026.10
M3 - 文章
AN - SCOPUS:105048123736
SN - 2768-5993
VL - 6
SP - 1
EP - 27
JO - Journal of Cardiovascular Aging
JF - Journal of Cardiovascular Aging
IS - 2
ER -