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Associations Between Gut Microbiome and 24-Hour Blood Pressure Variability: A Cross-sectional Study Highlighting Sex Differences and Potential Therapeutic Targets

Virwani, P. D.; Qian, G.; Cheung, C. N.-M.; Pijarnvanit, T. K. K. T. S.; Hsu, M. S. S.; Chow, Y. H.; Tang, L. K.; Tse, Y.-H.; Xian, J.-W.; Lam, S. S.-W.; Lee, C. P. I.; Lo, C. C. W.; Liu, R. K. C.; Ho, T. L.; Chow, B. Y.; Leung, K. S.; Lo, E. K. K.; Yuen, M.-F.; Leung, S. Y.; Hung, I. F.-N.; Louie, J. C. Y.; Teo, K.-C.; El-Nezami, H.; Ho, J. W. K.; Lau, K. K.

2025-11-04 microbiology
10.1101/2025.11.03.685706 bioRxiv
Show abstract

Blood pressure (BP) variability is an independent risk factor for cardiovascular disease (CVD). While gut microbiota (GM) and GM-derived short-chain fatty acids (SCFAs) are recognized to play a key role in BP regulation, their association with BP variability remains poorly understood. This cross-sectional study of 241 community-dwelling individuals from Hong Kong (113 men and 128 women, mean age 54{+/-}6 years) without symptomatic CVD examined the associations of GM, characterized by shotgun sequencing, and plasma SCFAs, with systolic and diastolic blood pressure (SBP/DBP) variability assessed by 24-hour BP monitoring. GM analyses, using covariate-adjusted statistical models, revealed that higher 24-hour SBP CoV associated negatively with GM -diversity (Shannon and Simpsons index, P<0.05) and positively with Firmicutes/Bacteroidetes ratio, driven by the female cohort. Parabacteroides merdae, Bacteroides dorei, Bifidobacterium pseudocatenulatum, Alistipes finegoldii and Bacteroides intestinalis were negatively associated with indices of SBP/DBP variability in a sex-specific manner. Further analysis indicated that B. dorei may mediate SBP CoV via plasma iso-butyric acid in women (bootstrapping 95% CI: -3.6 to -0.19; P<0.05). We demonstrated that higher SBP variability is associated with markers of gut dysbiosis and a reduction in beneficial gut bacteria, particularly in women. Notably, we identified several gut bacterial species with potential therapeutic implications for managing 24-hour SBP/DBP variability, warranting further investigation.

Published in Gut Microbiome · not in our set (fewer than 10 published preprints to learn from) · training set

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