TY - JOUR
T1 - Unveiling the Connection between Gut Microbiome and Polycystic Ovary Syndrome (PCOS)
AU - Li, Yun-Xian
AU - Loo, Ke-Yan
AU - Tan, Loh Teng-Hern
AU - Law, Jodi Woan-Fei
AU - Selvaraja, Malarvili
AU - Lee, Learn-Han
AU - Kumari, Yatinesh
AU - Ratnasingam, Vanassa
A2 - Letchumanan, Vengadesh
N1 - Publisher Copyright:
© 2025, HH Publisher. All rights reserved.
PY - 2025
Y1 - 2025
N2 - Polycystic ovary syndrome (PCOS) is a multifactorial endocrine metabolic disorder affecting up to one in ten women of reproductive age, with implications on fertility, metabolic health, and quality of life. Recent evidence has shown that gut microbiota dysbiosis plays a role in the PCOS pathophysiology. Based on the 25 articles extracted from PubMed, Ovid Medline, and Scopus (2020–2025), this review reveals that PCOS is consistently associated with reduced gut microbial α-diversity, distinct β-diversity clustering, and compositional shifts marked by depletion of beneficial taxa. These dysbiosis correlate with PCOS phenotypes such as insulin resistance, hyperandrogenism, dyslipidemia, and chronic inflammation via mechanisms involving impaired short-chain fatty acid production, disrupted bile acid metabolism, increased intestinal permeability, and immune-mediated dysregulation of the hypothalamic–pituitary–ovarian axis. Recognising the increasing role of the gut microbiome in PCOS highlights its systemic pathology and points towards the opportunities for microbiota-targeted therapies that address underlying pathophysiological mechanisms rather than symptomatic care alone.
AB - Polycystic ovary syndrome (PCOS) is a multifactorial endocrine metabolic disorder affecting up to one in ten women of reproductive age, with implications on fertility, metabolic health, and quality of life. Recent evidence has shown that gut microbiota dysbiosis plays a role in the PCOS pathophysiology. Based on the 25 articles extracted from PubMed, Ovid Medline, and Scopus (2020–2025), this review reveals that PCOS is consistently associated with reduced gut microbial α-diversity, distinct β-diversity clustering, and compositional shifts marked by depletion of beneficial taxa. These dysbiosis correlate with PCOS phenotypes such as insulin resistance, hyperandrogenism, dyslipidemia, and chronic inflammation via mechanisms involving impaired short-chain fatty acid production, disrupted bile acid metabolism, increased intestinal permeability, and immune-mediated dysregulation of the hypothalamic–pituitary–ovarian axis. Recognising the increasing role of the gut microbiome in PCOS highlights its systemic pathology and points towards the opportunities for microbiota-targeted therapies that address underlying pathophysiological mechanisms rather than symptomatic care alone.
KW - gut microbiota
KW - gut microbiota-based therapies
KW - metabolic disorder
KW - Polycystic ovary syndrome (PCOS)
KW - SDG 3 Good health and well-being
KW - short-chain fatty acid (SCFA)
UR - https://www.scopus.com/pages/publications/105020034274
U2 - 10.36877/pmmb.a0000475
DO - 10.36877/pmmb.a0000475
M3 - Review Article
AN - SCOPUS:105020034274
SN - 2637-1049
VL - 8
JO - Progress in Microbes and Molecular Biology
JF - Progress in Microbes and Molecular Biology
IS - 1
M1 - a0000475
ER -