Bahreiny Seyed Sobhan, Ahangarpour Akram, Harooni Elnaz, Amraei Mahdi, Aghaei Mojtaba, Fard Reza Mohammadpour
Student Research Committee, Ahvaz Jundishapur University of Medical Sciences, Ahvaz, Iran.
Medical Basic Sciences Research Institute, Physiology Research Center, Department of Physiology, School of Medicine, Ahvaz Jundishapur University of Medical Sciences, Ahvaz, Iran.
Int J Reprod Biomed. 2025 Jan 31;22(12):943-962. doi: 10.18502/ijrm.v22i12.18061. eCollection 2024 Dec.
Polycystic ovary syndrome (PCOS) casts a wide shadow over the reproductive health of millions of women worldwide, emerging as one of the most complex and multifaceted endocrine disorders. In addition, nitric oxide (NO) stands out as a pivotal signaling molecule, orchestrating a symphony of physiological processes.
This meta-analysis aims to elucidate the association between NO levels and PCOS, investigate the potential of NO as a biomarker for PCOS diagnosis, and evaluate its clinical significance.
A systematic review was conducted in several electronic databases, including PubMed, Web of Science, Cochrane Library, Scopus, EMBASE, and Google Scholar, to identify relevant studies published up to January 2024. Standardized mean difference and 95% CI were calculated using a random effects model to assess the overall effect size. Meta-regressions and subgroup analysis were performed to investigate sources of heterogeneity.
A meta-analysis of 14 studies with 1171 participants showed that NO levels were significantly lower in the PCOS group than in the control group. The pooled analysis yielded a standardized mean difference of -0.482; 95% CI: -0.908 to -0.056; p = 0.027. Subgroup analyses further demonstrated variations in NO levels between different PCOS phenotypes and in relation to metabolic parameters.
This meta-analysis provides evidence for an association between PCOS and dysregulated NO levels and suggests a potential role of NO as a biomarker in the diagnosis and pathogenesis of PCOS.
多囊卵巢综合征(PCOS)给全球数百万女性的生殖健康蒙上了一层阴影,成为最复杂、多方面的内分泌疾病之一。此外,一氧化氮(NO)作为一种关键的信号分子脱颖而出,协调着一系列生理过程。
本荟萃分析旨在阐明NO水平与PCOS之间的关联,研究NO作为PCOS诊断生物标志物的潜力,并评估其临床意义。
在多个电子数据库中进行了系统综述,包括PubMed、科学网、Cochrane图书馆、Scopus、EMBASE和谷歌学术,以识别截至2024年1月发表的相关研究。使用随机效应模型计算标准化均值差和95%置信区间,以评估总体效应大小。进行了Meta回归和亚组分析以研究异质性来源。
对14项研究、1171名参与者的荟萃分析表明,PCOS组的NO水平显著低于对照组。汇总分析得出标准化均值差为-0.482;95%置信区间:-0.908至-0.056;p = 0.027。亚组分析进一步证明了不同PCOS表型之间以及与代谢参数相关的NO水平差异。
本荟萃分析为PCOS与NO水平失调之间的关联提供了证据,并表明NO作为生物标志物在PCOS诊断和发病机制中具有潜在作用。