Latifi Zeinab, Nikanfar Saba, Khodavirdilou Rasa, Beirami Sohrab Minaei, Khodavirdilou Lida, Fattahi Amir, Oghbaei Farnaz
Nervous System Stem Cells Research Center, Semnan University of Medical Sciences, Semnan, Iran.
Pôle de Recherche en Physiopathologie de la Reproduction, Institut de Recherche Expérimentale et Clinique, Université Catholique de Louvain, Brussels, Belgium.
Mol Biol Rep. 2024 Dec 30;52(1):90. doi: 10.1007/s11033-024-10197-1.
This study conducts an in-depth review of the correlation between testis tissue changes and circulating microRNAs (miRNA) in diabetes-induced male reproductive complications, drawing upon both animal and clinical studies. The original articles published in English that specifically investigate miRNAs linked to male infertility in humans or animals with either type I or ΙΙ diabetes mellitus were included. The relevant articles were gathered from the PubMed, Google Scholar, Cochrane Library, and ScienceDirect databases. The quality of study was assessed utilizing the Joanna Briggs Institute (JBI) Critical Appraisal Checklist for Prevalence Studies. We collected an overall number of 1989 citations relating to our research subject. Following the elimination of articles based on the criteria, a total of 20 papers were included in the study. Aberrant expression profiles of 25 miRNAs were identified in diabetes associated with male reproductive issues, with 15 miRNAs exhibiting increased expression and 10 miRNAs showing decreased expression. Among the chosen publications, eighteen were identified as low-risk and two were classed as moderate quality. The dysregulated miRNAs were linked to testicular injury, disrupted steroid production, decreased sperm development and quality, and erectile dysfunction. The results demonstrate that the miRNA-mRNA network is linked to the pathological progression of diabetic testicular damage or erectile dysfunction. From a therapeutic perspective, the identification of circulating miRNAs could be beneficial in the timely identification and prevention of diabetes problems, such as diabetes-induced male infertility. Among all signaling pathways influenced by modified miRNAs, the Bax-caspase-3, MAPK, PI3K-Akt, and eNOS-cGMP-PKC were the main deregulated pathways.
本研究利用动物和临床研究,对糖尿病所致男性生殖并发症中睾丸组织变化与循环微RNA(miRNA)之间的相关性进行了深入综述。纳入了以英文发表的、专门研究与I型或II型糖尿病患者或动物的男性不育相关的miRNA的原始文章。相关文章从PubMed、谷歌学术、Cochrane图书馆和ScienceDirect数据库中收集。利用乔安娜·布里格斯研究所(JBI)患病率研究批判性评价清单对研究质量进行评估。我们总共收集了1989条与我们研究主题相关的引文。根据标准剔除文章后,共有20篇论文纳入本研究。在与男性生殖问题相关的糖尿病中,鉴定出25种miRNA的异常表达谱,其中15种miRNA表达增加,10种miRNA表达降低。在所选择的出版物中,18篇被确定为低风险,2篇被归类为中等质量。失调的miRNA与睾丸损伤、类固醇生成紊乱、精子发育和质量下降以及勃起功能障碍有关。结果表明,miRNA-mRNA网络与糖尿病性睾丸损伤或勃起功能障碍的病理进展有关。从治疗角度来看,循环miRNA的鉴定可能有助于及时识别和预防糖尿病问题,如糖尿病所致男性不育。在受修饰miRNA影响的所有信号通路中,Bax-caspase-3、MAPK、PI3K-Akt和eNOS-cGMP-PKC是主要的失调通路。