乙型肝炎病毒感染者的血清外泌体通过 miR-122-5p/ALDOA 轴抑制 Sertoli 细胞的糖酵解作用

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2023-12-30 DOI:10.1016/j.repbio.2023.100845
Hao Deng, Yucheng Zhong, Jun Zhao, Xiaohang Li, Guoqun Luo, Huan Li
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引用次数: 0

摘要

乙型肝炎病毒(HBV)感染与男性不育有关。其机制包括精子染色体不稳定性增加,从而对精子的活力和功能产生不利影响。塞尔托叶细胞(SC)在精子生成过程中至关重要,因为它们利用糖酵解为生殖细胞和自身提供能量。HBV 感染会损害精子功能。然而,HBV 感染是否会破坏 Sertoli 细胞的能量代谢仍不清楚。本研究旨在确定HBV感染者血清外泌体在SC活力和糖酵解中的作用。采用高速离心法从30名HBV感染(HBV+_exo)或未感染(HBV-_exo)的患者中获得血清外泌体,并通过透射电子显微镜和Western印迹分析进行鉴定。细胞活力通过 CCK-8 检测法确定。通过定量 RT-PCR 检测 miR-122-5p 的表达水平,双荧光素酶基因报告实验证实了 miR-122-5p 的下游靶基因。蛋白表达通过 Western 印迹分析确定。结果显示,HBV+ _exo抑制了SCs的细胞活力、细胞外酸化率和ATP的产生。与HBV-_exo相比,miR-122-5p在HBV+ _exo中高表达。此外,HBV+ _exo能有效地被SC吸收,而miR-122-5p则能有效地被转运到SC。然而,ALDOA 的过表达会逆转 miR-122-5p 和 HBV+ _exo 对 SC 活力和糖酵解的影响。HBV+ _exo可能传递miR-122-5p,以ALDOA为靶标,抑制SC活力和糖酵解,从而为治疗HBV相关男性不育症提供了新的治疗思路。
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Serum exosomes from hepatitis B virus–infected patients inhibit glycolysis in Sertoli cells via miR-122-5p/ALDOA axis

Hepatitis B virus (HBV) infection is associated with male infertility. The mechanism includes an increase in chromosomal instability in sperm, which has an adverse effect on sperm viability and function. Sertoli cells (SCs) are vital in spermatogenesis because they use glycolysis to provide energy to germ cells and themselves. HBV infection impairs sperm function. However, whether HBV infection disrupts energy metabolism in SCs remains unclear. This study aimed to determine the role of serum exosomes of HBV-infected patients in SC viability and glycolysis. Serum exosomes were obtained from 30 patients with (HBV+_exo) or without (HBV–_exo) HBV infection using high-speed centrifugation and identified by transmission electron microscopy and western blot analysis. Cell viability is determined by CCK-8 assay. Glycolysis is determined by detecting extracellular acidification rate and ATP levels. miR-122–5p expression levels are detected by quantitative RT-PCR, and a dual-luciferase gene reporter assay confirms the downstream target gene of miR-122–5p. Protein expression is determined by western blot analysis. The results show that HBV+ _exo inhibited cell viability, extracellular acidification rate, and ATP production of SCs. miR-122–5p is highly expressed in HBV+ _exo compared with that in HBV–_exo. Furthermore, HBV+ _exo is efficiently taken up by SCs, whereas miR-122–5p is efficiently transported to SCs. miR-122–5p overexpression downregulates ALDOA expression and inhibits SC viability and glycolysis. However, ALDOA overexpression reverses the effects of miR-122–5p and HBV+ _exo on SC viability and glycolysis. HBV+ _exo may deliver miR-122–5p to target ALDOA and inhibit SC viability and glycolysis, thus providing new therapeutic ideas for treating HBV-associated male infertility.

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ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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