[模拟低氧高压条件下精索静脉曲张小鼠睾丸微环境变化的细胞模型的构建与评价]。

Q4 Medicine
中华男科学杂志 Pub Date : 2025-06-01
Shu-Lin Liang, Li-Guo Geng, Ling Han, Chu-Nan Rong, Zhan Qin, Juan DU, Chao-Ba He, Shao-Ying Yuan
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引用次数: 0

摘要

目的:精索静脉曲张(VC)通过介导睾丸微环境的改变诱发男性不育,其中睾丸缺氧和高压是重要的病理条件。本研究旨在比较小鼠睾丸低氧造模和低氧高压联合造模后小鼠精子发生细胞(GC-2spd)和支持细胞(TM4)的差异,探讨建立低氧高压联合造模的可行性。方法:在CoCl2诱导细胞缺氧的基础上,通过高浓度NaCl溶液改变GC-2和TM4细胞介质的渗透压,构建睾丸细胞缺氧高压复合模型。MTT试验选择CoCl2干预浓度,检测HIF-1α表达水平,确定细胞模型的最佳渗透压条件后,将细胞分为正常组、缺氧模型组和复合模型组。比较正常组和不同造模方法组大鼠的OS水平、程序性细胞死亡水平、炎症因子水平和热死相关蛋白表达水平。结果:CoCl2对GC-2和TM4细胞的最佳干预浓度分别为150 μmol/L和250μmol/L,渗透压为500 μmol/ kg时HIF-1α在GC-2和TM4细胞中的表达最高
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Construction and evaluation of a cell model simulating the change of testicular microenvironment mediated by hypoxic and high-pressure conditions in varicocele mice].

Objective: Varicocele (VC) induces male infertility by mediating changes in the testicular microenvironment, in which testicular hypoxia and high-pressure are important pathological conditions. This study aims to compare the mouse spermatogenesis (GC-2spd) cells and Sertoli (TM4) cells of mouse testis after hypoxic modeling and hypoxic and high-pressure combined modeling, and to explore the feasibility of establishing a hypoxic and high-pressure combined cell model. Methods: On the basis of cell hypoxia induced by CoCl2, the complex model of testicular cell hypoxia and high pressure was constructed by changing the osmotic pressure of GC-2 and TM4 cell medium with a high concentration of NaCl solution. After selecting the intervention concentration of CoCl2 by MTT test and detecting the expression level of HIF-1α for the determination of the optimal osmotic pressure conditions of the cell model, the cells were divided into normal group, hypoxia model group and composite model group. And the levels of OS, programmed cell death, inflammatory factors, and the expression levels of pyroptosis-related proteins were compared between the normal group and the groups with different modeling methods. Results: The optimal intervention concentration of CoCl2 in GC-2 and TM4 cells was 150 and 250μmol/L, respectively, and the expression of HIF-1α was the highest in both cells under osmotic pressure of 500 mOsmol/kg (P<0.05). Compared with the normal group, the SOD levels of GC-2 and TM4 cells decreased (all P<0.05), CAT level decreased (all P<0.05), and MDA level increased (all P<0.01), and the OS level of GC-2 and TM4 cells was more obvious than that of the hypoxia model group (all P<0.05). Compared with the normal group, apoptosis occurred in GC-2 and TM4 cells after composite modeling (all P<0.05). Compared with the normal group, the mRNA expressions of IL-1β, IL-18, TNF-α and COX-2 in GC-2 and TM4 cells significantly increased (P<0.01) and higher than those in hypoxia model group (P<0.05) and induced pyroptosis (P<0.01). The expression level of GSDMD increased (P<0.05). Conclusion: The cell model with hypoxia and high pressure combined modeling can not only induce oxidative stress and apoptosis of cells better than that with hypoxia alone, but also further cause inflammatory response damage and pyroptosis, which simulates the changes of testis microenvironment mediated by hypoxia and high pressure combined conditions in VC. This cell model can be used for studying the pathogenesis of VC-associated male infertility, evaluating drug efficacy, and exploring pharmacological mechanisms.

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来源期刊
中华男科学杂志
中华男科学杂志 Medicine-Medicine (all)
CiteScore
0.40
自引率
0.00%
发文量
5367
期刊介绍: National journal of andrology was founded in June 1995. It is a core journal of andrology and reproductive medicine, published monthly, and is publicly distributed at home and abroad. The main columns include expert talks, monographs (basic research, clinical research, evidence-based medicine, traditional Chinese medicine), reviews, clinical experience exchanges, case reports, etc. Priority is given to various fund-funded projects, especially the 12th Five-Year National Support Plan and the National Natural Science Foundation funded projects. This journal is included in about 20 domestic databases, including the National Science and Technology Paper Statistical Source Journal (China Science and Technology Core Journal), the Source Journal of the China Science Citation Database, the Statistical Source Journal of the China Academic Journal Comprehensive Evaluation Database (CAJCED), the Full-text Collection Journal of the China Journal Full-text Database (CJFD), the Overview of the Chinese Core Journals (2017 Edition), and the Source Journal of the Top Academic Papers of China's Fine Science and Technology Journals (F5000). It has been included in the full text of the American Chemical Abstracts, the American MEDLINE, the American EBSCO, and the database.
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