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富氢盐水减轻大鼠脊髓半切诱导的睾丸损伤。

Hydrogen-rich saline attenuates spinal cord hemisection-induced testicular injury in rats.

作者信息

Ge Li, Wei Li-Hua, Du Chang-Qing, Song Guo-Hua, Xue Ya-Zhuo, Shi Hao-Shen, Yang Ming, Yin Xin-Xin, Li Run-Ting, Wang Xue-Er, Wang Zhen, Song Wen-Gang

机构信息

Department of Histology and Embryology, Taishan Medical University, Tai-an City, PR China.

Key Laboratory of Atherosclerosis in Universities of Shandong, Taishan Medical University, Institute of Atherosclerosis, Taishan Medical University, Tai-an City, PR China.

出版信息

Oncotarget. 2017 Jun 27;8(26):42314-42331. doi: 10.18632/oncotarget.15876.

Abstract

To study how hydrogen-rich saline (HS) promotes the recovery of testicular biological function in a hemi-sectioned spinal cord injury (hSCI) rat model, a right hemisection was performed at the T11-T12 of the spinal cord in Wistar rats. Animals were divided into four groups: normal group; vehicle group: sham-operated rats administered saline; hSCI group: subjected to hSCI and administered saline; HRST group: subjected to hSCI and administered HS. Hind limb neurological function, testis index, testicular morphology, mean seminiferous tubular diameter (MSTD) and seminiferous epithelial thickness (MSET), the expression of heme oxygenase-1 (HO-1), mitofusin-2 (MFN-2), and high-mobility group box 1 (HMGB-1), cell ultrastructure, and apoptosis of spermatogenic cells were studied. The results indicated that hSCI significantly decreased the hind limb neurological function, testis index, MSTD, and MSET, and induced severe testicular morphological injury. The MFN-2 level was decreased, and HO-1 and HMGB-1 were overexpressed in testicular tissues. In addition, hSCI accelerated the apoptosis of spermatogenic cells and the ultrastructural damage of cells in the hypophysis and testis. After HS administration, all these parameters were considerably improved, and the characteristics of hSCI testes were similar to those of normal control testes. Taken together, HS administration can promote the recovery of testicular biological function by anti-oxidative, anti-inflammatory, and anti-apoptotic action. More importantly, HS can inhibit the hSCI-induced ultrastructural changes in gonadotrophs, ameliorate the abnormal regulation of the hypothalamic-pituitary-testis axis, and thereby promote the recovery of testicular injury. HS administration also inhibited the hSCI-induced ultrastructural changes in testicular spermatogenic cells, Sertoli cells and interstitial cells.

摘要

为研究富氢盐水(HS)如何促进半横断脊髓损伤(hSCI)大鼠模型睾丸生物学功能的恢复,对Wistar大鼠在T11 - T12节段进行脊髓右侧半横断。将动物分为四组:正常组;载体组:假手术大鼠给予盐水;hSCI组:接受hSCI并给予盐水;HRST组:接受hSCI并给予HS。研究后肢神经功能、睾丸指数、睾丸形态、平均曲细精管直径(MSTD)和生精上皮厚度(MSET)、血红素加氧酶-1(HO-1)、线粒体融合蛋白-2(MFN-2)和高迁移率族蛋白B1(HMGB-1)的表达、细胞超微结构以及生精细胞凋亡情况。结果表明,hSCI显著降低后肢神经功能、睾丸指数、MSTD和MSET,并导致严重的睾丸形态损伤。睾丸组织中MFN-2水平降低,HO-1和HMGB-1过表达。此外,hSCI加速生精细胞凋亡以及垂体和睾丸细胞的超微结构损伤。给予HS后,所有这些参数均有显著改善,hSCI睾丸的特征与正常对照睾丸相似。综上所述,给予HS可通过抗氧化、抗炎和抗凋亡作用促进睾丸生物学功能的恢复。更重要的是,HS可抑制hSCI诱导的促性腺细胞超微结构变化,改善下丘脑-垂体-睾丸轴的异常调节,从而促进睾丸损伤的恢复。给予HS还可抑制hSCI诱导的睾丸生精细胞、支持细胞和间质细胞的超微结构变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2197/5522069/5f5d07861289/oncotarget-08-42314-g001.jpg

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