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运动训练后大鼠睾丸组织中 ROS 和代谢组学介导的自噬改变;运动强度和结果的证据。

ROS and metabolomics-mediated autophagy in rat's testicular tissue alter after exercise training; Evidence for exercise intensity and outcomes.

机构信息

Department of Exercise Physiology and Corrective Exercises, Faculty of Sport Sciences, Urmia University, Urmia, Iran.

Department of basic Sciences, Division of Histology & Embryology, Faculty of Veterinary Medicine, P.O.BOX: 1177, Urmia University, Urmia, Iran.

出版信息

Life Sci. 2021 Jul 15;277:119585. doi: 10.1016/j.lfs.2021.119585. Epub 2021 May 3.

Abstract

AIMS

Oxidative damage and altered metabolic reactions are suspected to initiate the autophagy. The exercise training significantly impacts testicular antioxidant and metabolic potentials. However, the underlying mechanism(s) that the exercise-induced alterations can affect the autophagy markers remained unknown. This study explored the effect of exercise training on antioxidant and metabolic statuses of testicular tissue and uncovered the possible cross-link between these statuses and autophagy-inducers expression.

MAIN METHODS

Wistar rats were divided into sedentary control, low (LICT), moderate (MICT), and high (HICT) intensity continuous training groups. Following 8 weeks of training, the testicular total antioxidant capacity (TAC), total oxidant status (TOS), glutathione (GSH), and NADP/NADPH as oxidative biomarkers along with intracytoplasmic carbohydrate and lipid droplet patterns, lactate dehydrogenase (LDH) activity, and lactate as metabolic elements were assessed. Finally, the autophagy-inducers expression and sperm count were examined.

KEY FINDINGS

With no significant impact on the oxidative biomarkers and metabolic elements, the LICT and MICT groups exhibited statistically unremarkable (p < 0.05) impacts on spermatogenesis differentiation, spermiogenesis ratio, and sperm count while increased the autophagy-inducers expression. Reversely, the HICT group, simultaneous with suppressing the antioxidant biomarkers (TAC↓, GSH↓, TOS↑, NADP/NADPH↑), significantly (p < 0.05) reduced the testicular LDH activity and lactate level, changed the intracytoplasmic carbohydrate and lipid droplet's pattern, and amplified the classical autophagy-inducers p62, Beclin-1, autophagy-related gene (ATG)-7, and light chain 3 (LC3)-II/I expression.

SIGNIFICANCE

The autophagy-inducers overexpression has occurred after HICT induction, most probably to eliminate the oxidative damage cargoes, while increased to maintain the metabolic homeostasis in the LICT and MICT groups.

摘要

目的

氧化损伤和代谢反应的改变被怀疑是自噬的启动因素。运动训练显著影响睾丸的抗氧化和代谢潜力。然而,运动引起的改变如何影响自噬标志物的潜在机制尚不清楚。本研究探讨了运动训练对睾丸组织抗氧化和代谢状态的影响,并揭示了这些状态与自噬诱导剂表达之间可能存在的联系。

方法

将 Wistar 大鼠分为安静对照组、低强度连续训练组(LICT)、中等强度连续训练组(MICT)和高强度连续训练组(HICT)。经过 8 周的训练后,评估了睾丸组织中的总抗氧化能力(TAC)、总氧化状态(TOS)、谷胱甘肽(GSH)和 NADP/NADPH 等氧化生物标志物,以及细胞内碳水化合物和脂质滴的形态、乳酸脱氢酶(LDH)活性和乳酸等代谢成分。最后,检测了自噬诱导剂的表达和精子计数。

主要发现

在不影响氧化生物标志物和代谢成分的情况下,LICT 和 MICT 组对精子发生分化、精子形成比和精子计数的影响没有统计学意义(p < 0.05),而增加了自噬诱导剂的表达。相反,HICT 组同时抑制了抗氧化生物标志物(TAC↓、GSH↓、TOS↑、NADP/NADPH↑),显著(p < 0.05)降低了睾丸 LDH 活性和乳酸水平,改变了细胞内碳水化合物和脂质滴的形态,增加了经典的自噬诱导剂 p62、Beclin-1、自噬相关基因(ATG)-7 和微管相关蛋白轻链 3(LC3)-II/I 的表达。

意义

在 HICT 诱导后,自噬诱导剂的过度表达可能是为了清除氧化损伤的货物,而在 LICT 和 MICT 组中增加自噬诱导剂的表达是为了维持代谢平衡。

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