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在冬眠的达乌尔黄鼠中,在两次打盹之间的觉醒期间,骨骼肌的收缩性能和线粒体呼吸复合物活性增强。

Weakened Contractile Performance and Mitochondrial Respiratory Complex Activity in Skeletal Muscle Improve during Interbout Arousal in Hibernating Daurian Ground Squirrel, .

机构信息

Shaanxi Key Laboratory for Animal Conservation, College of Life Sciences, Northwest University, Xi'an 710069, China.

Key Laboratory of Resource Biology and Biotechnology in Western China, College of Life Sciences, Northwest University, Xi'an 710069, China.

出版信息

Int J Mol Sci. 2023 Oct 30;24(21):15785. doi: 10.3390/ijms242115785.

Abstract

Mammalian hibernation is composed of multiple episodes of torpor bout, separated by phases of interbout arousal. During torpor, the skeletal muscles of mammals are undoubtedly inactive, but it has been proven to mitigate disuse atrophy. While interbout arousal has been implicated in the prevention of muscle atrophy, the underlying mechanisms sustaining muscle contraction remain to be explored. In the present study, Daurian ground squirrels () were divided into four groups: pre-hibernation (PRE), torpor (TOR), interbout arousal (IBA), and post-hibernation (POST). The contractile performance of slow-twitch soleus muscle (SOL) and fast-twitch extensor digitorum longus muscle (EDL) was detected both in situ and in vitro. Concurrently, mitochondrial respiratory chain complex activity in these muscles was quantified. Our findings revealed that in situ contractile properties of both muscles, including force, power output, time duration, and force development/relaxation rates of twitch contraction, and force and power output of tetanic contraction declined in the TOR group compared to the PRE group, but improved in the IBA and POST groups. Fatigue resistance of muscles, determined by the power output of repetitive tetanic contractions in situ, decreased in the TOR group but recovered in the IBA and POST groups. In vitro studies demonstrated that tetanic contraction power output in isolated muscles increased with muscle temperature in both TOR and IBA groups. However, at the same temperature, power output was consistently lower in the TOR group compared to the IBA group. Moreover, the activity of the mitochondrial respiratory chain complex, especially Complexes I and II, decreased in the TOR group but showed recovery in the IBA and POST groups. These findings suggest that both the contractile performance and fatigue resistance of mammalian skeletal muscle are compromised during torpor but can be improved during interbout arousal and post-hibernation. The rebound in body temperature and rise in mitochondrial respiratory chain complex activity in skeletal muscle are involved in enhancing contractile performance and fatigue resistance. This study suggests that interbout arousal functions as a vital temporal interval during which skeletal muscles can transition from the inactivity induced by torpor to a state of restored contractile functionality. Thus, interbout arousal serves as a behavioral safeguard against disuse-induced damage to skeletal muscles during hibernation.

摘要

哺乳动物的冬眠由多个蛰伏期组成,每个蛰伏期之间有觉醒期。在蛰伏期间,哺乳动物的骨骼肌无疑是不活动的,但它已被证明可以减轻废用性萎缩。虽然觉醒期被认为可以预防肌肉萎缩,但维持肌肉收缩的潜在机制仍有待探索。在本研究中,将东北松鼠()分为四个组:冬眠前(PRE)、蛰伏(TOR)、觉醒期(IBA)和冬眠后(POST)。在体和离体检测了慢肌比目鱼肌(SOL)和快肌趾长伸肌(EDL)的收缩性能。同时,对这些肌肉中线粒体呼吸链复合物的活性进行了定量分析。我们的研究结果表明,与 PRE 组相比,在 TOR 组中,SOL 和 EDL 肌肉的在体收缩性能,包括力、功率输出、持续时间以及单次收缩的力发展/松弛速率,以及强直收缩的力和功率输出均降低,但在 IBA 和 POST 组中得到改善。通过在体重复强直收缩的功率输出来衡量肌肉的抗疲劳能力,在 TOR 组中下降,但在 IBA 和 POST 组中恢复。离体研究表明,在 TOR 和 IBA 组中,分离肌肉的强直收缩功率输出随肌肉温度的升高而增加。然而,在相同的温度下,TOR 组的功率输出始终低于 IBA 组。此外,线粒体呼吸链复合物的活性,特别是复合物 I 和 II,在 TOR 组中降低,但在 IBA 和 POST 组中恢复。这些发现表明,哺乳动物骨骼肌的收缩性能和抗疲劳能力在蛰伏期间受到损害,但在觉醒期和冬眠后可以得到改善。体温的反弹和骨骼肌中线粒体呼吸链复合物活性的升高,参与了增强收缩性能和抗疲劳能力。本研究表明,觉醒期作为一个重要的时间间隔,在此期间,骨骼肌可以从蛰伏引起的不活动状态过渡到恢复收缩功能的状态。因此,觉醒期作为一种行为保护机制,防止在冬眠期间骨骼肌因废用而受损。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a7b/10650195/64aed65caf4b/ijms-24-15785-g001.jpg

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