Suppr超能文献

膈肌纤维活动减少时的线粒体适应。

Mitochondrial adaptations to inactivity in diaphragm muscle fibers.

机构信息

Department of Physiology and Biomedical Engineering, Mayo Clinic, Rochester, Minnesota.

出版信息

J Appl Physiol (1985). 2022 Jul 1;133(1):191-204. doi: 10.1152/japplphysiol.00090.2022. Epub 2022 Jun 9.

Abstract

Type I and IIa diaphragm muscle (DIAm) fibers comprise slow and fast fatigue-resistant motor units that are recruited to accomplish breathing and thus have a high duty cycle. In contrast, type IIx/IIb fibers comprise more fatigable fast motor units that are infrequently recruited for airway protective and straining behaviors. We hypothesize that mitochondrial structure and function in type I and IIa DIAm fibers adapt in response to inactivity imposed by spinal cord hemisection at C (CSH). At 14 days after CSH, the effect of inactivity on mitochondrial structure and function was assessed in DIAm fibers. Mitochondria in DIAm fibers were labeled using MitoTracker Green (Thermo Fisher Scientific), imaged in three-dimensions (3-D) by fluorescence confocal microscopy, and images were analyzed for mitochondrial volume density (MVD) and complexity. DIAm homogenate from either side was assessed for PGC1α, Parkin, MFN2, and DRP1 using Western blot. In alternate serial sections of the same DIAm fibers, the maximum velocity of the succinate dehydrogenase reaction (SDH) was determined using a quantitative histochemical technique. In all groups and both sides of the DIAm, type I and IIa DIAm fibers exhibited higher MVD, with more filamentous mitochondria and had higher SDH normalized to both fiber volume and mitochondrial volume compared with type IIx/IIb Diam fibers. In the inactive right side of the DIAm, mitochondria became fragmented and MVD decreased in all fiber types compared with the intact side and sham controls, consistent with the observed reduction in PGC1α and increased Parkin and DRP1 expression. In the inactive side of the DIAm, the reduction in SDH was found only for type I and IIa fibers. These results show that there are intrinsic fiber-type-dependent differences in the structure and function of mitochondria in DIAm fibers. Following CSH-induced inactivity, mitochondrial structure (MVD and fragmentation) and function (SDH) were altered, indicating that inactivity influences all DIAm fiber types, but inactivity disproportionately affected SDH in the more intrinsically active type I and IIa fibers. Two weeks of diaphragm (DIAm) inactivity imposed by C2SH caused reduced mitochondrial volume density, mitochondrial fragmentation, and a concomitant reduction of SDH in type I and IIa DIAm fibers on the lesioned side. Type I and IIa DIAm fibers were far more sensitive to inactivation than type IIx/IIb fibers, which exhibited little pathology. Our results indicate that mitochondria in DIAm fibers are plastic in response to varying levels of activity.

摘要

I 型和 IIa 型膈肌肌纤维(DIAm)组成了慢疲劳和抗疲劳的运动单位,这些运动单位被募集来完成呼吸,因此具有较高的工作周期。相比之下,IIx/IIb 型纤维组成了更多易疲劳的快运动单位,这些运动单位很少被募集用于气道保护和紧张行为。我们假设,在 C 脊髓半切(CSH)导致的活动受限的情况下,I 型和 IIa 型 DIAm 纤维中的线粒体结构和功能会发生适应性改变。在 CSH 后 14 天,评估了活动受限对 DIAm 纤维中线粒体结构和功能的影响。使用 MitoTracker Green(Thermo Fisher Scientific)标记 DIAm 纤维中的线粒体,通过荧光共聚焦显微镜进行三维(3-D)成像,并对线粒体体积密度(MVD)和复杂度进行图像分析。使用 Western blot 分析 DIAm 匀浆中 PGC1α、Parkin、MFN2 和 DRP1 的表达水平。在同一 DIAm 纤维的连续切片中,使用定量组织化学技术测定琥珀酸脱氢酶反应(SDH)的最大速度。在所有组和 DIAm 的两侧,I 型和 IIa 型 DIAm 纤维表现出更高的 MVD,具有更多丝状线粒体,并且与 IIx/IIb 型 DIAm 纤维相比,SDH 归一化到纤维体积和线粒体体积的比值更高。在 DIAm 的非活动右侧,与完整侧和假手术对照组相比,所有纤维类型的线粒体都变得碎片化,MVD 降低,这与观察到的 PGC1α 减少和 Parkin 和 DRP1 表达增加一致。在 DIAm 的非活动侧,仅发现 I 型和 IIa 型纤维的 SDH 减少。这些结果表明,DIAm 纤维中线粒体的结构和功能存在固有纤维类型依赖性差异。在 CSH 诱导的活动受限后,线粒体结构(MVD 和碎片化)和功能(SDH)发生改变,这表明活动受限影响所有 DIAm 纤维类型,但在更内在活跃的 I 型和 IIa 型纤维中,SDH 的活动受限更为明显。C2SH 引起的两周膈肌(DIAm)失用导致损伤侧 I 型和 IIa 型 DIAm 纤维中线粒体体积密度降低、线粒体碎片化以及 SDH 相应减少。I 型和 IIa 型 DIAm 纤维比 IIx/IIb 纤维对失用更敏感,后者几乎没有病理学变化。我们的结果表明,DIAm 纤维中的线粒体对不同水平的活动具有可塑性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d60/9291409/3a8e88381b00/jappl-00090-2022r01.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验