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首页> 外文期刊>Annals of anatomy =: Anatomischer Anzeiger : official organ of the Anatomische Gesellschaft >The ultrastructural anatomy of the nuclear envelope in the masseter muscle indicates its role in the metabolism of the intracellular Ca++
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The ultrastructural anatomy of the nuclear envelope in the masseter muscle indicates its role in the metabolism of the intracellular Ca++

机译:肌肉肌肉中核封的超微结构解剖性表明其在细胞内Ca ++的代谢中的作用

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Specific ultrastructural anatomy of masticatory muscles is commonly referred to a general pattern assigned to striated muscles. Junctional feet consisting of calcium channels of the sarcoplasmic reticulum (i.e. the ryanodine receptors, RyRs) physically connected to the calcium channels of the t-tubules build triads within striated muscles. Functional RyRs were demonstrated in the nuclear envelopes of pancreas and of a skeletal muscle derived cell line, but not in muscle in situ. It was hypothesized that ryanodine receptors (RyRs) could also exist in the nuclear envelope in the masseter muscle, thus aiming at studying this by transmission electron microscopy. There were identified paired and consistent subsarcolemmal clusters of mitochondria, appearing as outpockets of the muscle fibers, usually flanking an endomysial microvessel. It was observed on grazing longitudinal cuts that the I-band-limited mitochondria were not strictly located in a single intermyofibrillar space but continued transversally over the I-band to the next intermyofibrillar space. It appeared that the I-band-limited transverse mitochondria participate with the column-forming mitochondria in building a rather incomplete mitochondrial reticulum of the masseter muscle. Subsarcolemmal nuclei presented nuclear envelope-associated RyRs. Moreover, t-tubules were contacting the nuclear envelope and they were seemingly filled from the perinuclear space. This could suggest that nucleoplasmic calcium could contribute to balance the cytosolic concentration via pre-built anatomical routes: (i) indirectly, via the RyRs of the nuclear envelope and (ii) directly via the communication of t-tubules and sarcoplasmic reticulum through the perinuclear space. (C) 2019 Elsevier GmbH. All rights reserved.
机译:咀嚼肌肉的具体超微结构解剖通常称为分配给条纹肌肉的一般模式。由肌肉网的钙通道组成的连接脚(即ryanodine受体,Ryrs)物理地连接到T-Cubeles的钙通道在横纹肌内构建三合一。在胰腺的核信封和骨骼肌衍生的细胞系中证明了功能性Ryrs,但不在原地的肌肉中。假设柠檬籽受体(Ryrs)也可以在咬肌肌的核封中存在,因此旨在通过透射电子显微镜研究这一点。确定的线粒体的配对和一致的子殖民群簇,出现为肌肉纤维的前部,通常是侧翼的椎间膜微血管。在放牧纵向切口中观察到I带限量线粒体并不严格地位于单一的外部纤维条件中,但在横跨I波纹上横向上继续到下一个外部纤维节空间。似乎I波段有限的横向线粒体参与了柱形成线粒体,在构建肌肉肌肉的相当不完整的线粒体网上。子路上核核心核心核心相关的RYR。此外,T型小管接触核封,似乎从蠕变空间中填充。这可能表明,核状钙可以通过预先构建的解剖路线平衡细胞溶质浓度:(i)间接地通过核封的Ryrs和(ii)通过通过Perinuclect的T-cubles和Sarcoplasmic网的通信直接空间。 (c)2019年Elsevier GmbH。版权所有。

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