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首页> 外文期刊>Microscopy and microanalysis: The official journal of Microscopy Society of America, Microbeam Analysis Society, Microscopical Society of Canada >Tissue Micro-channels Formed by Collagen Fibers and their Internal Components: Cellular Evidence of Proposed Meridian Conduits in Vertebrate Skin
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Tissue Micro-channels Formed by Collagen Fibers and their Internal Components: Cellular Evidence of Proposed Meridian Conduits in Vertebrate Skin

机译:由胶原纤维和它们的内部部件形成的组织微通道:脊椎动物皮肤中提出的经络导管的蜂窝证据

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摘要

In order to clarify fine structures of the hypothetical meridian conduits of Chinese traditional medicine (CTM) in the skin, the present study used light and transmission electron microscopy to examine fasciae in different vertebrate species. Collagen fiber bundles and layers were arranged in a crisscross pattern, which developed into a special tissue micro-channel (TMC) network, in a manner that was analogs to the proposed skin meridian conduits. It was further revealed that tissue fluid in lateral TMC branches drained into wide longitudinal channels, which were distinctly different from lymphatic capillary. Mast cells, macrophages, and extracellular vesicles such as ectosomes and exosomes were distributed around telocytes (TCs) and their long processes (Telopodes, Tps) within the TMC. Cell junctions between TCs developed, which could enable the communication between contiguous but distant Tps. On the other hand, winding free Tps without cell junctions were also uncovered inside the TMC. Tissue fluid, cell junctions of TCs, mast cells, macrophages, and extracellular vesicles within the TMC corresponded to the circulating ("Qi-Xue", i.e., information, message, and energy) of meridian conduits at the cytological level. These results could provide morphological evidence for the hypothesis that "meridians are the conduit for Qi-Xue circulation" in CTM.
机译:为了澄清皮肤中的中药(CTM)假设的经络导管的精细结构,目前的研究使用了光和透射电子显微镜来检查不同脊椎动物物种中的筋膜。胶原纤维束和层以粗糙的图案排列,其开发成特殊的组织微通道(TMC)网络,其方式与所提出的皮肤经络导管类似。进一步揭示了横向TMC分支中的组织液化成宽纵向通道,其与淋巴细胞明显不同。肥大细胞,巨噬细胞和细胞外囊泡,例如异位体和外泌体,分布在TMC内的远程细胞(TCS)和它们的长途过程(焦点,TPS)周围。 TCS之间的单元连接开发,可以实现连续但远处TP之间的通信。另一方面,在TMC内也发现没有细胞连接点的无绕组的TPS。 TCS中TCS,肥大细胞,巨噬细胞和细胞内囊泡的组织液,TMC内的细胞内囊泡对应于细胞学水平的经络导管的循环(“Qi-Xue”,即信息,消息和能量)。这些结果可以为CTM中的“经络是齐 - 薛循环的导管”的假设提供形态证据。

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