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皮肤中的组织尺度张力稳态调节结构和生理功能。

Tissue-scale tensional homeostasis in skin regulates structure and physiological function.

作者信息

Kimura Shun, Tsuchiya Ayako, Ogawa Miho, Ono Miki, Suda Nao, Sekimoto Kaori, Takeo Makoto, Tsuji Takashi

机构信息

Laboratory for Organ Regeneration, RIKEN Center for Developmental Biology (CDB) and RIKEN Center for Biosystems Dynamics Research (BDR), Hyogo, 650-0047, Japan.

ROHTO Pharmaceutical Co., Ltd., Osaka, 544-8666, Japan.

出版信息

Commun Biol. 2020 Oct 30;3(1):637. doi: 10.1038/s42003-020-01365-7.

Abstract

Tensional homeostasis is crucial for organ and tissue development, including the establishment of morphological and functional properties. Skin plays essential roles in waterproofing, cushioning and protecting deeper tissues by forming internal tension-distribution patterns, which involves aligning various cells, appendages and extracellular matrices (ECMs). The balance of traction force is thought to contribute to the formation of strong and pliable physical structures that maintain their integrity and flexibility. Here, by using a human skin equivalent (HSE), the horizontal tension-force balance of the dermal layer was found to clearly improve HSE characteristics, such as the physical relationship between cells and the ECM. The tension also promoted skin homeostasis through the activation of mechano-sensitive molecules such as ROCK and MRTF-A, and these results compared favourably to what was observed in tension-released models. Tension-induced HSE will contribute to analyze skin physiological functions regulated by tensional homeostasis as an alternative animal model.

摘要

张力稳态对于器官和组织发育至关重要,包括形态和功能特性的建立。皮肤通过形成内部张力分布模式在防水、缓冲和保护深层组织方面发挥着重要作用,这涉及各种细胞、附属器和细胞外基质(ECM)的排列。牵引力的平衡被认为有助于形成强壮且柔韧的物理结构,以维持其完整性和柔韧性。在此,通过使用人皮肤等效物(HSE),发现真皮层的水平张力平衡可明显改善HSE特性,如细胞与ECM之间的物理关系。张力还通过激活ROCK和MRTF - A等机械敏感分子促进皮肤稳态,这些结果与在张力释放模型中观察到的结果相比更具优势。张力诱导的HSE将作为一种替代动物模型,有助于分析由张力稳态调节的皮肤生理功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f11/7603398/68441f694d8f/42003_2020_1365_Fig1_HTML.jpg

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