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剪切应力作用下人类内皮细胞(HEC)中的应力纤维(SF)

Stress fibres (SF) in human endothelial cells (HEC) under shear stress.

作者信息

Franke R P, Gräfe M, Dauer U, Schnittler H, Mittermayer C

出版信息

Klin Wochenschr. 1986 Oct 1;64(19):989-92.

PMID:3784452
Abstract

Human umbilical veinous endothelial cells are cultured on artificial substrates precoated with extracellular matrix from bovine corneal endothelial cells. These cultural conditions help cells to keep an elevated maintenance level for otherwise unusual time intervals. Integrity of endothelial cell layers is of special interest for nondisturbed blood circulation. Therefore we look after mechanisms of cell--cell and cell--substrate--adherence. Here we focus on stress fibres, microfilaments, which seem to play an important part in cellular adherence phenomena. Since endothelial cells in vivo are constantly shear stressed by the blood stream we investigated cell--substrate interactions in vitro under dynamical conditions with the help of a modified cone--plate rheometer originally designed for hemorheology. It can be demonstrated in these shearing experiments that toxical substances influence the organization of stress fibres.

摘要

人脐静脉内皮细胞在预先涂有牛角膜内皮细胞细胞外基质的人工基质上培养。这些培养条件有助于细胞在异常长的时间间隔内保持较高的维持水平。内皮细胞层的完整性对于无干扰的血液循环尤为重要。因此,我们关注细胞间和细胞与基质粘附的机制。在这里,我们聚焦于应力纤维,即微丝,它们似乎在细胞粘附现象中起重要作用。由于体内的内皮细胞不断受到血流的剪切应力作用,我们借助最初设计用于血液流变学研究的改良锥板流变仪,在动态条件下体外研究细胞与基质的相互作用。在这些剪切实验中可以证明,有毒物质会影响应力纤维的组织。

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