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Mechanical response of a living human epidermal keratinocyte sheet as measured in a composite diaphragm inflation experiment

机译:在复合隔膜充气实验中测得的人类活表皮角质形成细胞片的机械反应

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Sheets of normal human epidermal keratinocytes (NHEKs) were reconstituted in vitro on tensed but highly compliant, freestanding polydimethylsiloxane (PDMS) membranes, 5.0 mm in diameter and 10 μm thick. NHEK-PDMS composite diaphragm (CD) specimens were then subjected to cyclical axisymmetric inflation tests to investigate epithelial sheet rheology under conditions of physiologically severe deformations (~50% nominal polar biaxial strains). Because the compliance of the specially formulated PDMS membrane was greater than that of the attached cell layer, the finite load-deformation behavior (mechanical response) of the living NHEK sheet was inferred from differences between the mechanical behavior of the CD specimen and the response of the underlying PDMS membrane measured prior to cell culture. In these composite diaphragm inflation (CDI) experiments, interconnected NHEKs exhibited Theological behaviors that were suggestive of a viscoelastic-plastic stress response. Remarkably, specimens returned to quiescent culture following a sequence of inflation tests recovered at least 80% of their original ability to store elastic strain energy, evidence of biological adaptation and recovery or restitu-tio ad integrum. Unlike methodologies that assay the morphological or biochemical response of cultured cells to an applied mechanostimulus, CDI experiments can be used to probe the load-bearing functions of desmosomes and adherens junctions within a living epithelial sheet, as well as to assess the Theological behaviors of the intermediate filament and microfilament networks that these cell-cell junctions serve to interconnect.
机译:在张紧但高度顺应的独立式聚二甲基硅氧烷(PDMS)膜上体外重建正常的人表皮角质形成细胞(NHEK)片,直径为5.0 mm,厚度为10μm。然后,对NHEK-PDMS复合膜片(CD)标本进行周期性轴对称充气测试,以研究在生理上严重变形(〜50%名义双轴双轴应变)下的上皮片流变性。由于特殊配制的PDMS膜的顺应性大于附着的细胞层的顺应性,因此可以从CD样品的机械行为与反应的响应之间的差异推断出NHEK活板的有限载荷-变形行为(机械响应)。在细胞培养之前测量下面的PDMS膜。在这些复合膜片膨胀(CDI)实验中,相互连接的NHEK表现出的神学行为暗示了粘弹塑性应力响应。值得注意的是,经过一系列充气测试后,标本恢复到静态培养,至少恢复了其原始存储弹性应变能的能力的80%,这是生物学适应和恢复或恢复原状的证据。与分析培养的细胞对所施加的机械刺激的形态或生化反应的方法不同,CDI实验可用于探查活体上皮片中的桥粒和粘附连接的承重功能,并评估其的神学行为。这些细胞间连接的中间细丝和微丝网络相互连接。

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