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Measurement of Cell Detaching force on Substrates with Different Rigidity by Atomic Force Microscopy

机译:用原子力显微镜测量具有不同刚度的基材上的细胞分离力

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Cell adhesion plays an important role in cell morphology, motility, and differentiation, and cancer metastasis. The rigidity of the substrates is one of the factors that can affect cell behaviors. How the rigidity of substrates influence the initial attaching strength of cell is not well investigated yet. Cell probe attaching cell on the AFM cantilever tip is a new approach to study cell mechanics. The purpose of this study is to investigate the relation between the rigidity of substrate and cell detaching force by cell probe. Fibroblast cell was used to quantify cell detaching force. All the surfaces of substrates were coated with type I collagen. The contact times were set at 30, 60, 90, and 300 seconds with contact compression at 500 pN. The substrates used were 1037 Pa, and 10930 Pa poly acrylamide (PAA) and glass. Under the same contact time, the detaching force rose gradually with increasing substrate rigidity. They were 482.11±194.34, 1820.11±949.29, and 3373.45 ±1867.02 pN respectively for 1037 Pa, and 10930 Pa PAA and glass for 300 seconds. Our results showed cell adhesion could be influenced by substrate rigidity. This cell probe technique can be further used for parameter studies on cell substrate interaction in the future.
机译:细胞粘附在细胞形态,运动和分化中起着重要作用,以及癌症转移。基材的刚性是可能影响细胞行为的因素之一。底物的刚度如何影响细胞的初始附着强度尚未得到很好的研究。 AFM悬臂尖上的细胞探针附着电池是一种研究细胞力学的新方法。本研究的目的是探讨细胞探针基材刚性与细胞分离力之间的关系。成纤维细胞用于量化细胞脱离力。底物的所有表面涂有I型胶原蛋白。接触时间设定为30,60,90和300秒,在500 pn处具有接触压缩。使用的基材为1037Pa,和10930Pa聚丙烯酰胺(PAA)和玻璃。在相同的接触时间下,随着基板刚性的增加,拆卸力逐渐上升。分别为482.11±194.34,1820.11±949.29和3373.45±1867.02 PN,1037 PA,10930 PA PAA和玻璃300秒。我们的结果表明细胞粘附可能受基质刚性的影响。该细胞探针技术可以进一步用于对未来细胞基板相互作用的参数研究。

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