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由肾细胞系马-达二氏犬肾细胞形成的穹顶的生物物理学

Biophysics of domes formed by the renal cell line Madin-Darby canine kidney.

作者信息

Tanner C, Frambach D A, Misfeldt D S

出版信息

Fed Proc. 1984 May 15;43(8):2217-20.

PMID:6714432
Abstract

When cultured on an impermeable substratum, the renal epithelial cell line Madin-Darby canine kidney (MDCK) forms domes. From a knowledge of dome shape, radius, and hydrostatic pressure difference delta P, from within to outside the domes, biophysical properties of the epithelium can be determined. By microscopy, circular based domes were found to be section of spheres with a constant height-to-radius ratio h/r of 0.684. By using the Laplace equation derived for this geometry and measurements of delta P and r, the values of the tension of cell dish adhesion Ta and dome wall tension Tw were found to be constants of 6.60 and 7.08 torr, respectively. By combining constants, Ta, and h/r, and because domes are section of spheres, delta P and dome volume were shown to be known functions of radius alone. The modulus of elasticity of the epithelium was calculated to be 4.82 X 10(3) dyn/cm2.

摘要

当在不可渗透的基质上培养时,肾上皮细胞系麦氏犬肾(MDCK)会形成圆顶。根据圆顶的形状、半径以及圆顶内外的静水压差ΔP,就可以确定上皮细胞的生物物理特性。通过显微镜观察发现,圆形基底的圆顶是高度与半径之比h/r恒定为0.684的球体的一部分。利用针对该几何形状推导的拉普拉斯方程以及ΔP和r的测量值,发现细胞与培养皿的黏附张力Ta和圆顶壁张力Tw分别为常数6.60和7.08托。通过结合常数Ta和h/r,并且由于圆顶是球体的一部分,结果表明ΔP和圆顶体积仅是半径的已知函数。上皮细胞的弹性模量经计算为4.82×10³达因/平方厘米。

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