首页> 美国卫生研究院文献>American Journal of Physiology - Lung Cellular and Molecular Physiology >Bioengineering the Lung: Molecules Materials Matrix Morphology and Mechanics: Use of reflectance interference contrast microscopy to characterize the endothelial glycocalyx stiffness
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Bioengineering the Lung: Molecules Materials Matrix Morphology and Mechanics: Use of reflectance interference contrast microscopy to characterize the endothelial glycocalyx stiffness

机译:肺的生物工程:分子材料基质形态和力学:使用反射干涉对比显微镜表征内皮糖萼的硬度

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摘要

Reflectance interference contrast microscopy (RICM) was used to study the mechanics of the endothelial glycocalyx. This technique tracks the vertical position of a glass microsphere probe that applies very light fluctuating loads to the outermost layer of the bovine lung microvascular endothelial cell (BLMVEC) glycocalyx. Fluctuations in probe vertical position are used to estimate the effective stiffness of the underlying layer. Stiffness was measured before and after removal of specific glycocalyx components. The mean stiffness of BLMVEC glycocalyx was found to be ∼7.5 kTm2 (or ∼31 pNm). Enzymatic digestion of the glycocalyx with pronase or hyaluronan with hyaluronidase increased the mean effective stiffness of the glycocalyx; however, the increase of the mean stiffness on digestion of heparan sulfate with heparinase III was not significant. The results imply that hyaluronan chains act as a cushioning layer to distribute applied forces to the glycocalyx structure. Effective stiffness was also measured for the glycocalyx exposed to 0.1%, 1.0%, and 4.0% BSA; glycocalyx compliance increased at two extreme BSA concentrations. The RICM images indicated that glycocalyx thickness increases with BSA concentrations. Results demonstrate that RICM is sensitive to detect the subtle changes of glycocalyx compliance at the fluid-fiber interface.
机译:反射干涉对比显微镜(RICM)用于研究内皮糖萼的力学。该技术跟踪玻璃微球探针的垂直位置,该探针将非常轻的波动载荷施加到牛肺微血管内皮细胞(BLMVEC)糖萼的最外层。探针垂直位置的波动用于估算下伏层的有效刚度。在去除特定糖萼成分之前和之后测量刚度。发现BLMVEC糖萼的平均刚度为〜7.5kT / nm 2 (或〜31pN / nm)。用链霉蛋白酶对糖萼进行酶消化,或用透明质酸酶对透明质酸酶消化,可增加糖萼的平均有效刚度。但是,用肝素酶III消化硫酸乙酰肝素时,平均硬度的增加并不显着。结果暗示透明质酸链充当缓冲层以将施加的力分配到糖萼结构。还测量了暴露于0.1%,1.0%和4.0%BSA的糖萼的有效刚度;在两个极端BSA浓度下,糖萼依从性均增加。 RICM图像表明糖萼厚度随BSA浓度的增加而增加。结果表明,RICM能够敏感地检测到流体-纤维界面处糖萼顺应性的细微变化。

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