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红细胞黏附。II. 与烃类油和玻璃相互作用的干涉测量研究

Red blood cell adhesion. II. Interferometric examination of the interaction with hydrocarbon oil and glass.

作者信息

Gingell D, Todd I

出版信息

J Cell Sci. 1980 Feb;41:135-49. doi: 10.1242/jcs.41.1.135.

DOI:10.1242/jcs.41.1.135
PMID:7364878
Abstract

Using both living and glutaraldehyde-fixed red cells, we have examined adhesion to both oil/saline and glass/saline interfaces by interference reflection microscopy. At low ionic strength, 0.4 mM NaCl, fixed cells adherent to the oil/saline interface show first order whitish yellow zones of closest approach which indicate a separation of similar to or approximately 100 nm. Quantitative interferometry in monochromatic light supports this conclusion. As the salt concentration is increased the separation decreases and the final image shows zero-order black which probably indicates molecular contact with the interface. Similar but less reproducible results were obtained with fixed and unfixed cells on glass. Thes observations show that physical interactions alone can be responsible for adhesion in dilute and concentrated salt solutions. It is not, however, believed that the results necessarily imply the existence of adhesion with a gap in physiological concentrations of salt.

摘要

我们使用活红细胞和经戊二醛固定的红细胞,通过干涉反射显微镜检查了红细胞在油/盐水界面和玻璃/盐水界面上的黏附情况。在低离子强度(0.4 mM NaCl)下,附着在油/盐水界面的固定细胞显示出一级近似白色的黄色区域,这表明细胞与界面的距离接近或约为100 nm。单色光下的定量干涉测量法支持这一结论。随着盐浓度的增加,细胞与界面的距离减小,最终图像显示零级黑色,这可能表明细胞与界面发生了分子接触。在玻璃上对固定和未固定的细胞进行实验,得到了类似但可重复性稍差的结果。这些观察结果表明,在稀盐溶液和浓盐溶液中,仅物理相互作用就可能导致细胞黏附。然而,我们并不认为这些结果必然意味着在生理盐浓度下存在带有间隙的黏附现象。

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Red blood cell adhesion. II. Interferometric examination of the interaction with hydrocarbon oil and glass.红细胞黏附。II. 与烃类油和玻璃相互作用的干涉测量研究
J Cell Sci. 1980 Feb;41:135-49. doi: 10.1242/jcs.41.1.135.
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[Demonstration of reticulocytes and three-dimensional presentation of blood cells by means of reflexion contrast (author's transl)].
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Red blood cells experience electrostatic repulsion but make molecular adhesions with glass.红细胞会经历静电排斥,但会与玻璃形成分子黏附。
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