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普朗尼克F-68可减少内皮细胞黏附,并改善结合配体的镰状红细胞的流变学特性。

Pluronic F-68 reduces the endothelial adherence and improves the rheology of liganded sickle erythrocytes.

作者信息

Smith C M, Hebbel R P, Tukey D P, Clawson C C, White J G, Vercellotti G M

出版信息

Blood. 1987 Jun;69(6):1631-6.

PMID:3580571
Abstract

A perfluorochemical blood substitute emulsified with Pluronic F-68 has been shown to improve the filterability of deoxygenated sickle red cells. We questioned whether some of the effect was independent of oxygen loading and studied the influence of Fluosol DA (Green Cross, Osaka, Japan) and Pluronic on the rheology and adhesion of sickle red cells saturated with oxygen and carbon monoxide. A 5-vol/vol% concentration of Fluosol or equivalent concentration of Pluronic was equally effective at improving the filtration of washed sickle cells through 5-micron-diameter pores at wall shear stresses approximating 1,000 dyne/cm2. The same concentration of Pluronic reduced the extensional static rigidity of irreversibly sickled cells (ISC) by 25% and also abolished the adherence of gravity-sedimented sickle cells to endothelial monolayers in the presence of saline or plasma. The inhibition of adherence was not reversible by washing and was accomplished with equal ease by isolated treatment of sickle cells or endothelium. Pluronic had no effect on the rheology or adhesion of normal adult red cells. Neither Fluosol nor Pluronic changed sickle or normal cell shape, mean cell volume, mean cell density, or cell density distribution. A lubricating effect of Pluronic on cell surfaces could explain all of the rheological observations and offers another direction of inquiry in the search for therapy for sickle cell disease.

摘要

已证明用普朗尼克F - 68乳化的全氟化合物血液替代品可改善脱氧镰状红细胞的过滤性。我们质疑部分效果是否独立于氧负荷,并研究了氟索DA(日本大阪绿十字公司)和普朗尼克对饱和氧和一氧化碳的镰状红细胞的流变学及黏附性的影响。在壁面剪应力约为1000达因/平方厘米时,5体积/体积%浓度的氟索或等效浓度的普朗尼克在改善洗涤后的镰状细胞通过5微米直径孔隙的过滤方面同样有效。相同浓度的普朗尼克使不可逆镰状细胞(ISC)的拉伸静态刚性降低了25%,并且在存在盐水或血浆的情况下,还消除了重力沉降的镰状细胞与内皮单层的黏附。黏附抑制不能通过洗涤逆转,对镰状细胞或内皮进行单独处理都能同样轻松地实现。普朗尼克对正常成人红细胞的流变学或黏附性没有影响。氟索和普朗尼克都没有改变镰状或正常细胞的形状、平均细胞体积、平均细胞密度或细胞密度分布。普朗尼克对细胞表面的润滑作用可以解释所有流变学观察结果,并为镰状细胞病的治疗研究提供了另一个探究方向。

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