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血浆成分可保护红细胞免受机械损伤和低渗性引起的实验性溶血。

Plasma components protect erythrocytes against experimental haemolysis caused by mechanical trauma and by hypotonicity.

作者信息

Butler T, Bradley C A, Owensby J E

机构信息

Department of Internal Medicine, Texas Tech University Health Sciences Center, Lubbock 79430.

出版信息

Int J Exp Pathol. 1992 Feb;73(1):27-33.

Abstract

To examine the ability of plasma to prevent haemolysis caused by mechanical trauma and by hypotonicity, in-vitro experiments were carried out. Human red blood cells (RBC) were agitated with glass beads at 37 degrees C for 18 h in isotonic tris-buffered saline (TBS) or with additions of test substances to TBS. RBC were incubated for 18 h at 37 degrees C in a stationary water-bath to test effects of hypotonic solutions. Release of haemoglobin was quantitated by measuring optical density of supernates at 412 nm in a spectrophotometer. Agitation of RBC with glass beads in TBS resulted in release of about 30% of haemoglobin, and this haemolysis was inhibited by autologous plasma. Components of plasma that contributed to protection against mechanical haemolysis were albumin, a supernatant of plasma after heating to 100 degrees C that was albumin-free, and a heat-stable extract of fresh frozen plasma (FFP), whereas little or no protection was provided by gamma-globulin, haptoglobin, ceruloplasmin or alpha-2-macroglobulin. Relative viscosity of solutions containing plasma or dextran correlated poorly with protection against mechanical haemolysis. Hypotonic solutions of plasma and addition of the extract of FFP to TBS caused reductions in rates of haemolysis when compared to corresponding osmolalities of solutions of TBS. These results, which showed protective effects of plasma and plasma components against mechanical and hypotonic haemolysis, suggest that a deficiency of protective factors in plasma of patients could contribute to the development of haemolytic anaemia.

摘要

为研究血浆预防机械性创伤和低渗性所致溶血的能力,进行了体外实验。将人红细胞(RBC)在37℃下于等渗三羟甲基氨基甲烷缓冲盐水(TBS)中与玻璃珠搅拌18小时,或在TBS中添加测试物质。将RBC在37℃的恒温水浴中孵育18小时,以测试低渗溶液的作用。通过在分光光度计中测量上清液在412nm处的光密度来定量血红蛋白的释放。在TBS中用玻璃珠搅拌RBC导致约30%的血红蛋白释放,而这种溶血被自体血浆抑制。对机械性溶血具有保护作用的血浆成分是白蛋白、加热至100℃后不含白蛋白的血浆上清液以及新鲜冷冻血浆(FFP)的热稳定提取物,而γ-球蛋白、触珠蛋白、铜蓝蛋白或α-2-巨球蛋白几乎没有提供保护作用。含有血浆或右旋糖酐的溶液的相对粘度与对机械性溶血的保护作用相关性较差。与TBS溶液相应的渗透压相比,血浆的低渗溶液以及向TBS中添加FFP提取物可导致溶血速率降低。这些结果表明血浆和血浆成分对机械性和低渗性溶血具有保护作用,提示患者血浆中保护因子的缺乏可能导致溶血性贫血的发生。

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