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Kinetics of hypotonic lysis of human erythrocytes

机译:人红细胞低渗裂解的动力学

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The curve of osmotic stability of erythrocytes is based on the amount of lysis as a function of salt concentration under fixed time incubation and represents an equilibrium situation after a sufficiently long time, although lysis is a rapid process. The curve is valid for the analysis of modulating agents that have influence on this equilibrium, but not for those that have influence on the lysis kinetics. This work has developed experimental conditions to study the hemolysis kinetics based on the interruption of lysis by hypertonicity at predetermined intervals of time. These conditions were used to evaluate the kinetics of hemolysis of 17 volunteers. The lysis curve as a function of time was statistically fitted to a hyperbola, using the analytical routine of the integrated kinetic model of Michaelisa€“Menten to determine the time required to promote lysis of half of the population of erythrocytes (t1/2) and the maximum absorbance (Amax) reached in the test. The results showed good variance among volunteers. The constant t1/2 was negatively correlated with total and LDL-cholesterol, and Amax, as it was expected, showed significant associations with hematological variables that are under the influence of hemoglobin levels. Stratification of the study population into two age groups (18a€“30 and 40a€“90 years old) showed that the t1/2 values were significantly lower in the older population. Although the study population has been small, the study showed that this kinetic approach of the erythrocyte lysis is very promising for analyzing the myriad of variables which have influence on the cell membrane.
机译:尽管裂解是一个快速的过程,但在固定时间的温育下,红细胞的渗透稳定性曲线是基于裂解量与盐浓度的函数关系,并且在足够长的时间后仍表现出平衡状态。该曲线对于分析影响该平衡的调节剂有效,但不适用于影响裂解动力学的调节剂。这项工作已经开发了实验条件,以在预定的时间间隔内因高渗引起的裂解中断来研究溶血动力学。这些条件用于评估17名志愿者的溶血动力学。使用米利莎(Michaelisa)和门腾(Menten)集成动力学模型的分析程序,将裂解曲线作为时间的函数进行统计拟合,以确定促进半数红细胞(t1 / 2)和测试中达到的最大吸光度(Amax)。结果显示志愿者之间的差异很大。恒定的t1 / 2与总胆固醇和LDL胆固醇呈负相关,并且正如预期的那样,Amax与受血红蛋白水平影响的血液学变量显着相关。将研究人群分为两个年龄组(18岁至30岁和40岁至90岁)可以看出,t1 / 2值在老年人口中明显较低。尽管研究人群很小,但研究表明,这种红细胞裂解的动力学方法对于分析影响细胞膜的众多变量非常有前途。

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