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通过电旋转测定诱导分化过程中Friend小鼠红白血病细胞膜的变化。

Changes in Friend murine erythroleukaemia cell membranes during induced differentiation determined by electrorotation.

作者信息

Wang X B, Huang Y, Gascoyne P R, Becker F F, Hölzel R, Pethig R

机构信息

University of Texas M.D. Anderson Cancer Center, Houston 77030.

出版信息

Biochim Biophys Acta. 1994 Aug 3;1193(2):330-44. doi: 10.1016/0005-2736(94)90170-8.

Abstract

We used electrorotation measurements to investigate alterations in the plasma membranes of DS19 murine erythroleukaemia cells that accompanied erythropoietic differentiation induced by hexamethylene bisacetamide (HMBA). Following 3 days of HMBA treatment, the mean cell membrane specific capacitance determined from electrorotation spectra of individual, viable cells at physiological tonicity (300 mosmol/kg) fell from 1.74 to 1.53 microF/cm2, in agreement with trends observed earlier by dielectrophoretic measurements on bulk cell populations. Scanning and transmission electron microscopy revealed that the relatively high values found for cell membrane capacitance (> 1 microF/cm2) reflected the large area of plasma membrane associated with complex surface morphology including numerous microvilli. Furthermore, it demonstrated that the fall in membrane capacitance during HMBA treatment correlated with a reduction in the density of these complex surface features. Differences in the mechanical characteristics of the cell membranes of untreated and treated cells were then examined by exposing cells to osmotic stress. The intricacy of membrane morphology intensified with increasing osmolality of the suspending medium and this was reflected in higher specific capacitance values. When the osmolality was increased from 210 to 450 mosmol/kg, the mean membrane capacitance of untreated DS19 cells changed from 1.58 to 2.05 microF/cm2 while that for HMBA-treated cells changed from 1.47 to 1.72 microF/cm2, a significantly smaller response. This demonstrated that cells exposed to 72 h of differentiation treatment had an enhanced mechanical resilience as compared with their untreated counterparts, evidencing the early stages of the development of the membrane skeleton which becomes fully developed in mature erythrocytes. Our findings demonstrate the value of electrorotation measurements as a method for the non-invasive characterisation of viable leukaemic cells and their responses to stimuli and show that the membrane capacitance values so derived reflect membrane morphology.

摘要

我们使用电旋转测量来研究六亚甲基双乙酰胺(HMBA)诱导的DS19小鼠红白血病细胞红细胞生成分化过程中质膜的变化。在HMBA处理3天后,在生理张力(300 mosmol/kg)下从单个活细胞的电旋转光谱确定的平均细胞膜比电容从1.74降至1.53 μF/cm²,这与早期对大量细胞群体进行介电泳测量所观察到的趋势一致。扫描电子显微镜和透射电子显微镜显示,细胞膜电容的相对较高值(>1 μF/cm²)反映了与包括许多微绒毛在内的复杂表面形态相关的质膜大面积。此外,它表明HMBA处理期间膜电容的下降与这些复杂表面特征密度的降低相关。然后通过使细胞暴露于渗透压应激来检查未处理和处理细胞的细胞膜机械特性差异。随着悬浮介质渗透压的增加,膜形态的复杂性增强,这反映在更高的比电容值上。当渗透压从210 mosmol/kg增加到450 mosmol/kg时,未处理的DS19细胞的平均膜电容从1.58变为2.05 μF/cm²,而HMBA处理的细胞则从1.47变为1.72 μF/cm²,响应明显较小。这表明与未处理的细胞相比,接受72小时分化处理的细胞具有增强的机械弹性,证明了膜骨架发育的早期阶段,膜骨架在成熟红细胞中完全发育。我们的研究结果证明了电旋转测量作为一种对活白血病细胞及其对刺激的反应进行非侵入性表征的方法的价值,并表明由此得出的膜电容值反映了膜形态。

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