Kon K, Noji S, Kon H
Blood Cells. 1983;9(3):427-41.
It is demonstrated that the change in the spin label ESR spectrum induced by shear flow reflects the whole cell deformation as a function of the cell surface area-to-volume ratio (s/v), the morphology and intracellular viscosity. Since the effect of the change in the membrane mechanical property on the ESR spectrum has been described previously, the spin label ESR spectrum is now shown to contain full information concerning the whole cell deformability which is determined by the major intrinsic and extrinsic properties of the red blood cells. The result of microphotographic observations shows also that the cells in the flow are elongated and aligned approximately along the flow direction to an increasing extent as the cells flow near the surface of the flat channel walls. Thus, the entire observation confirms the view that the ESR spectral difference-shear rate profile is closely related to the elongation ratio shear rate characteristics obtained by other (optical) methods.
结果表明,剪切流引起的自旋标记电子自旋共振(ESR)谱的变化反映了整个细胞的变形情况,该变形是细胞表面积与体积比(s/v)、形态及细胞内粘度的函数。由于之前已经描述过膜力学性质变化对ESR谱的影响,现在表明自旋标记ESR谱包含有关整个细胞变形性的完整信息,而细胞变形性由红细胞的主要内在和外在性质决定。显微摄影观察结果还表明,随着细胞在扁平通道壁表面附近流动,流动中的细胞会逐渐伸长并大致沿流动方向排列。因此,整个观察结果证实了这样一种观点,即ESR光谱差异-剪切速率曲线与通过其他(光学)方法获得的伸长率-剪切速率特性密切相关。