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Water Permeability of Chlorella Cell Membranes by Nuclear Magnetic Resonance: Measured Diffusion Coefficients and Relaxation Times 1

机译:小球藻细胞膜通过核磁共振的透水性:测得的扩散系数和弛豫时间1

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摘要

Measurement by two nuclear magnetic resonance (NMR) techniques of the mean residence time τa of water molecules inside Chlorella vulgaris (Beijerinck) var. “viridis” (Chodot) is reported. The first is the Conlon and Outhred (1972 Biochim Biophys Acta 288: 354-361) technique in which extracellular water is doped with paramagnetic Mn2+ ions. Some complications in application of this technique are identified as being caused by the affinity of Chlorella cell walls for Mn2+ ions which shortens the NMR relaxation times of intra- and extracellular water. The second is based upon observations of effects of diffusion on the spin echo of intra- and extracellular water. Echo attenuation of intracellular water is distinguished from that of extracellular water by the extent to which diffusive motion is restricted. Intracellular water, being restricted to the cell volume, suffers less echo attenuation. From the dependence of echo amplitude upon gradient strength at several values of echo time, the mean residence time of intracellular water can be determined. From the mean residence time of intracellular water, the diffusional water permeability coefficient of the Chlorella membrane is calculated to be 2.1 ± 0.4 × 10−3 cm sec−1.
机译:通过两种核磁共振(NMR)技术测量寻常小球藻(Beijerinck)var中水分子的平均停留时间τa。据报道“ viridis”(Chodot)。第一种是Conlon和Outhred(1972 Biochim Biophys Acta 288:354-361)技术,其中细胞外水掺有顺磁性Mn2 +离子。小球藻细胞壁对Mn2 +离子的亲和力会导致小球藻细胞壁的亲和力缩短,从而缩短细胞内和细胞外水的NMR弛豫时间。第二种是基于观察到扩散对细胞内和细胞外水的自旋回波的影响。细胞内水的回声衰减与细胞外水的回声衰减的区别在于扩散运动受到限制的程度。受细胞体积限制的细胞内水回声衰减较小。根据回波幅度在几个回波时间值上对梯度强度的依赖性,可以确定细胞内水的平均停留时间。根据细胞内水的平均停留时间,可计算出小球藻膜的扩散水渗透系数为2.1±0.4×10-3 cm sec-1。

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