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Vesicle size distributions measured by flow field-flow fractionation coupled with multiangle light scattering.

机译:通过流场-流分离与多角度光散射相结合测量的囊泡大小分布。

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摘要

The separation method, flow field-flow fractionation (flow FFF), is coupled on-line with multiangle laser light scattering (MALLS) for simultaneous measurement of the size and concentration of vesicles eluting continuously from the fractionator. These size and concentration data, gathered as a function of elution time, may be used to construct both number- and mass-weighted vesicle size distributions. Unlike most competing, noninvasive methods, this flow FFF/MALLS technique enables measurement of vesicle size distributions without a separate refractive index detector, calibration using particle size standards, or prior assumptions about the shape of the size distribution. Experimentally measured size distributions of vesicles formed by extrusion and detergent removal are non-Gaussian and are fit well by the Weibull distribution. Flow FFF/MALLS reveals that both the extrusion and detergent dialysis vesicle formation methods can yield nearly size monodisperse populations with standard deviations of approximately 8% about the mean diameter. In contrast to the rather low resolution of dynamic light scattering in analyzing bimodal systems, flow FFF/MALLS is shown to resolve vesicle subpopulations that differ by much less than a factor of two in mean size.
机译:流场-流分离(流FFF)的分离方法与多角度激光散射(MALLS)在线耦合,用于同时测量从分馏塔连续洗脱的囊泡的大小和浓度。这些大小和浓度数据,作为洗脱时间的函数,可用于构建数量和质量加权的囊泡大小分布。与大多数竞争性非侵入性方法不同,这种流动FFF / MALLS技术无需单独的折射率检测器即可测量囊泡尺寸分布,无需使用粒径标准品进行校准,也无需事先对尺寸分布的形状进行假设。通过挤出和去污剂去除形成的囊泡的实验测量尺寸分布不是高斯分布,并且与威布尔分布非常吻合。流动FFF / MALLS表明,挤出法和去污剂渗析囊泡的形成方法均可产生接近大小的单分散菌群,其标准偏差约为平均直径的8%。与分析双峰系统中动态光散射的分辨率较低相比,流FFF / MALLS显示可分辨平均大小相差不到两倍的囊泡亚群。

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