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Structure of insoluble immune complexes as studied by spectroturbidimetry and dynamic light scattering

机译:光谱浊法和动态光散射研究的不溶性免疫复合物的结构

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We describe two variants of a method for determining the average composition of insoluble immune complex particles (IICP). The first variant is based on measuring the specific turbidity (the turbidity per unit mass concentration of the dispersed substance) and the average size of IICP determined from dynamic light scattering (DLS). In the second variant, the wavelength exponent (i.e., the slope of the logarithmic turbidity spectrum) is used in combination with specific turbidity measurements. Both variants allow the average biopolymer volume fraction to be determined in terms of the average refractive index of IICP. The method is exemplified by two experimental antigen+antibody systems: (ⅰ) lipopolysaccharide-protein complex (LPPC) of Azospirillum brasilense Sp245+rabbit anti-LPPC; and (ⅱ) human IgG (hIgG)+sheep anti-hIgG. Our measurements by the two methods for both types of systems gave, on the average, the same result: the volume fraction of the IICP biopolymers is about 30%; accordingly, the volume fraction of buffer solvent is 70%.
机译:我们描述了一种用于确定不溶性免疫复合物颗粒(IICP)的平均组成的方法的两种变体。第一变体基于测量比浊度(分散物质的每单位质量浓度的浊度)和由动态光散射(DLS)确定的IICP的平均尺寸。在第二变型中,波长指数(即,对数浊度谱的斜率)与特定的浊度测量组合使用。两种变体允许在IICP的平均折射率方面允许平均生物聚合物体积分数。该方法由两个实验抗原+抗体系统例示:(ⅰ)脂多糖 - 蛋白质复合物巴西固氮螺菌SP245 +兔抗LPPC的(LPPC); (Ⅱ)人IgG(HIGG)+绵羊抗HGG。我们通过两种类型系统的两种方法进行了测量,平均相同的结果:IICP生物聚合物的体积分数约为30%;因此,缓冲液溶剂的体积分数为70%。

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