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Micelle formation of sodium glyco- and taurocholates and sodium glyco- and taurodeoxycholates and solubilization of cholesterol into their micelles

机译:糖基和牛磺胆酸钠和糖基和牛磺脱氧胆酸钠的胶束形成以及胆固醇增溶成胶束

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Micelle formation of sodium glyco- and taurocholates and sodium glyco- and taurodeoxycholates was studied at 308.2 K for the critical micelle concentration at various NaCl concentrations by pyrene fluorescence and scattered light intensity, and the degree of counterion binding to micelle was calculated using the Corrin-Harkins plots. The change of I_1/I_3 values of the fluorescence spectrum with the conjugate bile salt concentration suggested two steps for the bile salt aggregation, which was supported by the scattered light intensity. The first step is a commencement of smaller aggregates, the first CMC, and the second one is a beginning of stable aggregates, the second CMC. Between the first and the second CMCs, the aggregates grow in size with the conjugate concentration. The aggregation number above the second CMC was determined at 308.2 K and 0.15 mol dm~(-3) NaCl concentration by the static light scattering: 8.7 and 6.0 for sodium glyco- and taurocholate, respectively, and 15.7 and 15.9 for sodium glyco- and taurodeoxycholate, respectively. The solubilization of cholesterol into the bile salt micelles in the presence of coexisting cholesterol phase or the maximum additive concentration (MAC) of cholesterol was determined against the bile salt concentration, and then, the standard Gibbs energy change for the solubilization was evaluated, where the micelles were regarded as a chemical species. The solubilization was stabilized in the order of sodium taurocholate < sodium glyco-cholate < sodium taurodeoxycholate < sodium glycodeoxycholate.
机译:在308.2 K下,通过studied荧光和散射光强度研究了在各种NaCl浓度下的临界胶束浓度,研究了糖醇和牛磺胆酸钠和糖醛和牛脱氧胆酸钠的胶束形成,并使用Corrin-计算了抗衡离子与胶束的结合程度。哈金斯阴谋。荧光光谱的I_1 / I_3值随共轭胆汁盐浓度的变化提示胆汁盐聚集有两个步骤,这由散射光强度支持。第一步是较小的聚集体(第一个CMC)的开始,第二步是稳定聚集体(第二个CMC)的开始。在第一个和第二个CMC之间,聚集体的大小随结合物浓度而增长。通过静态光散射确定第二个CMC上方的聚集数为308.2 K和0.15 mol dm〜(-3)NaCl浓度:糖和牛磺胆酸钠分别为8.7和6.0,糖酸钠和牛磺胆酸钠分别为15.7和15.9。牛磺脱氧胆酸盐。相对于胆盐浓度,确定在胆固醇相共存或胆固醇最大添加浓度(MAC)存在的情况下将胆甾醇增溶到胆盐胶束中,然后评估增溶的标准Gibbs能量变化,其中胶束被认为是化学物种。溶解度按照牛磺胆酸钠<糖胆酸钠<牛磺脱氧胆酸钠<糖脱氧胆酸钠的顺序稳定。

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