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胆固醇基清洁剂 Chobimalt 在水溶液中的胶束形成研究:小角散射法。

Micelle Formation in Aqueous Solutions of the Cholesterol-Based Detergent Chobimalt Studied by Small-Angle Scattering.

机构信息

Faculty of Physics, Taras Shevchenko Kyiv National University, 01601 Kyiv, Ukraine.

Department of Biophysics, Institute of Experimental Physics, Slovak Academy of Sciences, 04001 Kosice, Slovakia.

出版信息

Molecules. 2023 Feb 14;28(4):1811. doi: 10.3390/molecules28041811.

Abstract

The structure and interaction parameters of the water-soluble cholesterol-based surfactant, Chobimalt, are investigated by small-angle neutron and X-ray scattering techniques. The obtained data are analyzed by a model-independent approach applying the inverse Fourier transformation procedure as well as considering a model fitting procedure, using a core-shell form factor and hard-sphere structure factor. The analysis reveals the formation of the polydisperse spherical or moderately elongated ellipsoidal shapes of the Chobimalt micelles with the hard sphere interaction in the studied concentration range 0.17-6.88 mM. The aggregation numbers are estimated from the micelle geometry observed by small-angle scattering and are found to be in the range of 200-300. The low pH of the solution does not have a noticeable effect on the structure of the Chobimalt micelles. The critical micelle concentrations of the synthetic surfactant Chobimalt in water and in HO-HCl solutions were obtained according to fluorescence measurements as ~3 μM and ~2.5 μM, respectively. In-depth knowledge of the basic structural properties of the detergent micelles is necessary for further applications in bioscience and biotechnology.

摘要

采用小角中子和 X 射线散射技术研究了水溶性胆固醇基表面活性剂 Chobimalt 的结构和相互作用参数。通过独立于模型的方法分析获得的数据,应用逆傅里叶变换程序以及考虑模型拟合程序,使用核壳形状因子和硬球结构因子。分析表明,在研究的浓度范围内 0.17-6.88 mM,Chobimalt 胶束形成了多分散的球形或中度拉长的椭球形。从小角散射观察到的胶束几何形状估计聚集数,发现其范围在 200-300 之间。溶液的低 pH 值对 Chobimalt 胶束的结构没有明显影响。根据荧光测量,合成表面活性剂 Chobimalt 在水中和 HO-HCl 溶液中的临界胶束浓度分别约为 3 μM 和 2.5 μM。深入了解清洁剂胶束的基本结构特性对于在生物科学和生物技术中的进一步应用是必要的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ffaa/9960369/dcc0f3bf8e69/molecules-28-01811-g001.jpg

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