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壳聚糖与蛋白质之间复合物形成的温度依赖性。

On the temperature dependence of complex formation between chitosan and proteins.

机构信息

Department of Pharmaceutics and Analytical Chemistry, Pharmaceutical Sciences, University of Copenhagen, Universitetsparken 2, 2100 Copenhagen, Denmark.

出版信息

Biomacromolecules. 2011 Jul 11;12(7):2534-43. doi: 10.1021/bm200344d. Epub 2011 Jun 7.

Abstract

Chitosan is a biocompatible easily degradable polysaccharide, which, because of its positive charge, is able to interact favorably with deprotonated carboxyl groups of proteins. The strength of these charge-charge interactions is generally low, resulting in poor colloidal stability of the complexes. To investigate if other noncovalent forces contribute to stabilizing such systems, we have selected α-lactalbumin, β-lactoglobulin, β-casein, and human growth hormone, characterized by a common acidic pI value (∼ 5) that ensures their overall negative charge at physiological pH. Binding energetics between chitosan and proteins was studied by isothermal titration calorimetry, whereas the thermal stability was assessed by differential scanning calorimetry. Our data show that colloidal stability of the particles depends on protein identity as well as temperature, indicating the involvement of nonelectrostatic interactions (e.g., hydrophobic effect) as driving forces for the complex formation. This suggests that chitosan-protein drug delivery systems can be improved through preparation process optimization with regard to temperature.

摘要

壳聚糖是一种生物相容性、易于降解的多糖,由于其正电荷,能够与蛋白质的去质子化羧基基团进行有利的相互作用。这些电荷-电荷相互作用的强度通常较低,导致复合物的胶体稳定性差。为了研究是否有其他非共价力有助于稳定这些系统,我们选择了α-乳白蛋白、β-乳球蛋白、β-酪蛋白和人生长激素,它们的等电点(pI)约为 5,这确保了它们在生理 pH 值下的整体负电荷。通过等温热滴定法研究了壳聚糖与蛋白质之间的结合能,通过差示扫描量热法评估了热稳定性。我们的数据表明,颗粒的胶体稳定性取决于蛋白质的特性和温度,表明非静电相互作用(例如疏水作用)是复合物形成的驱动力。这表明,通过优化制备过程中的温度,可以改善壳聚糖-蛋白质药物传递系统。

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