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将白蛋白疏水残基可逆暴露作为一种新型策略用于紫杉醇类纳米递药载体的制剂。

Reversible exposure of hydrophobic residues on albumin as a novel strategy for formulation of nanodelivery vehicles for taxanes.

机构信息

Center of Excellence in Products and Processes of Córdoba, Argentina.

出版信息

Int J Nanomedicine. 2011;6:1193-200. doi: 10.2147/IJN.S19163. Epub 2011 Jun 13.

Abstract

BACKGROUND

We report herein a novel strategy for the preparation of protein-based nanodelivery vehicles for hydrophobic active pharmaceutical ingredients.

METHODS

The procedure consisted of three steps, ie, exposure of hydrophobic residues of a protein to a pH-induced partial unfolding: interaction between hydrophobic residues on the protein and the hydrophobic active pharmaceutical ingredient, and a final step where the structure of the protein was reversed to a native-like state by returning to neutral pH. As proof of concept, the interaction of paclitaxel with partially unfolded states of human serum albumin was evaluated as a potential method for the preparation of water-soluble complexes of the taxane with albumin.

RESULTS

We found that paclitaxel readily binds to pH-induced partially unfolded albumin, leading to the formation of optically clear water-soluble complexes. The complexes thus formed were more stable in solution when the albumin native state was at least partially restored by neutralization of the solution to a pH around 7. It was also observed that the hydrodynamic radius of human serum albumin was only slightly increased after the cycle of pH changes, remaining in a monomeric state with a size according to paclitaxel binding. Furthermore, paclitaxel binding did not affect the overall exposure of charged groups of human serum albumin, as evaluated by its interaction with an ionic exchange resin.

CONCLUSION

The in vitro biological activity of the complexes formed was qualitatively equivalent to that of a Cremophor(®)-based formulation.

摘要

背景

我们在此报告了一种用于制备疏水性活性药物成分的基于蛋白质的纳米递药载体的新策略。

方法

该方法包括三个步骤,即暴露蛋白质的疏水性残基以进行 pH 诱导的部分展开:蛋白质上的疏水性残基与疏水性活性药物成分之间的相互作用,以及通过返回中性 pH 使蛋白质结构恢复为类似天然状态的最后一步。作为概念验证,评估紫杉醇与部分展开的人血清白蛋白之间的相互作用作为制备紫杉醇与白蛋白的水溶性复合物的潜在方法。

结果

我们发现紫杉醇容易与 pH 诱导的部分展开的白蛋白结合,导致形成光学透明的水溶性复合物。当通过将溶液的 pH 中和至约 7 来至少部分恢复白蛋白的天然状态时,形成的复合物在溶液中更稳定。还观察到,在 pH 变化循环后,人血清白蛋白的流体力学半径仅略有增加,保持在单体状态,其大小与紫杉醇结合。此外,紫杉醇结合不会影响人血清白蛋白带电基团的整体暴露,如通过其与离子交换树脂的相互作用评估的那样。

结论

所形成的复合物的体外生物学活性在质量上等同于基于 Cremophor®的制剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/284f/3148845/b018069d532a/ijn-6-1193f1.jpg

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