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两亲性聚合物基质中的水合诱导相分离及其对voclosporin释放的影响。

Hydration-induced phase separation in amphiphilic polymer matrices and its influence on voclosporin release.

作者信息

Khan I John, Murthy N Sanjeeva, Kohn Joachim

机构信息

New Jersey Center for Biomaterials, The State University of New Jersey, Piscataway, NJ 08854, USA.

出版信息

J Funct Biomater. 2012 Oct 30;3(4):745-59. doi: 10.3390/jfb3040745.

Abstract

Voclosporin is a highly potent, new cyclosporine-A derivative that is currently in Phase 3 clinical trials in the USA as a potential treatment for inflammatory diseases of the eye. Voclosporin represents a number of very sparingly soluble drugs that are difficult to administer. We therefore selected it as a model drug that is dispersed within amphiphilic polymer matrices, and investigated the changing morphology of the matrices using neutron and x-ray scattering during voclosporin release and polymer resorption. The hydrophobic segments of the amphiphilic polymer chain are comprised of desaminotyrosyl-tyrosine ethyl ester (DTE) and desaminotyrosyl-tyrosine (DT), and the hydrophilic component is poly(ethylene glycol) (PEG). Water uptake in these matrices resulted in the phase separation of hydrophobic and hydrophilic domains that are a few hundred Angstroms apart. These water-driven morphological changes influenced the release profile of voclosporin and facilitated a burst-free release from the polymer. No such morphological reorganization was observed in poly(lactide-co-glycolide) (PLGA), which exhibits an extended lag period, followed by a burst-like release of voclosporin when the polymer was degraded. An understanding of the effect of polymer composition on the hydration behavior is central to understanding and controlling the phase behavior and resorption characteristics of the matrix for achieving long-term controlled release of hydrophobic drugs such as voclosporin.

摘要

voclosporin是一种高效的新型环孢素A衍生物,目前正在美国进行3期临床试验,作为眼部炎症性疾病的潜在治疗药物。voclosporin代表了许多极难溶解且难以给药的药物。因此,我们选择它作为一种分散在两亲性聚合物基质中的模型药物,并在voclosporin释放和聚合物吸收过程中,使用中子散射和X射线散射研究了基质形态的变化。两亲性聚合物链的疏水链段由去氨基酪氨酸 - 酪氨酸乙酯(DTE)和去氨基酪氨酸 - 酪氨酸(DT)组成,亲水成分是聚乙二醇(PEG)。这些基质中的水分吸收导致疏水和亲水区域发生相分离,两者相距几百埃。这些由水驱动的形态变化影响了voclosporin的释放曲线,并促进了药物从聚合物中无突释地释放。在聚(丙交酯 - 乙交酯)(PLGA)中未观察到这种形态重组,PLGA表现出较长的延迟期,随后在聚合物降解时voclosporin呈突释状释放。了解聚合物组成对水合行为的影响对于理解和控制基质的相行为及吸收特性至关重要,从而实现对voclosporin等疏水药物的长期控释。

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