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多聚天冬酰胺前药中多巴胺的释放动力学。

Kinetics of dopamine release from poly(aspartamide)-based prodrugs.

机构信息

Laboratory of Nanochemistry, Department of Biophysics and Radiation Biology, Semmelweis University, Nagyvárad tér 4, H-1089, Hungary.

Gedeon Richter Plc, Gyömrői út 19-21., H-1103, Hungary.

出版信息

Acta Biomater. 2018 Aug;76:225-238. doi: 10.1016/j.actbio.2018.06.030. Epub 2018 Jun 27.

Abstract

UNLABELLED

Preparation of novel biocompatible and biodegradable polymer-based prodrugs that can be applied in complex drug delivery systems is one of the most researched fields in pharmaceutics. The kinetics of the drug release strongly depends on the physicochemical parameters of prodrugs as well as environmental properties, therefore precise kinetical description is crucial to design the appropriate polymer prodrug formula. The aim of the present study was to investigate the dopamine release from different poly(aspartamide) based dopamine drug conjugates in different environments and to work out a kinetic description which can be extended to describe drug release in similar systems. Poly(aspartamide) was conjugated with different amounts of dopamine. In order to alter the solubility of the conjugates, 2-aminoethanol was also grafted to the main chain. Chemical structure as well as physical properties such as solubility, lipophilicity measurements and thermogravimetric analysis has been carried out. Kinetics of dopamine release from the macromolecular prodrugs which has good water solubility has been studied and compared in different environments (phosphate buffer, Bromelain and α-Chymotrypsin). It was found that the kinetics of release in those solutions can be satisfactorily described by first order reaction rate. For poorly-soluble conjugates, the release of dopamine was considered as a result of coupling of diffusion and chemical reaction. Besides the time dependence of dopamine cleavage, a practical quantity, the half-life of the release of loading capacity has been introduced and evaluated. It was found, that dopamine containing macromolecular prodrugs exhibit prolonged release kinetics and the quantitative description of the kinetics, including the most important physical parameters provides a solid base for future pharmaceutical and medical studies.

STATEMENT OF SIGNIFICANCE

Poly(aspartamide) based polymer-drug conjugates are promising for controlled and prolonged drug delivery due to their biocompatibility and biodegradability. In this study different poly(aspartamide) based dopamine conjugates were synthesized which can protect dopamine from deactivation in the human body. Since there is no satisfying kinetics description for drug release from covalent polymer-drug conjugates in the literature, dopamine release was investigated in different environments and a complete kinetical description was worked out. This study demonstrates that poly(aspartamide) is able to protect conjugated dopamine from deactivation and provide prolonged release in alkaline pH as well as in the presence of different enzymes. Furthermore, detailed kinetical descriptions were demonstrated which can be used in case of other covalent polymer-drug conjugates.

摘要

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制备新型生物相容和可生物降解的聚合物前药,可应用于复杂的药物传递系统,是药剂学中研究最多的领域之一。药物释放的动力学强烈依赖于前药的物理化学参数以及环境性质,因此精确的动力学描述对于设计合适的聚合物前药配方至关重要。本研究的目的是研究不同聚(天冬酰胺)基多巴胺药物偶联物在不同环境中的多巴胺释放,并制定一种动力学描述,可以扩展到类似系统的药物释放。聚(天冬酰胺)与不同量的多巴胺偶联。为了改变偶联物的溶解度,主链上也接枝了 2-氨基乙醇。进行了化学结构以及物理性质如溶解度、亲脂性测量和热重分析。已经研究了具有良好水溶性的大分子前药的多巴胺释放动力学,并在不同环境(磷酸盐缓冲液、菠萝蛋白酶和α-糜蛋白酶)中进行了比较。结果发现,这些溶液中释放的动力学可以用一级反应速率来很好地描述。对于难溶性偶联物,多巴胺的释放被认为是扩散和化学反应偶联的结果。除了多巴胺裂解的时间依赖性外,还引入并评估了有效载药量的半衰期这一实际数量。结果表明,含多巴胺的大分子前药表现出延长的释放动力学,动力学的定量描述,包括最重要的物理参数,为未来的药物和医学研究提供了坚实的基础。

意义声明

基于聚(天冬酰胺)的聚合物-药物偶联物由于其生物相容性和可生物降解性,有望用于控制和延长药物释放。在这项研究中,合成了不同的聚(天冬酰胺)基多巴胺偶联物,它们可以保护多巴胺免受人体中失活。由于文献中没有令人满意的共价聚合物-药物偶联物药物释放动力学描述,因此在不同的环境中研究了多巴胺的释放,并制定了完整的动力学描述。该研究表明,聚(天冬酰胺)能够保护偶联的多巴胺免受失活,并在碱性 pH 以及存在不同酶的情况下提供延长的释放。此外,还证明了详细的动力学描述,可用于其他共价聚合物-药物偶联物的情况。

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