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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Biodegradable cross-linked prodrug of the bronchial dilator Vephylline. 2. Kinetics and quantum chemical studies on the release mechanism.
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Biodegradable cross-linked prodrug of the bronchial dilator Vephylline. 2. Kinetics and quantum chemical studies on the release mechanism.

机译:支气管扩张剂Vephylline的可生物降解的交联前药。 2.释放机理的动力学和量子化学研究。

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Experimental thermodynamics studies and quantum chemical reaction path calculations on the hydrolytic degradation of Poly-vephyllinemalate microspheres in acidic and basic media were performed. It was possible to make a conclusion on the release mechanism of free Vephylline as follows: a hydrolytic cleavage of the ester bonds between molecular fragments of R,S-malic acid takes place and leads to a soluble oligoester fraction. Then, further hydrolysis of the ester bonds between the xanthine fragment and R, S-malic acid leads to the release of Vephylline as free base. The hydrolytic process takes place in acidic solution with rapid degradation of the ester bonds between the malic acid monomers and by far slower degradation of the ester bonds between the malic acid and Vephylline. In basic solution both steps of the hydrolysis are fast processes leading to a complete release of free Vephylline within 1 h. The process of Vephylline release is under entropic control. The experimental results are well correlated to the results obtained after kinetics investigation and after AM1 quantum chemically calculated energy barriers in the reaction path leading to the tetrahedral intermediates of the hydrolytic reactions. This conclusion is in good accordance with an indirect study on the release mechanism of Vephylline from its polymeric prodrug, paying attention to the biological response, reported previously.
机译:进行了热力学研究和量子化学反应路径计算,研究了酸性和碱性介质中聚维甲酸苹果酸酯微球的水解降解。可以对游离的维他林的释放机理作出如下结论:R,S-苹果酸的分子片段之间的酯键发生水解裂解,并产生可溶性低聚酯馏分。然后,黄嘌呤片段与R,S-苹果酸之间的酯键的进一步水解导致作为游离碱的维他林的释放。水解过程在酸性溶液中进行,苹果酸单体之间的酯键迅速降解,而苹果酸和Vephylline之间的酯键降解慢得多。在碱性溶液中,水解的两个步骤都是快速过程,导致1分钟内完全释放出游离的维他林。 Vephylline的释放过程处于熵控制之下。实验结果与动力学研究之后以及导致水解反应的四面体中间体的反应路径中AM1量子化学计算的能垒之后的结果紧密相关。该结论与先前对Vephylline从其聚合物前药中释放机制的间接研究高度吻合,并关注其生物学反应。

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