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利用烯丙基封端共聚物甲氧基(聚乙二醇)-嵌段-聚(茉莉内酯)在无定形固体分散体中的开发:功能化和非功能化聚合物的比较研究。

Utilizing the allyl-terminated copolymer methoxy(poly(ethylene glycol))-block-poly(jasmine lactone) in the development of amorphous solid dispersions: A comparative study of functionalized and non-functionalized polymer.

机构信息

University of Copenhagen, Faculty of Health and Medical Sciences, Department of Pharmacy, Copenhagen, Denmark.

Åbo Akademi University, Faculty of Science and Engineering, Pharmaceutical Sciences Laboratory, Turku, Finland.

出版信息

Int J Pharm. 2024 May 25;657:124175. doi: 10.1016/j.ijpharm.2024.124175. Epub 2024 Apr 27.

DOI:10.1016/j.ijpharm.2024.124175
PMID:38685442
Abstract

Molecular interactions are crucial to stabilize amorphous drugs in amorphous solid dispersions (ASDs). Most polymers, however, have only a limited ability to form strong molecular interactions with drugs. Polymers tailored to fit the physicochemical properties of the drug molecule to be incorporated, for instance by allowing the incorporation of specific functional groups, would be highly sought-for in this regard. For this purpose, the novel allyl-terminated polymer methoxy(polyethylene glycol)-block-poly(jasmine lactone) (mPEG-b-PJL) has been synthesized and functionalized to potentially enhance specific drug-polymer interactions. This study investigated the use of mPEG-b-PJL in ASDs, using carvedilol (CAR), a weakly basic model drug. The findings revealed that the acidic functionalized form of the polymer (mPEG-b-PJL-COOH) indeed established stronger molecular interactions with CAR compared to its non-functionalized counterpart mPEG-b-PJL. Evaluations on polymer effectiveness in forming ASDs demonstrated that mPEG-b-PJL-COOH outperformed its non-functionalized counterpart in miscibility, drug loading ability, and stability, inferred from reduced molecular mobility. However, dissolution tests indicated that ASDs with mPEG-b-PJL-COOH did not significantly improve the dissolution behaviour compared to amorphous CAR alone, despite potential solubility enhancement through micelle formation. Overall, this study confirms the potential of functionalized polymers in ASD formulations, while the challenge of improving dissolution performance in these ASDs remains an area of further development.

摘要

分子相互作用对于稳定无定形药物在无定形固体分散体(ASD)中至关重要。然而,大多数聚合物与药物形成强分子相互作用的能力有限。通过允许特定官能团的掺入,定制适合待掺入药物分子物理化学性质的聚合物,在这方面将是非常需要的。为此,合成了新型烯丙基封端聚合物甲氧基(聚乙二醇)-嵌段-聚(茉莉内酯)(mPEG-b-PJL)并进行了功能化,以增强特定的药物-聚合物相互作用。本研究使用弱碱性模型药物卡维地洛(CAR)研究了 mPEG-b-PJL 在 ASD 中的应用。研究结果表明,与非功能化的 mPEG-b-PJL 相比,聚合物的酸性官能化形式(mPEG-b-PJL-COOH)确实与 CAR 建立了更强的分子相互作用。对聚合物在形成 ASD 方面的有效性的评估表明,mPEG-b-PJL-COOH 在混溶性、药物负载能力和稳定性方面优于其非功能化的对应物,这可以从降低的分子迁移率推断出来。然而,溶解试验表明,尽管通过胶束形成可能提高溶解度,但与单独的无定形 CAR 相比,含有 mPEG-b-PJL-COOH 的 ASD 并没有显著改善溶解行为。总的来说,这项研究证实了功能化聚合物在 ASD 配方中的潜力,而提高这些 ASD 中溶解性能的挑战仍然是进一步发展的领域。

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