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药物纳米晶体:表面工程及其在靶向递送中的应用。

Drug nanocrystals: Surface engineering and its applications in targeted delivery.

作者信息

Lhaglham Phattalapol, Jiramonai Luksika, Jia Yaru, Huang Baoying, Huang Yuanyu, Gao Xueyun, Zhang Jinchao, Liang Xing-Jie, Zhu Mengliang

机构信息

Chinese Academy of Sciences (CAS) Key Laboratory for Biomedical Effects of Nanomaterials and Nanosafety, CAS Center for Excellence in Nanoscience, National Center for Nanoscience and Technology of China, Beijing 100190, China.

University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

iScience. 2024 Oct 16;27(11):111185. doi: 10.1016/j.isci.2024.111185. eCollection 2024 Nov 15.

Abstract

Drug nanocrystals have received significant attention in drug development due to their enhanced dissolution rate and improved water solubility, making them effective in overcoming issues related to drug hydrophobicity, thereby improving drug bioavailability and treatment effectiveness. Recent advances in preparation techniques have facilitated research on drug surface properties, leading to valuable surface engineering strategies. Surface modification can stabilize drug nanocrystals, making them suitable for versatile drug delivery platforms. Functionalized ligands further enhance the potential for targeted delivery, enabling precision medicine. This review focuses on the surface engineering of drug nanocrystals, discussing various preparation methods, surface ligand design strategies, and their applications in targeted drug delivery, especially for cancer treatments. Finally, challenges and future directions are also discussed to promote the development of drug nanocrystals. The surface engineering of drug nanocrystals promises new opportunities for treating complex and chronic diseases while broadening the application of drug delivery systems.

摘要

药物纳米晶体因其提高的溶解速率和改善的水溶性,在药物开发中受到了广泛关注,使其能够有效克服与药物疏水性相关的问题,从而提高药物的生物利用度和治疗效果。制备技术的最新进展推动了对药物表面性质的研究,催生了有价值的表面工程策略。表面修饰可以稳定药物纳米晶体,使其适用于多种药物递送平台。功能化配体进一步增强了靶向递送的潜力,实现了精准医学。本综述聚焦于药物纳米晶体的表面工程,讨论了各种制备方法、表面配体设计策略及其在靶向药物递送中的应用,特别是在癌症治疗方面。最后,还讨论了挑战和未来方向,以促进药物纳米晶体的发展。药物纳米晶体的表面工程为治疗复杂和慢性疾病带来了新机遇,同时拓宽了药物递送系统的应用范围。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e7d0/11564948/a7e6a2f3692d/fx1.jpg

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