Suppr超能文献

论聚氨酯和聚脲纳米系统在未来药物递送中的重要性。

On the Importance of Polyurethane and Polyurea Nanosystems for Future Drug Delivery.

作者信息

Rocas Pau, Cusco Cristina, Rocas Josep, Albericio Fernando

机构信息

Nanobiotechnological Polymers Division, Ecopol Tech S.L., Industria 7, El Foix Business Park, 43720 L'Arboc. Spain.

School of Chemistry & Physics, University of Kwazulu-Natal, 4041 Durban. South Africa.

出版信息

Curr Drug Deliv. 2018;15(1):37-43. doi: 10.2174/1567201814666171019102537.

Abstract

BACKGROUND

During the last decade, polyurethanes and polyureas have emerged as promising alternatives to classical polyacrylate-, polyester- and polyaminoacid-based drug delivery nanosystems. They are not only biocompatible and biodegradable, but also facilitate the manufacture of polymeric nanostructured nanoparticles in quantitative yields. The versatile chemistry reduces the amount of organic solvents used and allows the straightforward multifunctionalization of polymer precursors with the desired targeting molecule at each stage of the process.

OBJECTIVES

To highlight the common issues encountered in current drug delivery systems (DDSs) and the state of the art of polyurethane and polyurea polymers that self-assemble in a stratified manner by hydrophobic interactions. Finally, we discuss the importance of taking a holistic view when applying polymer nanotechnologies, in order to enhance their efficiency during preclinical and clinical studies.

CONCLUSIONS

Polyurethane-polyurea nanoparticles (PUUa NPs) emerge as suitable platforms to be manufactured in a cost-effective manner at industrial scale and following environmentally friendly synthetic methods. Furthermore, they allow the controlled delivery of a wide range of drugs and can be rapidly adapted to many clinical requirements by means of FDA-approved precursors. Additionally, the ease with which PUUa nanoparticles are biodegraded ensures control over temporal aspects of drug delivery compared to other nanosystems. These advantages make PUUa NPs attractive drug delivery vehicles as long as adequate safety and ethical guidelines for new NP formulations are developed.

摘要

背景

在过去十年中,聚氨酯和聚脲已成为传统聚丙烯酸酯、聚酯和聚氨基酸基药物递送纳米系统的有前景的替代品。它们不仅具有生物相容性和可生物降解性,还能以定量产率促进聚合物纳米结构颗粒的制造。这种多功能化学减少了有机溶剂的使用量,并允许在过程的每个阶段用所需的靶向分子对聚合物前体进行直接的多功能化。

目的

强调当前药物递送系统(DDS)中遇到的常见问题,以及通过疏水相互作用以分层方式自组装的聚氨酯和聚脲聚合物的技术现状。最后,我们讨论在应用聚合物纳米技术时采取整体观点的重要性,以提高其在临床前和临床研究中的效率。

结论

聚氨酯-聚脲纳米颗粒(PUUa NPs)成为以具有成本效益的方式在工业规模上按照环境友好的合成方法制造的合适平台。此外,它们允许对多种药物进行可控递送,并且可以通过FDA批准的前体迅速适应许多临床需求。此外,与其他纳米系统相比,PUUa纳米颗粒易于生物降解确保了对药物递送时间方面的控制。只要为新的NP制剂制定了适当的安全和伦理准则,这些优势就使PUUa NPs成为有吸引力的药物递送载体。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验