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基于纳米纤维的刺激响应型和双重药物递送系统:现状与未来发展方向。

Nanofiber-Based Systems for Stimuli-Responsive and Dual Drug Delivery: Present Scenario and the Way Forward.

机构信息

Department of Materials Science and Metallurgical Engineering, Indian Institute of Technology Hyderabad, Kandi, 502285 Hyderabad, Sangareddy Telangana, India.

Department of Biomedical Engineering, Indian Institute of Technology Hyderabad, Kandi, 502285 Hyderabad, Sangareddy Telangana, India.

出版信息

ACS Biomater Sci Eng. 2023 Jun 12;9(6):3160-3184. doi: 10.1021/acsbiomaterials.3c00363. Epub 2023 May 23.

Abstract

Drug delivery and delivery systems are among the most important research disciplines today, and the relevance of nanofibers in achieving the appropriate release profile at specified sites for increased therapeutic advantages cannot be understated. Nanofiber-based drug delivery systems are fabricated and modified using a range of methods that entail a variety of factors and processes; tuning of these allows control of the drug release such as targeted, extended, multistage, and stimuli-responsive release. We explore nanofiber-based drug delivery systems from the most recent accessible literature, focusing on materials, techniques, modifications, drug release, applications, and challenges. This review offers a thorough assessment of the current and future potential of nanofiber-based drug delivery systems, with a particular emphasis on their capabilities in stimuli-responsive and dual drug delivery. The review begins with an introduction to the important characteristics of nanofibers that are useful in drug delivery applications, followed by materials and synthesis procedures for various types of nanofibers, as well as their practicality and scalability. The review then focuses on and explores the modification and functionalization strategies of nanofibers as essential features for regulating the applications of nanofibers in drug loading, transport, and release. Finally, this review investigates the range of nanofiber-based drug delivery systems in satisfying the current requirements by pointing out the areas that need improvement, followed by critical analysis, and offers probable solutions.

摘要

药物输送和输送系统是当今最重要的研究学科之一,纳米纤维在实现特定部位适当释放特性以获得更大治疗优势方面的相关性怎么强调都不为过。基于纳米纤维的药物输送系统是使用多种方法制造和改性的,这些方法涉及多种因素和过程;对这些因素进行调整可以控制药物的释放,例如靶向、延长、多阶段和刺激响应释放。我们从最近可获得的文献中探索基于纳米纤维的药物输送系统,重点关注材料、技术、改性、药物释放、应用和挑战。本综述全面评估了基于纳米纤维的药物输送系统的现状和未来潜力,特别强调了它们在刺激响应和双重药物输送方面的能力。综述首先介绍了在药物输送应用中有用的纳米纤维的重要特性,然后介绍了各种类型的纳米纤维的材料和合成程序,以及它们的实用性和可扩展性。然后,综述重点探讨了纳米纤维的改性和功能化策略,因为这些策略是调节纳米纤维在药物负载、运输和释放方面应用的重要特征。最后,本综述通过指出需要改进的领域,调查了基于纳米纤维的药物输送系统在满足当前需求方面的范围,随后进行了批判性分析,并提出了可能的解决方案。

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