转移体:用于眼部局部药物传递的下一代药物传递系统。

Santosh Bhujbal, Ilva D Rupenthal, Vandana B Patravale, Priyanka Agarwal
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引用次数: 0

摘要

眼睛是一个复杂的器官,有许多解剖和生理障碍,使眼部药物递送成为一个持续的挑战。转移体(TFS)是一种可变形的囊泡,已广泛应用于增强经皮药物传递。然而,它们在眼部给药中的应用在很大程度上仍未被探索。涵盖领域:本综述强调了与眼部给药相关的典型挑战,并强调了TFS的固有特性,使其能够克服这些挑战。详细讨论了辅料和关键工艺参数对TFS特性的影响,重点介绍了用于TFS开发和优化的典型制备和表征技术。此外,本文还对近年来评价TFS在眼部给药中的应用进行了深入的讨论。专家意见:TFS独特的应力响应和可变形特性使其成为眼科药物输送的有希望的载体。然而,这一方向还需要进一步的研究,以了解它们的渗透机制,并阐明它们在眼部组织中持续和靶向给药的潜力。此外,还需要进一步研究优化TFS的稳定性和可扩展性,以促进其推向市场。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transfersomes: a next-generation drug delivery system for topical ocular drug delivery.

Introduction: The eye is a complex organ with several anatomical and physiological barriers that make ocular drug delivery an ongoing challenge. Transfersomes (TFS) are deformable vesicles that have been extensively applied to enhance transdermal drug delivery. However, their application in ocular drug delivery remains largely unexplored.

Areas covered: This review highlights the challenges typically associated with ocular drug delivery and emphasizes the inherent properties of TFS that enable them to overcome these challenges. The influence of excipients and critical process parameters on TFS characteristics have been discussed in detail with an emphasis on the fabrication and characterization techniques typically employed for TFS development and optimization. Furthermore, recent studies evaluating the application of TFS in ocular drug delivery have been discussed in depth.

Expert opinion: The unique stress-responsive and deformable nature of TFS makes them promising carriers for ocular drug delivery. However, further research in this direction is needed to understand their penetration mechanism and elucidate their potential for sustained and targeted drug delivery to ocular tissues. Moreover, further research is needed to optimize the stability and scalability of TFS to encourage their translation to the market.

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