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眼部药物递送的最新进展:对溶致液晶的见解

Recent Advances in Ocular Drug Delivery: Insights into Lyotropic Liquid Crystals.

作者信息

Adwan Samer, Qasmieh Madeiha, Al-Akayleh Faisal, Ali Agha Ahmed Saad Abdulbari

机构信息

Department of Pharmaceutics and Pharmaceutical Technology, Faculty of Pharmacy, Zarqa University, Zarqa 13110, Jordan.

Department of Pharmaceutics and Pharmaceutical Technology, Faculty of Pharmacy and Medical Sciences, Petra University, Amman 11196, Jordan.

出版信息

Pharmaceuticals (Basel). 2024 Oct 2;17(10):1315. doi: 10.3390/ph17101315.

Abstract

This review examines the evolution of lyotropic liquid crystals (LLCs) in ocular drug delivery, focusing on their ability to address the challenges associated with traditional ophthalmic formulations. This study aims to underscore the enhanced bioavailability, prolonged retention, and controlled release properties of LLCs that significantly improve therapeutic outcomes. This review synthesizes data from various studies on both bulk-forming LLCs and liquid crystal nanoparticles (LCNPs). It also considers advanced analytical techniques, including the use of machine learning and AI-driven predictive modeling, to forecast the phase behavior and molecular structuring of LLC systems. Emerging technologies in biosensing and real-time diagnostics are discussed to illustrate the broader applicability of LLCs in ocular health. LLCs are identified as pivotal in promoting targeted drug delivery across different regions of the eye, with specific emphasis on the tailored optimization of LCNPs. This review highlights principal categories of LLCs used in ocular applications, each facilitating unique interactions with physiological systems to enhance drug efficacy and safety. Additionally, novel applications in biosensing demonstrate LLCs' capacity to improve diagnostic processes. Lyotropic liquid crystals offer transformative potential in ocular drug delivery by overcoming significant limitations of conventional delivery methods. The integration of predictive technologies and biosensing applications further enriches the utility of LLCs, indicating a promising future for their use in clinical settings. This review points to continued advancements and encourages further research in LLC technology to maximize its therapeutic benefits.

摘要

本综述探讨了溶致液晶(LLCs)在眼部药物递送中的发展,重点关注其应对传统眼科制剂相关挑战的能力。本研究旨在强调LLCs增强的生物利用度、延长的滞留时间和控释特性,这些特性显著改善了治疗效果。本综述综合了关于块状形成LLCs和液晶纳米颗粒(LCNPs)的各种研究数据。它还考虑了先进的分析技术,包括使用机器学习和人工智能驱动的预测模型,以预测LLC系统的相行为和分子结构。讨论了生物传感和实时诊断方面的新兴技术,以说明LLCs在眼部健康方面更广泛的适用性。LLCs被认为在促进药物靶向递送至眼睛的不同区域方面起着关键作用,特别强调了LCNPs的定制优化。本综述突出了眼部应用中使用的LLCs的主要类别,每种类别都促进与生理系统的独特相互作用,以提高药物疗效和安全性。此外,生物传感中的新应用展示了LLCs改善诊断过程的能力。溶致液晶通过克服传统递送方法的重大局限性,在眼部药物递送中具有变革潜力。预测技术和生物传感应用的整合进一步丰富了LLCs的效用,表明其在临床环境中的应用前景广阔。本综述指出了持续的进展,并鼓励对LLC技术进行进一步研究,以最大限度地发挥其治疗益处。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/17cb/11509982/1df7b8469b7d/pharmaceuticals-17-01315-g001.jpg

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