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纳米乳剂技术的创新:增强口服、肠胃外和眼科应用的药物递送

Innovations in Nanoemulsion Technology: Enhancing Drug Delivery for Oral, Parenteral, and Ophthalmic Applications.

作者信息

Jacob Shery, Kather Fathima Sheik, Boddu Sai H S, Shah Jigar, Nair Anroop B

机构信息

Department of Pharmaceutical Sciences, College of Pharmacy, Gulf Medical University, Ajman 4184, United Arab Emirates.

Department of Pharmaceutical Sciences, College of Pharmacy and Health Sciences, Ajman University, Ajman 346, United Arab Emirates.

出版信息

Pharmaceutics. 2024 Oct 17;16(10):1333. doi: 10.3390/pharmaceutics16101333.

Abstract

Nanoemulsions (NEs) are submicron-sized heterogeneous biphasic liquid systems stabilized by surfactants. They are physically transparent or translucent, optically isotropic, and kinetically stable, with droplet sizes ranging from 20 to 500 nm. Their unique properties, such as high surface area, small droplet size, enhanced bioavailability, excellent physical stability, and rapid digestibility, make them ideal for encapsulating various active substances. This review focuses on recent advancements, future prospects, and challenges in the field of NEs, particularly in oral, parenteral, and ophthalmic delivery. It also discusses recent clinical trials and patents. Different types of in vitro and in vivo NE characterization techniques are summarized. High-energy and low-energy preparation methods are briefly described with diagrams. Formulation considerations and commonly used excipients for oral, ocular, and ophthalmic drug delivery are presented. The review emphasizes the need for new functional excipients to improve the permeation of large molecular weight unstable proteins, oligonucleotides, and hydrophilic drugs to advance drug delivery rapidly.

摘要

纳米乳剂(NEs)是由表面活性剂稳定的亚微米级非均相双相液体系统。它们在物理上是透明或半透明的,光学各向同性,动力学稳定,液滴尺寸范围为20至500纳米。它们的独特性质,如高比表面积、小液滴尺寸、提高的生物利用度、优异的物理稳定性和快速消化性,使其成为封装各种活性物质的理想选择。本综述重点关注纳米乳剂领域的最新进展、未来前景和挑战,特别是在口服、肠胃外和眼部给药方面。还讨论了最近的临床试验和专利。总结了不同类型的体外和体内纳米乳剂表征技术。用图表简要描述了高能和低能制备方法。介绍了口服、眼部和眼用药物递送的制剂考虑因素和常用辅料。该综述强调需要新型功能性辅料来改善大分子不稳定蛋白质、寡核苷酸和亲水性药物的渗透,以快速推进药物递送。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b69/11510719/c511d7b14f31/pharmaceutics-16-01333-g001.jpg

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