纳米乳液的应用及其最新进展

Q3 Materials Science
Prativa Das, Jnyana Ranjan Panda, C. Patro, Baby Sahu, Soumya Stuti Patnaik
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引用次数: 0

摘要

纳米乳剂是一种亚微米大小的悬浮液,作为增强药物传递效果的药理学载体被广泛研究。纳米乳液是各向同性的热力学系统,其中两种不混溶的液体(水和油)使用相关的表面活性剂结合形成单相。纳米乳剂由于其纳米液滴大小而具有抗沉降或成乳的弹性。奥斯特瓦尔德成熟是纳米乳分解的主要过程。纳米乳剂中的液滴直径通常在20到500纳米之间。纳米乳液滴的直径和表面参数是决定制剂生物活性的重要因素。纳米乳液在美容、诊断、药物治疗、生物医学等领域有着广阔的应用前景。药物表面活性剂被用于合成纳米乳液,通常被认为是安全的[GRAS]。NEs抗聚结的稳定性主要取决于所使用的表面活性剂的类型和浓度。纳米乳液由多种油配制而成,尤其是天然油、半合成油和合成油。在过去的十年中,各种专利和临床研究都证明了NE系统的应用。它们作为药物递送实体在眼科、外用、透皮、鼻内、静脉和口服途径中的应用受到广泛赞赏。此外,它们在化妆品行业也获得了显著的重要性。本文综述了NE的各种成分及其在微滴形成中的重要性,并简要介绍了NE的各种给药途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Comprehensive Review of Nanoemulsion applications & their recent advancements
Nanoemulsions are submicron-sized suspensions that are being studied extensively as pharmacological vehicles for enhancing the outcomes of drug delivery. Nanoemulsions are isotropic thermodynamic systems in which two immiscible liquids [water and oil] are combined to form a single phase using pertinent surfactants. Nano-emulsions are resilient to sedimentation or creaming due to their nano-droplet size. Ostwald ripening represents the principal process accountable for the disintegration of nanoemulsion. Droplet diameters in nanoemulsions typically range from 20 to 500 nanometers. The diameter and surface parameters of nanoemulsion droplets play are of paramount significance in determining the bioactivity of the formulation. Nanoemulsion offers a promising future in various industries like cosmetology, diagnosis, pharmacological regimens, and biomedicine in the future. Pharmaceutical surfactants are utilized to synthesize nanoemulsions, which are generally regarded as safe [GRAS]. The stability of the NEs against coalescence mainly depends on the type and concentration of the surfactant employed. Nanoemulsions are formulated from a variety of oils, notably natural, semi-synthetic, and synthetic oils. Over the past decade, various patents and clinical research have exemplified the applications of the NE system. Their application as a drug delivery entity in the ophthalmic, topical, transdermal, intranasal, intravenous, and oral routes is widely appreciated. Also, they have gained remarkable importance in the cosmetic industry. This review presents the importance of various components of NE and their importance in droplet formation and provides a brief insight into various drug administration routes of NE.
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来源期刊
Current Nanomaterials
Current Nanomaterials Materials Science-Materials Science (miscellaneous)
CiteScore
1.60
自引率
0.00%
发文量
53
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