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自发乳化法制备纳米乳的影响因素研究:对液滴大小、多分散指数及稳定性的影响

Investigation of Factors Influencing Formation of Nanoemulsion by Spontaneous Emulsification: Impact on Droplet Size, Polydispersity Index, and Stability.

作者信息

Algahtani Mohammed S, Ahmad Mohammad Zaki, Ahmad Javed

机构信息

Department of Pharmaceutics, College of Pharmacy, Najran University, Najran 11001, Saudi Arabia.

出版信息

Bioengineering (Basel). 2022 Aug 12;9(8):384. doi: 10.3390/bioengineering9080384.

Abstract

Interest in nanoemulsion technology has increased steadily in recent years for its widespread applications in the delivery of pharmaceuticals, nutraceuticals, and cosmeceuticals. Rational selection of the composition and the preparation method is crucial for developing a stable nanoemulsion system with desired physicochemical characteristics. In the present study, we investigate the influence of intricate factors including composition and preparation conditions that affect characteristic parameters and the stability of the nanoemulsion formation prepared by the spontaneous emulsification method. Octanoic acid, capryol 90, and ethyl oleate were selected to represent oil phases of different carbon-chain lengths. We explored the impact of the addition mode of the oil-S phase and aqueous phase, vortexing time, K (surfactant/cosurfactant) ratio, and the replacement of water by buffers of different pH as an aqueous system. The phase behavior study showed that the S phase had a significant impact on the nanoemulsifying ability of the nanoemulsions composed of oil phases of varying carbon-chain lengths. The mode of mixing of the oil-S phase to the aqueous phase markedly influenced the mean droplet size and size distribution of the nanoemulsions composed of oil phases as capryol 90. Vortexing time also impacted the mean droplet size and the stability of the generated nanoemulsion system depending on the varying carbon-chain length of the oil phase. The replacement of the water phase by aqueous buffers of pH 1.2, 5.5, 6.8, and 7.4 has altered the mean droplet size and size distribution of the nanoemulsion system. Further, the K ratio also had a significant influence on the formation of the nanoemulsion system. The findings of this investigation are useful in understanding how the formulation composition and process parameters of the spontaneous emulsification technique are responsible for affecting the physicochemical characteristics and stability of the nanoemulsion system composed of oil of varying carbon-chain (C-C) length.

摘要

近年来,由于纳米乳技术在药物、营养保健品和药妆品递送方面的广泛应用,人们对其的兴趣稳步增长。合理选择组成和制备方法对于开发具有所需物理化学特性的稳定纳米乳体系至关重要。在本研究中,我们研究了包括组成和制备条件在内的复杂因素对通过自发乳化法制备的纳米乳形成的特征参数和稳定性的影响。选择辛酸、辛酰醇90和油酸乙酯来代表不同碳链长度的油相。我们探讨了油相-S相和水相的添加方式、涡旋时间、K(表面活性剂/助表面活性剂)比以及用不同pH的缓冲液替代水作为水相体系的影响。相行为研究表明,S相对由不同碳链长度油相组成的纳米乳的纳米乳化能力有显著影响。油相-S相与水相的混合方式显著影响了由辛酰醇90作为油相组成的纳米乳的平均液滴尺寸和尺寸分布。涡旋时间也根据油相碳链长度的变化影响所生成纳米乳体系的平均液滴尺寸和稳定性。用pH为1.2、5.5、6.8和7.4的水性缓冲液替代水相改变了纳米乳体系的平均液滴尺寸和尺寸分布。此外,K比也对纳米乳体系的形成有显著影响。本研究结果有助于理解自发乳化技术的配方组成和工艺参数如何影响由不同碳链(C-C)长度的油组成的纳米乳体系的物理化学特性和稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d2b8/9404776/aa703b2ddb46/bioengineering-09-00384-g001.jpg

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