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高压均质法制备维生素C纳米脂质体:工艺优化及功效、透皮吸收和稳定性评价

Preparation of VC nanoliposomes by high pressure homogenization: Process optimization and evaluation of efficacy, transdermal absorption, and stability.

作者信息

Tang Yunqi, Zhou Ankun, Zhou Shaodong, Ruan Jiancheng, Qian Chao, Wu Chen, Ye Linlin

机构信息

College of Chemical and Biological Engineering, Zhejiang Provincial Key Laboratory of Advanced Chemical Engineering Manufacture Technology, Zhejiang University, Hangzhou, Zhejiang Province, 310027, PR China.

Institute of Zhejiang University-Quzhou, #99 Zheda Road, Quzhou, Zhejiang Province, 324000, PR China.

出版信息

Heliyon. 2024 Apr 10;10(9):e29516. doi: 10.1016/j.heliyon.2024.e29516. eCollection 2024 May 15.

Abstract

Vitamin C (VC) possesses antioxidant and whitening effects. However, its effectiveness is hindered by challenges such as instability, impaired solubility, and limited bioavailability hinder. In this study, VC was encapsulated in nanoliposomes by primary emulsification and high-pressure homogenization. The VC nanoliposomes were comprehensively characterized for their microscopic morphology, particle size, polydispersity index (PDI), and encapsulation efficiency (EE). Orthogonal experiments were designed to optimize the optimal preparation process, and the antioxidant activity, whitening efficacy, transdermal absorption, and stability of VC nanoliposomes were evaluated based on this optimized process. The findings demonstrated the high reproducibility of the optimal process, with particle size, PDI, and EE values of 113.502 ± 4.360 nm, 0.104 ± 0.010, and 56.09 ± 1.01 %, respectively. Differential scanning calorimetry analysis showed effective encapsulation of VC nanoliposomes with better thermal stability than aqueous VC solution. Besides, the VC nanoliposomes demonstrated excellent antioxidant and whitening effects in efficacy experiments, stronger skin permeability in transdermal experiments and fluorescence tracking. Furthermore, storage stability tests indicated that the VC in nanoliposomes remained relatively stable after 60 days of storage. These findings highlighted the potential use of VC nanoliposomes in a wide range of applications for the cosmetic market, especially in the development of ingredients for skin care products.

摘要

维生素C(VC)具有抗氧化和美白作用。然而,其有效性受到诸如稳定性差、溶解性受损和生物利用度有限等挑战的阻碍。在本研究中,通过一次乳化和高压均质法将VC包裹于纳米脂质体中。对VC纳米脂质体的微观形态、粒径、多分散指数(PDI)和包封率(EE)进行了全面表征。设计正交实验以优化最佳制备工艺,并基于此优化工艺评估VC纳米脂质体的抗氧化活性、美白功效、透皮吸收和稳定性。研究结果表明最佳工艺具有高重现性,粒径、PDI和EE值分别为113.502±4.360 nm、0.104±0.010和56.09±1.01%。差示扫描量热法分析表明VC纳米脂质体有效包封,且热稳定性优于VC水溶液。此外,VC纳米脂质体在功效实验中表现出优异的抗氧化和美白效果,在透皮实验和荧光追踪中具有更强的皮肤渗透性。此外,储存稳定性测试表明纳米脂质体中的VC在储存60天后仍相对稳定。这些发现突出了VC纳米脂质体在化妆品市场广泛应用中的潜在用途,尤其是在护肤品成分开发方面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c349/11066132/93e0fb1ab1bf/ga1.jpg

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