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用于新型彩妆的彩色胶囊微球的开发。

The development of colour-encapsulated microspheres for novel colour cosmetics.

机构信息

Ciba, Home & Personal Care, Tarrytown, NY 10591, USA.

出版信息

J Microencapsul. 2009 Jun;26(4):325-33. doi: 10.1080/02652040802340706. Epub 2008 Oct 20.

Abstract

In the present study, the preparation, characterization and colour retention properties of organic colour-loaded microspheres are described. The study aimed to produce shatter-resistant, low-bleeding polymeric microspheres with particle diameters of 20 µm containing 10-20% (w/w) of the Food, Drug, and Cosmetic grade colourants FD&C Blue No. 1 Al Lake, FD&C Yellow No. 5 Al Lake and D&C Red No. 36 by utilizing an aqueous-dispersed polymer water-in-oil (W/O) solvent evaporation process featuring styrene/acrylates-based copolymers. The influences of matrix polymeric components on the shape, integrity and dye retention of the microspheres were studied. Encapsulation matrices based on alkali soluble polymers yielded misshapen spheroids that were prone both to swelling and decreased dye retention in aqueous environments, as well as loss of shape at 70°C in cosmetic oils under shear. A resin supported emulsion (RSE)-based matrix, in comparison, yielded highly spherical microspheres resistant to shape deformation and swelling. Additions of up to 15% (w/w) of an alkali soluble polymer to the RSE system improved colour dispersion without detrimentally affecting the structural integrity of the microspheres while also slightly decreasing dye concentrations released into aqueous solutions. The in vitro dye release of the colour-loaded microspheres in a cosmetic-type water-in-silicone (W/Si) emulsion was evaluated and compared to the in vitro dye release studies in aqueous solutions. No direct correlations between the emulsion system and single-component aqueous solutions could be made. Dye-release levels evaluated from contacting the microspheres with a complex aqueous medium (CAM5), which incorporated ingredient classes typically encountered in the aqueous phase of an emulsion, were found to correlate to levels determined in the generic W/Si emulsion with a 93% linear regression between the data sets. This study demonstrates that the CAM5 protocol (or, alternatively, a CAM2.5 protocol) satisfactorily predicted that the commercial materials derived, in part, from this study (Ciba: ENCAPSULENCE Blue 1, ENCAPSULENCE Yellow 5 and ENCAPSULENCE Red 36) are well suited to retain their colour and shape in liquid cosmetic foundations.

摘要

在本研究中,描述了有机载色微球的制备、表征和颜色保持性能。本研究旨在利用苯乙烯/丙烯酸酯基共聚物的水包油(W/O)分散聚合物溶剂蒸发工艺,生产粒径为 20 µm、载有 10-20%(w/w)食品、药品和化妆品级着色剂 FD&C 蓝色 No.1 铝湖、FD&C 黄色 No.5 铝湖和 D&C 红色 No.36 的抗碎、低渗聚合物微球。研究了基质聚合物成分对微球形状、完整性和染料保留的影响。基于碱溶性聚合物的包封基质会产生畸形的球体,这些球体既容易在水介质中膨胀和染料保留减少,又容易在 70°C 下在化妆品油中受到剪切力的影响而失去形状。相比之下,基于树脂支持乳液(RSE)的基质则产生了抗形状变形和膨胀的高度球形微球。在 RSE 体系中添加高达 15%(w/w)的碱溶性聚合物可以改善颜色分散,而不会对微球的结构完整性产生不利影响,同时也略微降低了释放到水溶液中的染料浓度。在化妆品型水包硅(W/Si)乳液中评估了载色微球的体外染料释放,并与水溶液中的体外染料释放研究进行了比较。在乳液体系和单一成分水溶液之间不能直接建立相关性。从与复杂水介质(CAM5)接触评估载色微球的染料释放水平,CAM5 中包含了通常在乳液水相中遇到的成分类别,发现与在通用 W/Si 乳液中确定的水平相关,数据集之间有 93%的线性回归。本研究表明,CAM5 方案(或替代的 CAM2.5 方案)能够很好地预测部分源自本研究的商业材料(Ciba:ENCAPSULENCE Blue 1、ENCAPSULENCE Yellow 5 和 ENCAPSULENCE Red 36)能够很好地保持其颜色和形状在液体化妆品基础中。

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