Wu Yuting, Chen Yuxin, Lv Boya, Wang Bo, Choi Seojin, Bai Ningyuan, Liu Zhe, Chen Xiao Dong, Cheng Yi
Department of Chemical Engineering, Tsinghua University, Beijing 100084, China.
Life Quality Engineering Interest Group, School of Chemical and Environmental Engineering, College of Chemistry, Chemical Engineering, and Materials Science, Soochow University, Suzhou, Jiangsu Province 215152, China.
ACS Appl Mater Interfaces. 2024 Dec 11;16(49):68348-68357. doi: 10.1021/acsami.4c15064. Epub 2024 Nov 27.
To address the concurrent needs of the personal care industry for simultaneous protection of active ingredients and enhancement of product functionality, this study employs a microfluidic technique to fabricate EstoGel M-based oleogel microcapsules capable of coencapsulating both hydrophilic and hydrophobic actives. The oleogels exhibit gel-like characteristics with a melting point of approximately 70 °C, ensuring high encapsulation efficiency for hydrophilic and hydrophobic actives within aqueous environments. The oleogel microspheres encapsulating hydrophobic actives are prepared using microfluidic technology with robust elasticity, which can be ruptured by a force of less than 15 mN, contributing to a favorable tactile sensation upon application. The structural integrity of these microspheres is preserved within a temperature range up to 70 °C, indicating their thermodynamic stability. In addition, oleogel microcapsules are prepared using microfluidic technology, and their effectiveness in coencapsulating hydrophilic and hydrophobic active ingredients is successfully demonstrated, along with excellent skin feel and temperature stability. The exceptional tactile properties of EstoGel M-based oleogel microcapsules offer a promising strategy for creating innovative personal care products that integrate high encapsulation efficiency with multifunctional attributes.
为满足个人护理行业同时保护活性成分和增强产品功能的需求,本研究采用微流控技术制备了基于EstoGel M的油凝胶微胶囊,该微胶囊能够同时包封亲水性和疏水性活性成分。这些油凝胶具有类似凝胶的特性,熔点约为70°C,确保在水性环境中对亲水性和疏水性活性成分具有高包封效率。采用微流控技术制备的包封疏水性活性成分的油凝胶微球具有强大的弹性,施加小于15 mN的力即可使其破裂,有助于在使用时产生良好的触感。这些微球的结构完整性在高达70°C的温度范围内得以保持,表明其具有热稳定性。此外,利用微流控技术制备了油凝胶微胶囊,并成功证明了其在同时包封亲水性和疏水性活性成分方面的有效性,以及出色的肤感和温度稳定性。基于EstoGel M的油凝胶微胶囊卓越的触感特性为创造将高包封效率与多功能属性相结合的创新个人护理产品提供了一种有前景的策略。