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由聚合物-纳米颗粒制成的桥连乳液凝胶可实现大量生物医学封装和功能化。

Bridged emulsion gels from polymer-nanoparticle enabling large-amount biomedical encapsulation and functionalization.

作者信息

Wan Chuchu, He Si, Cheng Quanyong, Du Kehan, Song Yuhang, Yu Xiang, Jiang Hao, Huang Caili, Xu Jiangping, Ma Cong, Zhu Jintao

机构信息

Key Laboratory of Materials Chemistry for Energy Conversion and Storage of Ministry of Education (HUST), School of Chemistry and Chemical Engineering, Huazhong University of Science and Technology (HUST), Wuhan, 430074, China.

Key Laboratory of Molecular Biophysics of the Ministry of Education (HUST), College of Life Science and Technology, Huazhong University of Science and Technology (HUST), Wuhan, 430074, China.

出版信息

Nat Commun. 2024 Dec 30;15(1):10789. doi: 10.1038/s41467-024-55099-9.

Abstract

Large-amount encapsulation and subsequent expressing are common characteristics for many biomedical applications, such as cosmetic creams and medical ointments. Emulsion gels can accomplish that, but often undergo exclusive, complex, multiple synthesis steps, showing extremely laborious and non-universal. The method here is simple via precisely interfacial engineering in homogenizing a nanoparticle aqueous dispersion and a polymer oil solution, gaining interfacial 45° three-phase-contact-angle for the nanoparticle that can bridge across oil emulsions' interfaces and ultimately form interconnected macroscopic networks. Their bridged skeletons and rheology are tunable over a vast range and deterministic on the basis of components' inputs. Furthermore, emulsion gels with high encapsulation and storage ability encapsulating active sunscreen ingredients, as a proof-of-concept, outperform commercial products. The ease (only seconds by strongly mixing two solutions) and the versatile chemical selection of our synthetic emulsion gels suggest an exciting general, scalable strategy for the next-generation cosmetic, ointment or otherwise food gel systems.

摘要

大量包封及后续表达是许多生物医学应用的共同特征,如美容霜和医用软膏。乳液凝胶可以实现这一点,但通常需要经过独特、复杂、多步的合成步骤,显得极为繁琐且不通用。这里的方法很简单,通过在纳米颗粒水分散体和聚合物油溶液均化过程中进行精确的界面工程,使纳米颗粒获得45°的界面三相接触角,该纳米颗粒能够跨越油乳液的界面,最终形成相互连接的宏观网络。它们的桥接骨架和流变学在很大范围内可调,并且基于组分的输入是可确定的。此外,作为概念验证,具有高包封和储存能力的乳液凝胶包封活性防晒成分,性能优于市售产品。我们合成乳液凝胶的简便性(通过强烈混合两种溶液只需几秒钟)和多样的化学选择为下一代化妆品、软膏或其他食品凝胶系统提供了一种令人兴奋的通用、可扩展策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2687/11685963/ebffc0e8f301/41467_2024_55099_Fig1_HTML.jpg

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