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基于天然的微粒作为高内相比Pickering乳液的唯一稳定剂

Natural-Based Microparticles as Sole Stabilizers of High Internal Phase Pickering Emulsions.

作者信息

Cafiero Marie, Maillard Marie-Noëlle, Maniguet Sabrina, de La Poterie Valérie, Huc-Mathis Delphine

机构信息

AgroParisTech, UMR SayFood, Paris-Saclay University, Palaiseau 91123, France.

INRAE, Palaiseau 91120, France.

出版信息

ACS Omega. 2025 Jan 30;10(5):4534-4547. doi: 10.1021/acsomega.4c08147. eCollection 2025 Feb 11.

Abstract

Designing a water-reduced emulsion is a technical approach to creating more sustainable cosmetic products and reducing the strain on global water resources. This study explores the structuration of highly concentrated O/W emulsions solely stabilized by particles, also known as "high internal phase Pickering emulsions" (HIPPEs). It focuses especially on particles from natural origins with a micrometric scale instead of the highly modified nanometric ones commonly used (which may raise health issues). Highly concentrated O/W emulsions were formulated with different lipid phases (regarding the chemical nature and polarity) of up to 80%. A comprehensive array of particle natural sources (plant, mineral, etc.), micrometric sizes (from 3 to 45 μm), and geometries were screened. Parameters such as droplet size distribution, microstructure, relative stability (backscatter level changes), and pH were systematically monitored over 2 weeks. An experimental design approach was carried out on three particles to determine their stability domains in various formulation combinations, dissecting complex parameter interactions that pilot emulsion characteristics. Micrometric particles demonstrated excellent efficacy in structuring HIPPEs. A wide spectrum of systems can be engineered, exhibiting a wide range of microstructures (droplets ranging from micrometers to several millimeters), stabilities, and intrinsic properties (with pH values extending from approximately 6 to 10). Emulsions displaying resistance to coalescence in W/O systems were also successfully formulated by using hydrophobic natural particles. Waterless emulsions (less than 20% (w/w) water) stabilized exclusively with naturally derived microparticles represent promising architectures for designing future clean-label cosmetic prototypes. By meticulously selecting particle parameters, including their chemical composition, size, or origin, we can tailor the architecture of HIPPEs to obtain the targeted characteristics and functionalities. Beyond particle constituents, other ingredients influence the structural arrangement such as the lipid phase chemistry.

摘要

设计低水乳液是一种技术手段,旨在创造更具可持续性的化妆品,并减轻全球水资源的压力。本研究探索了仅由颗粒稳定的高浓缩水包油乳液的结构化,即所谓的“高内相比皮克林乳液”(HIPPEs)。它特别关注微米级天然来源的颗粒,而非常用的经过高度改性的纳米级颗粒(后者可能引发健康问题)。用高达80%的不同脂质相(考虑化学性质和极性)配制了高浓缩水包油乳液。筛选了一系列广泛的颗粒天然来源(植物、矿物等)、微米尺寸(3至45μm)和几何形状。在两周内系统监测了诸如液滴尺寸分布、微观结构、相对稳定性(背散射水平变化)和pH值等参数。对三种颗粒采用实验设计方法,以确定它们在各种配方组合中的稳定域,剖析控制乳液特性的复杂参数相互作用。微米级颗粒在构建HIPPEs方面表现出优异的效果。可以设计出各种各样的体系,呈现出广泛的微观结构(液滴范围从微米到几毫米)以及稳定性和固有特性(pH值范围约为6至10)。通过使用疏水性天然颗粒,还成功配制出了在油包水体系中具有抗聚结性的乳液。仅用天然衍生的微粒稳定的无水乳液(水含量低于20%(w/w))代表了设计未来清洁标签化妆品原型的有前景的架构。通过精心选择颗粒参数,包括其化学成分、尺寸或来源,我们可以定制HIPPEs的架构,以获得目标特性和功能。除了颗粒成分外,其他成分如脂质相化学也会影响结构排列。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b7fc/11822706/276f451dd7db/ao4c08147_0001.jpg

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