Shiraz Pharmaceutical Products Technology Incubator, Shiraz University of Medical Sciences, Shiraz, Iran.
Department of Food Chemistry, Research Institute of Food Science and Technology (RIFST), Mashhad, Iran.
Adv Colloid Interface Sci. 2024 Jun;328:103174. doi: 10.1016/j.cis.2024.103174. Epub 2024 May 8.
The most common carrier for encapsulation of bioactive components is still simple emulsion. Recently, bio-based novel emulsion systems such as multiple emulsions (MEs) and Pickering emulsions (PEs) have been introduced as innovative colloidal delivery systems for encapsulation and controlled release of bioactive compounds. Multiple PEs (MPEs), which carries both benefit of MEs and PEs could be fabricated by relatively scalable and simple operations. In comparison with costly synthetic surfactants and inorganic particles which are widely used for stabilization of both MEs and PEs, MPEs stabilized by food-grade particles, while having health-promoting aspects, are able to host the "clean label" and "green label" attributes. Nevertheless, in achieving qualified techno-functional attributes and encapsulation properties, the selection of suitable materials is a crucial step in the construction of such complex systems. Current review takes a cue from both MEs and PEs emulsification techniques to grant a robust background for designing various MPEs. Herein, various fabrication methods of MEs and PEs are described comprehensively in a physical viewpoint in order to find key conception of successful formulation of MPEs. This review also highlights the link between the underlying aspects and exemplified specimens of evidence which grant insights into the rational design of MPEs through food-based ingredients to introduces MPEs as novel colloidal/functional materials. Their utilization for encapsulation of bioactive compounds is discussed as well. In the last part, instability behavior of MPEs under various conditions will be discussed. In sum, this review aims to gain researchers who work with food-based components, basics of innovative design of MPEs.
最常见的生物活性成分包封载体仍然是简单乳液。最近,基于生物的新型乳液体系,如复乳(MEs)和 Pickering 乳液(PEs)已被引入作为生物活性化合物包封和控制释放的创新胶体递送系统。多重 PEs(MPEs)结合了 MEs 和 PEs 的优点,可以通过相对可扩展和简单的操作来制造。与广泛用于稳定 MEs 和 PEs 的昂贵合成表面活性剂和无机颗粒相比,由食品级颗粒稳定的 MPEs 具有促进健康的方面,能够承载“清洁标签”和“绿色标签”属性。然而,在实现合格的技术功能属性和封装性能方面,选择合适的材料是构建此类复杂体系的关键步骤。本综述从 MEs 和 PEs 的乳化技术中得到启示,为设计各种 MPEs 提供了坚实的背景。本文从物理角度全面描述了 MEs 和 PEs 的各种制备方法,以便找到成功制备 MPEs 的关键概念。本综述还强调了潜在方面之间的联系,并举例说明了证据,通过基于食品的成分深入了解 MPEs 的合理设计,将 MPEs 介绍为新型胶体/功能材料。还讨论了它们在生物活性化合物封装中的应用。最后一部分将讨论 MPEs 在各种条件下的不稳定性行为。总之,本综述旨在为从事基于食品的成分研究的研究人员提供基础知识,以及创新设计 MPEs 的基础知识。