Pham Anna C, Clulow Andrew J, Boyd Ben J
Drug Delivery, Disposition and Dynamics, Monash Institute of Pharmaceutical Sciences, Parkville, VIC, Australia.
ARC Centre of Excellence in Convergent Bio-Nano Science and Technology, Monash Institute of Pharmaceutical Sciences, Parkville, VIC, Australia.
Front Cell Dev Biol. 2021 Jun 11;9:657886. doi: 10.3389/fcell.2021.657886. eCollection 2021.
Lipids play an important role in regulating bodily functions and providing a source of energy. Lipids enter the body primarily in the form of triglycerides in our diet. The gastrointestinal digestion of certain types of lipids has been shown to promote the self-assembly of lipid digestion products into highly ordered colloidal structures. The formation of these ordered colloidal structures, which often possess well-recognized liquid crystalline morphologies (or "mesophases"), is currently understood to impact the way nutrients are transported in the gut and absorbed. The formation of these liquid crystalline structures has also been of interest within the field of drug delivery, as it enables the encapsulation or solubilization of poorly water-soluble drugs in the aqueous environment of the gut enabling a means of absorption. This review summarizes the evidence for structure formation during the digestion of different lipid systems associated with foods, the techniques used to characterize them and provides areas of focus for advancing our understanding of this emerging field.
脂质在调节身体机能和提供能量来源方面发挥着重要作用。脂质主要以饮食中甘油三酯的形式进入人体。已表明某些类型脂质的胃肠消化会促进脂质消化产物自组装成高度有序的胶体结构。这些有序胶体结构的形成,通常具有公认的液晶形态(或“中间相”),目前认为会影响营养物质在肠道中的运输和吸收方式。这些液晶结构的形成在药物递送领域也备受关注,因为它能使难溶性药物在肠道水性环境中被包裹或增溶,从而实现一种吸收方式。本综述总结了与食物相关的不同脂质系统消化过程中结构形成的证据、用于表征它们的技术,并为推进我们对这一新兴领域的理解提供了重点关注领域。