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Updated: May 1, 2026

Facile Preparation of Internally Self-assembled Lipid Particles Stabilized by Carbon Nanotubes
Published on: February 19, 2016
Fabrication of food-grade lipid nanodisc-based delivery systems: Structural characterization and self-assembly
Ao Huang1, David Julian McClements2, Xiuting Hu1
1State Key Laboratory of Food Science and Resources, Nanchang University, Nanchang, Jiangxi 330047, China.
Abstract:
This study prepares food-grade nanodiscs using Tween 80 and lecithin. Initially, the formation process of the nanodiscs was observed, starting with the transformation of the hollow vesicle structure of lecithin into a notched vesicle structure, followed by the development of solid core nanodiscs, and ultimately into a cylindrical structure. The results from ITC indicated that hydrophobic interaction was the primary driving force behind the self-assembly of the nanodiscs with the binding ratio of lecithin to Tween 80 being 10:1. Owing to curvature effects, lecithin self-assembled into planar regions, while Tween 80 self-assembled into the edge regions. In comparison to hydrated liposomes, nanodiscs exhibited a smaller size, along with significant changes in molecular ordering, surface hydrophobicity, and microenvironment polarity of the phospholipid bilayers. Additionally, nanodiscs demonstrated superior encapsulation properties. This study elucidated the self-assembly process and structure of nanodiscs using food-grade ingredients, emphasizing their potential as delivery systems for food applications.

