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In-vitro digestion of curcumin loaded chitosan-coated liposomes

姜黄素 脂质体 壳聚糖 分散性 化学 表面电荷 生物利用度 Zeta电位 色谱法 阳离子聚合 化学工程 材料科学 有机化学 纳米技术 生物化学 纳米颗粒 药理学 物理化学 工程类 医学
作者
Francesca Cuomo,Martina Cofelice,Francesco Venditti,Andrea Ceglie,Maria G. Miguel,Björn Lindman,Francesco Lopez
出处
期刊:Colloids and Surfaces B: Biointerfaces [Elsevier BV]
卷期号:168: 29-34 被引量:117
标识
DOI:10.1016/j.colsurfb.2017.11.047
摘要

Liposomes are considered a major route for encapsulation of hydrophilic and hydrophobic molecules. Chitosan coated liposomes could represent an alternative way as a carrier for delivery of drugs in human body. In this study the preparation and applicability of chitosan-coated liposomes containing curcumin as well as curcumin loaded anionic liposomes were evaluated. The applicability of the carriers was tested by means of an in-vitro digestion procedure allowing for measurement of the bioaccessibility of ingested curcumin. Values of diameter, polydispersity index and surface charge for curcumin loaded anionic liposomes obtained through dynamic light scattering and ζ-potential measurements were 129nm, 0.095 and -49mV, respectively. After chitosan-coating, diameter and polydispersity index remain unvaried while the surface charge gets positive. Slightly higher curcumin concentrations were found after the mouth and the stomach digestion phases when curcumin was loaded in anionic liposomes. On the contrary, after the intestinal phase, a higher percentage of curcumin was found when chitosan-coated liposomes were used as carrier, both in the raw digesta and in the bile salt micellar phase. It was shown that the presence of a positively charged surface allows a better absorption of curcumin in the small intestine phase, which increases the overall curcumin bioavailability. The mechanism behind these results can be understood from the composition of the different environments generated by the digestive fluids that differently interact with anionic or cationic surfaces.
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