Journal Article10.1016/J.CARRES.2015.09.013
Novel water-soluble fisetin/cyclodextrins inclusion complexes: Preparation, characterization, molecular docking and bioavailability.
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TL;DR: Results suggested that FIT/CDs complexes could be potentially useful in food industry and healthcare area and displayed almost two times higher cytotoxicity compared to free FIT against Hela and MCF-7 cells.
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About: This article is published in Carbohydrate Research. The article was published on 11 Dec 2015.
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Citations
Nanoencapsulation of hydrophobic and low-soluble food bioactive compounds within different nanocarriers
TL;DR: In this review, several nanoencapsulation delivery systems for hydrophobic compounds, such as inclusion complexes through cyclodextrins, amylose, and yeast cells, nanogels, nanoemulsions, nanofibers, nanosponges, nanoliposomes, and nanoparticles made with lipids and biopolymers are discussed.
442
Improvement strategies for the oral bioavailability of poorly water-soluble flavonoids: An overview.
Juanjuan Zhao,Jun Yang,Yan Xie +2 more
TL;DR: This review comprehensively summarizes the viable oral delivery systems for insoluble Flavonoids to date and discusses their design principles, potential advantages, possible limitations, and oral delivery efficiency, which will provide some useful clues and references to overcome the absorption barrier of these insoluble flavonoids.
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New Perspectives for Fisetin.
TL;DR: Methods for the preparation and suitability for pharmaceutical use of fisetin are discussed herein.
Cyclodextrins as carriers for volatile aroma compounds: A review.
TL;DR: The review aims to provide guidance for relevant practitioners in selecting appropriate CD materials and characterisation methods and to apply the application of CD-based nanosystems in different industries.
89
Application of cyclodextrin in food industry.
TL;DR: The formation mechanism, classification and properties of cyclodextrin inclusion complex were reviewed, and the applications of cyclodesxtrin and its derivatives in food industry were discussed.
77
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TL;DR: This paper presents a method for quantifying theSolubility of Binding Constants using Optical Absorption Spectroscopy and Magnetic Resonance spectroscopy, and its applications in medicine and materials science.
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