An Effective Method to Prepare Curcumin-Loaded Soy Protein Isolate Nanoparticles Co-Stabilized by Carrageenan and Fucoidan

Author:

Chen Yaxin12ORCID,Cai Shuyun23,He Niaoniao2,Huang Xiaomei4,Hong Zhuan2,He Jianlin2ORCID,Chen Hui2ORCID,Zhang Yiping234

Affiliation:

1. School of Chemical Engineering, Huaqiao University, Xiamen 361021, China

2. Technical Innovation Center for Utilization of Marine Biological Resources, Third Institute of Oceanography, Ministry of Natural Resources, Xiamen 361005, China

3. College of Pharmacy, Fujian University of Traditional Chinese Medicine, Fuzhou 350122, China

4. School of Marine Biology, Xiamen Ocean Vocational College, Xiamen 361005, China

Abstract

In this study, a novel and simple strategy is proposed based on 3D network formed by easily blending polysaccharide carrageenan (Car) and fucoidan (Fuc) without a crosslinker. The Fuc/Car dual coating effectively assists the self-assembly of soy protein-isolated (SPI)/curcumin (Cur, C) composite microcapsules (SPI/C) and achieves an excellent curcumin encapsulation efficiency (EE) up to 95.28% with a 4.16% loading capacity (LC) under optimal conditions. The resulting nanocomposites achieved a satisfying redispersibility in aqueous solution and enhanced the water solubility with a lower size dispersity index (PDI) of 0.12 and a larger zeta potential of −29.67 mV. The Fuc/Car double-layer network not only dramatically improved its thermal stability and photostability, but also provided controlled release and enhanced antioxidant activity in in vitro conditions. The underlying mechanism of the self-assembly of the curcumin-loaded nanoparticles was also addressed. The results proved the feasibility of the encapsulation of unstable hydrophobic bioactive substances (curcumin) with the dual anionic polysaccharide Fuc/Car co-stabilized SPI nanoparticles. This study paves the way for an alternative way of developing novel curcumin delivery systems and will have broad prospects in the pharmaceutical industries.

Funder

Fujian Science and Technology Planning Project

Fujian Provincial Marine Economic Development Special Fund Project

Technology Innovation Centre for Exploitation of Marine Biological Resources, MNR

Xiamen Marine and Fishery Development Special Fund

Publisher

MDPI AG

Reference38 articles.

1. Binding, Stability, and Antioxidant Activity of Curcumin with Self-Assembled Casein–Dextran Conjugate Micelles;Wu;Int. J. Food Prop.,2017

2. Curcumin: A Pleiotropic Phytonutrient in Diabetic Complications;Jeenger;Nutrition,2015

3. An Overview of Structure–Activity Relationship Studies of Curcumin Analogs as Antioxidant and Anti-Inflammatory Agents;Arshad;Future Med. Chem.,2017

4. Antitumor Effect of Curcumin Liposome after Transcatheter Arterial Embolization in VX2 Rabbits;Zhang;Cancer Biol. Ther.,2019

5. Antibacterial Activity of Curcumin and Solubility-Enhanced Curcumin in Microemulsion: A Comparative Study;Khalid;Lat. Am. J. Pharm.,2018

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