Literature DB >> 25198516

Grafting of gallic acid onto chitosan enhances antioxidant activities and alters rheological properties of the copolymer.

Minhao Xie1, Bing Hu, Yan Wang, Xiaoxiong Zeng.   

Abstract

A new, simple, and effective method to graft gallic acid (GA) onto chitosan (CS) in aqueous solution in the presence of carbodiimide and hydroxybenzotriazole was developed. The grafting amount of GA reached as much as 209.9 mg/g of copolymer, which appears as the highest one among the reported literature, and the grafting degree of GA to CS was adjustable with modulation of the mass ratio of GA to CS. The covalent insertion of GA onto the polymeric backbones was confirmed by UV-vis and (1)H NMR analyses. Grafting endowed the resulting copolymer GA-grafted-CS (GA-g-CS) with both the advantages of CS and GA. The antioxidant capacity of GA-g-CS was much higher than that of the plain CS examined by assays of DPPH, superoxide, and ABTS radicals scavenging activities, reducing power, chelating power, inhibition of lipid peroxidation, ferric reducing antioxidant potential, and β-carotene-linoleic acid assays. Particularly, GA-g-CS showed significantly higher antioxidant activity than GA in β-carotene-linoleic acid assay. Furthermore, the viscosity of GA-g-CS was significantly higher than that of CS. The present study developed a novel approach to synthesize GA-g-CS that could be a potential biomaterial in food industries.

Entities:  

Keywords:  antioxidant; chitosan; gallic acid; grafting; rheological property

Mesh:

Substances:

Year:  2014        PMID: 25198516     DOI: 10.1021/jf503207s

Source DB:  PubMed          Journal:  J Agric Food Chem        ISSN: 0021-8561            Impact factor:   5.279


  23 in total

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Review 3.  Nutraceuticals' Novel Formulations: The Good, the Bad, the Unknown and Patents Involved.

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4.  Quercetin-grafted chitosan prepared by free radical grafting: characterization and evaluation of antioxidant and antibacterial properties.

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5.  Methotrexate-induced toxic effects and the ameliorating effects of astaxanthin on genitourinary tissues in a female rat model.

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6.  Sardine oil loaded vanillic acid grafted chitosan microparticles, a new functional food ingredient: attenuates myocardial oxidative stress and apoptosis in cardiomyoblast cell lines (H9c2).

Authors:  K V Vishnu; K K Ajeesh Kumar; Niladri S Chatterjee; R G K Lekshmi; P R Sreerekha; Suseela Mathew; C N Ravishankar
Journal:  Cell Stress Chaperones       Date:  2017-08-02       Impact factor: 3.667

7.  Characterization of Epigallocatechin-Gallate-Grafted Chitosan Nanoparticles and Evaluation of Their Antibacterial and Antioxidant Potential.

Authors:  María J Moreno-Vásquez; Maribel Plascencia-Jatomea; Saúl Sánchez-Valdes; Judith C Tanori-Córdova; Francisco J Castillo-Yañez; Idania E Quintero-Reyes; Abril Z Graciano-Verdugo
Journal:  Polymers (Basel)       Date:  2021-04-23       Impact factor: 4.329

8.  Preparation of ferulic acid-grafted chitosan using recombinant bacterial laccase and its application in mango preservation.

Authors:  Jie Yang; Jianna Sun; Xiujuan An; Meixia Zheng; Zhaoxin Lu; Fengxia Lu; Chong Zhang
Journal:  RSC Adv       Date:  2018-02-12       Impact factor: 3.361

9.  Effect of drying procedures on the physicochemical properties and antioxidant activities of polysaccharides from Crassostrea gigas.

Authors:  Sijie Hu; Guanhua Zhao; Yaxu Zheng; Min Qu; Qiao Jin; Changqing Tong; Wei Li
Journal:  PLoS One       Date:  2017-11-27       Impact factor: 3.240

10.  The Effect of the Molecular Architecture on the Antioxidant Properties of Chitosan Gallate.

Authors:  Chunhua Wu; Liping Wang; Zhongxiang Fang; Yaqin Hu; Shiguo Chen; Tatsuya Sugawara; Xingqian Ye
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