Preparation and Sustained-Release Property of Chitosan Maleate Hydrogel with pH Response

被引:0
作者
Li Y. [1 ]
Li X. [1 ]
Wang H. [1 ]
Chen S. [1 ]
Ding J. [1 ]
Liu C. [1 ]
机构
[1] Department of Chemistry and Chemical Engineering, Cangzhou Normal University, Cangzhou
关键词
chitosan maleate; hydrogel; pH responsiveness; sustained release; swelling;
D O I
10.13386/j.issn1002-0306.2022120149
中图分类号
学科分类号
摘要
Chitosan hydrogel (CS–Ma–Gel) was constructed by ionic crosslinking of maleic acid. Taking Amoxicillin (Am) as the model drug, the drug loaded hydrogel (Am/CS-Ma-Gel) was prepared. The structure and morphology of the hydrogels were characterized by FT-IR, UV-Vis, SEM and so on. The swelling property and drug sustained release behavior for the hydrogels were investigated in different pH media. The experiment results indicated that Am was uniformly dispersed in CS–Ma–Gel hydrogel network without phase separation. Both the swelling property and Am sustained release behavior for the hydrogels exhibited pH responsiveness. In pH 2.00, 4.00, 6.86 and 9.18 media, the swelling rates of CS-Ma-Gel were 800%, 2200%, 760% and 1300%, respectively. Cumulative drug release rates of Am/CS-Ma-Gel were 24.6%, 70.4%, 35.7% and 50.4% for 42 h, respectively. The swelling rate and drug cumulative release rate in acidic and alkaline media were higher than those in neutral media, and the drug release capacity was positively correlated with the swelling property. The preparation method of Am/CS–Ma–Gel is simple and green. Am/CS–Ma–Gel shows the characteristics of amphoteric ionic pH-responsive hydrogel. The research lays a theory and experiment foundation for the development of chitosan sustained release materials. © 2023 Science and Technology of Food Industry. All rights reserved.
引用
收藏
页码:250 / 256
页数:6
相关论文
共 33 条
[1]  
CHANG H, LI C X, HUANG R L, Et al., Amphiphilic hydrogels for biomedical applications[J], Journal of Materials Chemistry B, 7, 18, pp. 2899-2910, (2019)
[2]  
GUYOT C, CERRUTI M, LEROUGE S., Injectable, strong and bioadhesive catechol–chitosan hydrogels physically crosslinked using sodium bicarbonate[J], Materials Science & Engineering C–M aterials for Biological Applications, 118, 1, (2021)
[3]  
KARIMI A R, ROSTAMINEJAD B, RAHIMI L, Chitosan hydrogels cross –linked with tris (2-(2-formylphenoxy) ethyl) amine: swelling and drug delivery[J], International Journal of Biological Macromolecules, 118, pp. 1863-1870, (2018)
[4]  
SHARMA S, NANDAN G, ROHATGI P K, Et al., Recent advances in self –healing materials[J], Materials Today, 18, pp. 4729-4737, (2019)
[5]  
CAI Z X, ZHANG B, JIANG L Y, Et al., Intelligent responsive hydrogels based controlled drug release systems and its applications[J], Progress in Chemistry, 31, 12, pp. 1653-1668, (2019)
[6]  
DING F Y, LI H B, DU Y M, Et al., Recent advances in chitosan–based self–healing materials[J], Research on Chemical Intermediates, 44, 8, pp. 4827-4840, (2018)
[7]  
LI L, ZHANG P, LI C C, Et al., In vitro/vivo antitumor study of modified–chitosan/ carboxymethyl chitosan “boosted” charge-reversal nanoformulation[J], Carbohydrate Polymers, 269, (2021)
[8]  
LIANG X Y, ZHAO W C, ZHANG C, Et al., Effects of chitosan/EGCG@MNPs nanocomposite packaging on preservation of blueberries stored at low temperature and normal temperature[J], Science and Technology of Food Industry, 43, 24, pp. 268-279, (2022)
[9]  
HUANG C D, AI S, LIU C Y, Et al., Preparation and adsorption properties of chitosan/active claycomposite as sugar juice decolorization agent[J], Science and Technology of Food Industry, 43, 8, pp. 76-83, (2022)
[10]  
EL-MAHROUK G M, ABOUL-EINIEN M H, MAKHLOUF A I., Design, optimization, and evaluation of a novel metronidazole–loaded gastro –retentive pH –sensitive hydrogel[J], Aaps Pharmscitech, 17, 6, pp. 1285-1297, (2016)