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Research Article

A core-shell structured alginate hydrogel beads with tunable thickness of carboxymethyl cellulose coating for pH responsive drug delivery

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Pages 763-778 | Received 22 Oct 2020, Accepted 16 Dec 2020, Published online: 09 Feb 2021

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Yangyan Tang, Ximeng Sun, Jiangchuan Ma & Qishe Yan. (2023) Mussel-inspired self-healing hydrogel based on gelatin and oxidized tannic acid for pH-responsive controlled drug release. Journal of Biomaterials Science, Polymer Edition 34:13, pages 1771-1792.
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Bei Fu, ZhongXin Yang, Xing Li, WenQin Xu, GuangHua Pan, NanChun Chen, QingLin Xie & XiuLi Wang. (2023) Construction of pH-sensitive sodium alginates/sodium carboxymethyl cellulose/zeolite P composite hydrogel microspheres loaded with potassium diformate. Journal of Biomaterials Science, Polymer Edition 34:1, pages 89-107.
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Articles from other publishers (14)

Ashvinder K. Rana, Vijai Kumar Gupta, Phil Hart & Vijay Kumar Thakur. (2023) Cellulose-alginate hydrogels and their nanocomposites for water remediation and biomedical applications. Environmental Research, pages 117889.
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Brahim El Allaoui, Hanane Benzeid, Nadia Zari, Abou el kacem Qaiss & Rachid Bouhfid. (2023) Functional cellulose-based beads for drug delivery: Preparation, functionalization, and applications. Journal of Drug Delivery Science and Technology 88, pages 104899.
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Kai Chen, Yonghui Li, Youbin Li, Yinfeng Tan, Yingshuo Liu, Weisan Pan & Guoxin Tan. (2023) Stimuli-responsive electrospun nanofibers for drug delivery, cancer therapy, wound dressing, and tissue engineering. Journal of Nanobiotechnology 21:1.
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Long Chen, Zhongyu Yang, David Julian McClements, Zipei Zhang, Zhenlin Xu, Man Meng, Xinwen Peng & Zhengyu Jin. 2023. Bioactive Delivery Systems for Lipophilic Nutraceuticals. Bioactive Delivery Systems for Lipophilic Nutraceuticals 421 443 .
Ana R. Neves, Rúben Faria, Swati Biswas & Diana Costa. 2023. Plant Polysaccharides as Pharmaceutical Excipients. Plant Polysaccharides as Pharmaceutical Excipients 391 413 .
Deepa Thomas & M. S. Latha. 2023. Alginate Biomaterial. Alginate Biomaterial 61 83 .
Ali A. Altam, Liping Zhu, Dafaalla Babiker, Hajo Yagoub & Shuguang Yang. (2022) Loading and releasing behavior of carboxymethyl cellulose and chitosan complex beads. Progress in Natural Science: Materials International 32:6, pages 715-723.
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Eduardo M. Costa, Carla F. Pereira, Alessandra A. Ribeiro, Francisca Casanova, Ricardo Freixo, Manuela Pintado & Oscar L. Ramos. (2022) Characterization and Evaluation of Commercial Carboxymethyl Cellulose Potential as an Active Ingredient for Cosmetics. Applied Sciences 12:13, pages 6560.
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Katarina S. Postolović, Milan D. Antonijević, Biljana Ljujić, Marina Miletić Kovačević, Marina Gazdić Janković & Zorka D. Stanić. (2022) pH-Responsive Hydrogel Beads Based on Alginate, κ-Carrageenan and Poloxamer for Enhanced Curcumin, Natural Bioactive Compound, Encapsulation and Controlled Release Efficiency. Molecules 27:13, pages 4045.
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Aleksandra Zielińska, Piotr Eder, Lucas Rannier, Juliana C. Cardoso, Patrícia Severino, Amélia M. Silva & Eliana B. Souto. (2022) Hydrogels for Modified-release Drug Delivery Systems. Current Pharmaceutical Design 28:8, pages 609-618.
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Zhongyu Yang, Long Chen, David Julian McClements, Chao Qiu, Cuicui Li, Zipei Zhang, Ming Miao, Yaoqi Tian, Kunfu Zhu & Zhengyu Jin. (2022) Stimulus-responsive hydrogels in food science: A review. Food Hydrocolloids 124, pages 107218.
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Kanchan Bharti & Brahmeshwar Mishra. 2022. Functional Biomaterials. Functional Biomaterials 37 74 .
Chung-Kai Sun, Cherng-Jyh Ke, Yi-Wen Lin, Feng-Huei Lin, Tung-Hu Tsai & Jui-Sheng Sun. (2021) Transglutaminase Cross-Linked Gelatin-Alginate-Antibacterial Hydrogel as the Drug Delivery-Coatings for Implant-Related Infections. Polymers 13:3, pages 414.
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Ting Lu, Ximeng Sun, Yangyan Tang, Huiqing Zhang & Jiangchuan Ma. (2021) pH-Responsive Full-Interpenetrating Polymer Network Hydrogel Beads Based on Alginate and Casein for Controlled Drug Release. SSRN Electronic Journal.
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