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  4. Carbamoylated chitosan hydrogels with improved viscoelastic properties and stability for potential 3D cell culture applications
 
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Carbamoylated chitosan hydrogels with improved viscoelastic properties and stability for potential 3D cell culture applications

Source
Biomedical Materials Bristol
ISSN
17486041
Date Issued
2021-07-01
Author(s)
Marapureddy, Sai Geetha
Hivare, Pravin
Kumar, Siddhant
Gupta, Sharad  
Thareja, Prachi  
DOI
10.1088/1748-605X/abf88c
Volume
16
Issue
4
Abstract
We demonstrate a benign and straightforward method to modify the chitosan (CH) by carbamoylation. The free amines on CH are converted into carbamyl functionalities by reacting with potassium cyanate (KCNO). One wt% CH solution, when reacted with KCNO ≥ 0.1 M, leads to the sol–gel transition of CH through the hydrogen bonding to form carbamoylated chitosan (CCH) hydrogel. Gelation time of CCH decreases with an increase in the KCNO concentration and an interconnected porous network is formed as observed under SEM. Rheological studies show that while one wt% CH solution is a viscous liquid, the CCH hydrogel with 0.5 M KCNO has a storage modulus (G<sup>′</sup>) of 10<sup>4</sup> Pa. The CCH hydrogel is proved to be non-cytotoxic and promotes the attachment and growth of the small lung cancer model A549, and the neuroblastoma SH-SY5Y cell lines. CCH hydrogel also promotes the differentiation of SH-SY5Y cells into neuronal cells, as supported by immunostaining and thus demonstrating its utility as a versatile scaffold for three-dimensional cell-culture systems.
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URI
http://repository.iitgn.ac.in/handle/IITG2025/25371
Subjects
3D cell culture | Carbamoylation | Chitosan hydrogels | Rheology
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