Literature DB >> 35217083

A dual functional chondro-inductive chitosan thermogel with high shear modulus and sustained drug release for cartilage tissue engineering.

Dorsa Dehghan-Baniani1, Babak Mehrjou2, Dong Wang3, Reza Bagheri4, Atefeh Solouk5, Paul K Chu2, Hongkai Wu6.   

Abstract

We report a chitosan-based nanocomposite thermogel with superior shear modulus resembling that of cartilage and dual pro-chondrogenic and anti-inflammatory functions. Two therapeutic agents, kartogenin (KGN) and diclofenac sodium (DS), are employed to promote chondrogenesis of stem cells and suppress inflammation, respectively. To extend the release time in a controlled manner, KGN is encapsulated in the uniform-sized starch microspheres and DS is loaded into the halloysite nanotubes. Both drug carriers are doped into the maleimide-modified chitosan hydrogel to produce a shear modulus of 167 ± 5 kPa that is comparable to that of articular cartilage (50-250 kPa). Owing to the hydrogel injectability and relatively suitable gelation time (5 ± 0.5 min) at 37 °C, this system potentially constitutes a manageable platform for clinical practice. Moreover, sustained linear drug release for over a month boosts chondro-differentiation of stem cells to eliminate the necessity for multiple administrations. Considering virtues such as thermogel strength and ability to co-deliver anti-inflammatory and chondro-inductive biomolecules continuously, the materials and strategy have promising potential in functional cartilage tissue engineering.
Copyright © 2022 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Cartilage tissue engineering; Chitosan hydrogel; Kartogenin; Starch microspheres

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Year:  2022        PMID: 35217083     DOI: 10.1016/j.ijbiomac.2022.02.115

Source DB:  PubMed          Journal:  Int J Biol Macromol        ISSN: 0141-8130            Impact factor:   6.953


  1 in total

1.  Construction of Biocompatible Hydrogel Scaffolds With a Long-Term Drug Release for Facilitating Cartilage Repair.

Authors:  Wei Zhang; Rui Chen; Xiong Xu; Liang Zhu; Yanbin Liu; XiaoJie Yu; GuoKe Tang
Journal:  Front Pharmacol       Date:  2022-06-16       Impact factor: 5.988

  1 in total

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