Literature DB >> 32264478

An injectable hydrogel formed by in situ cross-linking of glycol chitosan and multi-benzaldehyde functionalized PEG analogues for cartilage tissue engineering.

Luping Cao1, Bin Cao, Chengjiao Lu, Guowei Wang, Lin Yu, Jiandong Ding.   

Abstract

In this study, a multi-benzaldehyde functionalized poly(ethylene glycol) analogue, poly(ethylene oxide-co-glycidol)-CHO (poly(EO-co-Gly)-CHO), was designed and synthesized for the first time, and was applied as a cross-linker to develop an injectable hydrogel system. Simply mixing two aqueous precursor solutions of glycol chitosan (GC) and poly(EO-co-Gly)-CHO led to the formation of chemically cross-linked hydrogels under physiological conditions in situ. The cross-linking was attributed to a Schiff's base reaction between amino groups of GC and aldehyde groups of poly(EO-co-Gly)-CHO. The gelation time, water uptake, mechanical properties and network morphology of the GC/poly(EO-co-Gly) hydrogels were well modulated by varying the concentration of poly(EO-co-Gly)-CHO. Degradation of the in situ formed hydrogels was confirmed both in vitro and in vivo. The integrity of the GC/poly(EO-co-Gly) hydrogels was subcutaneously maintained for up to 12 weeks in ICR mice. The feasibility of encapsulating chondrocytes in the GC/poly(EO-co-Gly) hydrogels was assessed. Live/Dead staining assay demonstrated that the chondrocytes were highly viable in the hydrogels, and no dedifferentiation of chondrocytes was observed after 2 weeks of in vitro culture. Cell counting kit-8 assay gave evidence of the remarkably sustained proliferation of the encapsulated chondrocytes. Maintenance of the chondrocyte phenotype was also confirmed with an examination of characteristic gene expression. These features suggest that GC/poly(EO-co-Gly) hydrogels hold potential as an artificial extracellular matrix for cartilage tissue engineering.

Entities:  

Year:  2014        PMID: 32264478     DOI: 10.1039/c4tb01705f

Source DB:  PubMed          Journal:  J Mater Chem B        ISSN: 2050-750X            Impact factor:   6.331


  12 in total

1.  Conductive Supramolecular Polymer Nanocomposites with Tunable Properties to Manipulate Cell Growth and Functions.

Authors:  Cheng-You Wu; Ashenafi Zeleke Melaku; Fasih Bintang Ilhami; Chih-Wei Chiu; Chih-Chia Cheng
Journal:  Int J Mol Sci       Date:  2022-04-14       Impact factor: 6.208

2.  Injectable Catalyst-Free Poly(Propylene Fumarate) System Cross-Linked by Strain Promoted Alkyne-Azide Cycloaddition Click Chemistry for Spine Defect Filling.

Authors:  Xifeng Liu; A Lee Miller; Hao Xu; Brian E Waletzki; Lichun Lu
Journal:  Biomacromolecules       Date:  2019-08-22       Impact factor: 6.988

3.  Fabrication of Injectable, Porous Hyaluronic Acid Hydrogel Based on an In-Situ Bubble-Forming Hydrogel Entrapment Process.

Authors:  Lixuan Wang; Shiyan Dong; Yutong Liu; Yifan Ma; Jingjing Zhang; Zhaogang Yang; Wen Jiang; Yuan Yuan
Journal:  Polymers (Basel)       Date:  2020-05-16       Impact factor: 4.329

Review 4.  Inflammation-Modulating Hydrogels for Osteoarthritis Cartilage Tissue Engineering.

Authors:  Rachel H Koh; Yinji Jin; Jisoo Kim; Nathaniel S Hwang
Journal:  Cells       Date:  2020-02-12       Impact factor: 6.600

5.  Recombinant Human Bone Morphogenic Protein-2 Immobilized Fabrication of Magnesium Functionalized Injectable Hydrogels for Controlled-Delivery and Osteogenic Differentiation of Rat Bone Marrow-Derived Mesenchymal Stem Cells in Femoral Head Necrosis Repair.

Authors:  Xueliang Lu; Hongyu Guo; Jiaju Li; Tianyu Sun; Mingyue Xiong
Journal:  Front Cell Dev Biol       Date:  2021-11-25

6.  A pH-/thermo-responsive hydrogel formed from N,N'-dibenzoyl-l-cystine: properties, self-assembly structure and release behavior of SA.

Authors:  Jinlian Zhong; Hongyu Fu; Xinjian Jia; Haoxiang Lou; Tiantian Wan; Haiqing Luo; Huijin Liu; Dichang Zhong; Xuzhong Luo
Journal:  RSC Adv       Date:  2019-04-16       Impact factor: 4.036

7.  Injectable catalyst-free "click" organic-inorganic nanohybrid (click-ON) cement for minimally invasive in vivo bone repair.

Authors:  Xifeng Liu; Emily T Camilleri; Linli Li; Bipin Gaihre; Asghar Rezaei; Sungjo Park; A Lee Miller Ii; Maryam Tilton; Brian E Waletzki; Andre Terzic; Benjamin D Elder; Michael J Yaszemski; Lichun Lu
Journal:  Biomaterials       Date:  2021-07-06       Impact factor: 15.304

Review 8.  Exquisite design of injectable Hydrogels in Cartilage Repair.

Authors:  Jiawei Wu; Qi Chen; Chao Deng; Baoping Xu; Zeiyan Zhang; Yang Yang; Tingli Lu
Journal:  Theranostics       Date:  2020-08-02       Impact factor: 11.556

Review 9.  Stereocomplex Polylactide for Drug Delivery and Biomedical Applications: A Review.

Authors:  Seung Hyuk Im; Dam Hyeok Im; Su Jeong Park; Justin Jihong Chung; Youngmee Jung; Soo Hyun Kim
Journal:  Molecules       Date:  2021-05-11       Impact factor: 4.411

Review 10.  Polymeric Hydrogels for Controlled Drug Delivery to Treat Arthritis.

Authors:  Anuradha Gupta; Jungmi Lee; Torsha Ghosh; Van Quy Nguyen; Anup Dey; Been Yoon; Wooram Um; Jae Hyung Park
Journal:  Pharmaceutics       Date:  2022-02-28       Impact factor: 6.321

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