Literature DB >> 31180391

In situ bone regeneration enabled by a biodegradable hybrid double-network hydrogel.

Yuanhao Zhang1, Mingjiao Chen2, Jia Tian1, Ping Gu2, Hongliang Cao1, Xianqun Fan2, Weian Zhang1.   

Abstract

Stem cell therapy based on advanced biomaterials provides a promising strategy in bone tissue engineering. Nevertheless, guided bone regeneration which fulfills the criteria in terms of biomechanics, biodegradability and bioactivity is highly appealing but challenging. Inspired by the superior double-network (DN) structure, herein, a biodegradable hybrid DN hydrogel is proposed to promote in situ bone regeneration. The DN hydrogel is constructed by interspersing a methacrylated gelatin (GelMA) network into a well-defined nanocomposite (NC) hydrogel consisting of methacrylated chitosan (CSMA) and polyhedral oligomeric silsesquioxane (POSS) via a two-step photo-crosslinking process. The hybrid DN hydrogel has the following advantageous characteristics: (i) it exhibits enhanced stiffness and toughness benefiting from the inorganic POSS units and unique energy dissipation; (ii) naturally occurring biomacromolecules (chitosan and gelatin) as the hydrogel framework result in an appropriate biodegradation behavior, which can be replaced by newly formed tissues; (iii) it preferentially guides mesenchymal stem cells (MSCs) toward osteogenic differentiation in vitro by detecting the elevated levels of enzyme activity and calcium deposition along with the up-regulated osteogenesis-related genes and proteins; and (iv) accelerated in situ bone regeneration is observed after implanting MSC-loaded hydrogels into rat calvarial defects. Therefore, we provide a new insight to develop functional hydrogels for triggering specific cellular responses toward stem cell therapy and bone-related tissue engineering.

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Year:  2019        PMID: 31180391     DOI: 10.1039/c9bm00561g

Source DB:  PubMed          Journal:  Biomater Sci        ISSN: 2047-4830            Impact factor:   6.843


  12 in total

1.  3D encapsulation and inflammatory licensing of mesenchymal stromal cells alter the expression of common reference genes used in real-time RT-qPCR.

Authors:  Ainhoa Gonzalez-Pujana; Irene de Lázaro; Kyle H Vining; Edorta Santos-Vizcaino; Manoli Igartua; Rosa Maria Hernandez; David J Mooney
Journal:  Biomater Sci       Date:  2020-11-02       Impact factor: 6.843

2.  Long noncoding RNA Gm31629 promotes bone regeneration by maintaining bone marrow mesenchymal stem cells activity.

Authors:  Guangping Cai; Ye Xiao; Mi Yang; Qi Guo; Tian Su; Yalin Liu; Tiejian Jiang; Chun Li
Journal:  PeerJ       Date:  2022-06-09       Impact factor: 3.061

3.  Functionalized polyhedral oligosilsesquioxane (POSS) based composites for bone tissue engineering: synthesis, computational and biological studies.

Authors:  Laura Legnani; Daniela Iannazzo; Alessandro Pistone; Consuelo Celesti; Salvatore Giofrè; Roberto Romeo; Angela Di Pietro; Giuseppa Visalli; Monica Fresta; Paola Bottino; Ignazio Blanco; Maria Assunta Chiacchio
Journal:  RSC Adv       Date:  2020-03-19       Impact factor: 4.036

4.  Multifunctional injectable hydrogel for effective promotion of cartilage regeneration and protection against osteoarthritis: combined chondroinductive, antioxidative and anti-inflammatory strategy.

Authors:  Xueping Dong; Canfeng Li; Mengdi Zhang; YiKun Zhao; Zhen Zhao; Wenqiang Li; Xintao Zhang
Journal:  Sci Technol Adv Mater       Date:  2022-06-01       Impact factor: 7.821

5.  Injectable hydrogel systems with multiple biophysical and biochemical cues for bone regeneration.

Authors:  Weinan Cheng; Zhaozhao Ding; Xin Zheng; Qiang Lu; Xiangdong Kong; Xiaozhong Zhou; Guozhong Lu; David L Kaplan
Journal:  Biomater Sci       Date:  2020-05-06       Impact factor: 6.843

Review 6.  Enhancing Biopolymer Hydrogel Functionality through Interpenetrating Networks.

Authors:  Abhishek P Dhand; Jonathan H Galarraga; Jason A Burdick
Journal:  Trends Biotechnol       Date:  2020-09-16       Impact factor: 19.536

7.  Magnesium Ammonium Phosphate Composite Cell-Laden Hydrogel Promotes Osteogenesis and Angiogenesis In Vitro.

Authors:  Chang Liu; Guangzheng Yang; Mingliang Zhou; Xiangkai Zhang; Xiaolin Wu; Peishi Wu; Xiaoyu Gu; Xinquan Jiang
Journal:  ACS Omega       Date:  2021-04-02

Review 8.  A Review on the Design of Hydrogels With Different Stiffness and Their Effects on Tissue Repair.

Authors:  Tianyi Luo; Bowen Tan; Lengjing Zhu; Yating Wang; Jinfeng Liao
Journal:  Front Bioeng Biotechnol       Date:  2022-01-25

Review 9.  Development of Graphene-Based Materials in Bone Tissue Engineaering.

Authors:  Xiaoling Pan; Delin Cheng; Changshun Ruan; Yonglong Hong; Cheng Lin
Journal:  Glob Chall       Date:  2021-12-02

10.  Antibacterial Cellulose Nanocrystal-Incorporated Hydrogels With Satisfactory Vascularization for Enhancing Skin Regeneration.

Authors:  Haibin Lu; Xiaoling Li; Mu Zhang; Changpeng Xu; Wenqiang Li; Lei Wan
Journal:  Front Bioeng Biotechnol       Date:  2022-04-26
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