Literature DB >> 31761212

Injectable and thermosensitive nanofibrous hydrogel for bone tissue engineering.

Geeta Kumari Wasupalli1, Devendra Verma2.   

Abstract

The use of injectable hydrogels is currently restricted by the challenge of achieving fast gelation, good mechanical strength, and cytocompatibility. Polymeric self-assembly is a potent tool for generating functional materials that combine multiple characteristics and can react to external factors. In this study, we have developed fiber-reinforced composite hydrogels that exhibits significantly enhanced mechanical strength, reduced gelling time, and excellent cytocompatibility. The practicability of developing a chitosan-based thermogelling solution using hydroxyapatite and polyelectrolyte complex (PEC) self-assembled fibers were evaluated. The effect of βGP concentration on gelation time was studied by varying the concentration of βGP added to the chitosan solution. Various combinations were tested to create a suitable hydrogel environment for cell encapsulation, growth, and proliferation at physiological pH and temperature. Determination of Young modulus revealed that PEC fibers reinforced hydrogel was three times stiffer than chitosan-βGP gels. The gelation time was reduced to 3 min, and the hydrogels had porous structures and gels at physiological pH, temperature, and showed >80% viability for MTT assay to MG63 cells. Moreover, confocal imaging of PEC fiber reinforced hydrogels showed noticeable viability and proliferation. The molecular interactions between gelling agents, polyelectrolytes, and hydroxyapatite were studied using FTIR. We investigated interfacial bonding between PEC fibers with βGP, NaHCO3, and HAp. The combination of hydroxyapatite and polymer self-assembly technique improved the efficiency of injectable hydrogels that are helpful in minimally invasive applications.
Copyright © 2019 Elsevier B.V. All rights reserved.

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Year:  2019        PMID: 31761212     DOI: 10.1016/j.msec.2019.110343

Source DB:  PubMed          Journal:  Mater Sci Eng C Mater Biol Appl        ISSN: 0928-4931            Impact factor:   7.328


  8 in total

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Authors:  Divya Mehrotra; Ruby Dwivedi; Deepti Nandana; R K Singh
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2.  Nanohydroxyapatite, Nanosilicate-Reinforced Injectable, and Biomimetic Gelatin-Methacryloyl Hydrogel for Bone Tissue Engineering.

Authors:  Zhe Shi; Qiang Zhong; Yuhang Chen; Jian Gao; Xin Pan; Qiang Lian; Rong Chen; Pinkai Wang; Jian Wang; Zhanjun Shi; Hao Cheng
Journal:  Int J Nanomedicine       Date:  2021-08-16

Review 3.  Bone tumors effective therapy through functionalized hydrogels: current developments and future expectations.

Authors:  Ruyi Shao; Yeben Wang; Laifeng Li; Yongqiang Dong; Jiayi Zhao; Wenqing Liang
Journal:  Drug Deliv       Date:  2022-12       Impact factor: 6.819

Review 4.  Injectable hydrogels for bone and cartilage tissue engineering: a review.

Authors:  Nafiseh Olov; Shadab Bagheri-Khoulenjani; Hamid Mirzadeh
Journal:  Prog Biomater       Date:  2022-04-14

Review 5.  Review of a new bone tumor therapy strategy based on bifunctional biomaterials.

Authors:  Jinfeng Liao; Ruxia Han; Yongzhi Wu; Zhiyong Qian
Journal:  Bone Res       Date:  2021-03-16       Impact factor: 13.567

6.  Bone Mesenchymal Stem Cell-Derived sEV-Encapsulated Thermosensitive Hydrogels Accelerate Osteogenesis and Angiogenesis by Release of Exosomal miR-21.

Authors:  Di Wu; Hao Qin; Zixuan Wang; Mingzhao Yu; Zhe Liu; Hao Peng; Leilei Liang; Changqing Zhang; Xiaojuan Wei
Journal:  Front Bioeng Biotechnol       Date:  2022-01-19

Review 7.  Recent advances in the local antibiotics delivery systems for management of osteomyelitis.

Authors:  Reem Khaled Wassif; Maha Elkayal; Rehab Nabil Shamma; Seham A Elkheshen
Journal:  Drug Deliv       Date:  2021-12       Impact factor: 6.819

Review 8.  Application Progress of Modified Chitosan and Its Composite Biomaterials for Bone Tissue Engineering.

Authors:  Yuemeng Zhu; Yidi Zhang; Yanmin Zhou
Journal:  Int J Mol Sci       Date:  2022-06-12       Impact factor: 6.208

  8 in total

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