Literature DB >> 23623371

Harnessing the power of macrophages/monocytes for enhanced bone tissue engineering.

Lei Dong1, Chunming Wang.   

Abstract

Bone tissue engineering has attracted considerable attention as a promising treatment modality for severe bone degeneration. The pressing need for more sophisticated and fully functional bone substitutes has spurred a refocus on the development of bone constructs in a way more comparable to the physiological process. Current research is increasingly revealing the central roles of macrophages/monocytes in regulating bone development and repair, so we propose that these immunocytes can play a similar pivotal role in directing engineered bone regeneration. Accordingly, we discuss two possible strategies to exemplify how the distinctive power of macrophages/monocytes--particularly their cytokine-secretion ability and chemotactic response to foreign materials--can be harnessed to enhance the performance of bone tissue engineering applications.
Copyright © 2013 Elsevier Ltd. All rights reserved.

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Year:  2013        PMID: 23623371     DOI: 10.1016/j.tibtech.2013.04.001

Source DB:  PubMed          Journal:  Trends Biotechnol        ISSN: 0167-7799            Impact factor:   19.536


  11 in total

1.  Macrophages' contribution to ectopic osteogenesis in combination with blood clot and bone substitute: possibility for application in bone regeneration strategies.

Authors:  Jelena M Živković; Sanja T Stojanović; Marija Đ Vukelić-Nikolić; Milena B Radenković; Jelena G Najdanović; Milan Ćirić; Stevo J Najman
Journal:  Int Orthop       Date:  2020-10-06       Impact factor: 3.075

2.  Immunomodulatory ECM-like Microspheres for Accelerated Bone Regeneration in Diabetes Mellitus.

Authors:  Zhiai Hu; Chi Ma; Xin Rong; Shujuan Zou; Xiaohua Liu
Journal:  ACS Appl Mater Interfaces       Date:  2018-01-08       Impact factor: 9.229

3.  Resting and injury-induced inflamed periosteum contain multiple macrophage subsets that are located at sites of bone growth and regeneration.

Authors:  Kylie Anne Alexander; Liza-Jane Raggatt; Susan Millard; Lena Batoon; Andy Chiu-Ku Wu; Ming-Kang Chang; David Arthur Hume; Allison Robyn Pettit
Journal:  Immunol Cell Biol       Date:  2016-11-15       Impact factor: 5.126

Review 4.  Osteomacs and Bone Regeneration.

Authors:  Lena Batoon; Susan Marie Millard; Liza Jane Raggatt; Allison Robyn Pettit
Journal:  Curr Osteoporos Rep       Date:  2017-08       Impact factor: 5.096

5.  Synergistic enhancement of ectopic bone formation by supplementation of freshly isolated marrow cells with purified MSC in collagen-chitosan hydrogel microbeads.

Authors:  Joel K Wise; Andrea I Alford; Steven A Goldstein; Jan P Stegemann
Journal:  Connect Tissue Res       Date:  2015-09-04       Impact factor: 3.417

6.  Bioelectric modulation of macrophage polarization.

Authors:  Chunmei Li; Michael Levin; David L Kaplan
Journal:  Sci Rep       Date:  2016-02-12       Impact factor: 4.379

Review 7.  The material and biological characteristics of osteoinductive calcium phosphate ceramics.

Authors:  Zhurong Tang; Xiangfeng Li; Yanfei Tan; Hongsong Fan; Xingdong Zhang
Journal:  Regen Biomater       Date:  2017-09-08

8.  Biophysical induction of cell release for minimally manipulative cell enrichment strategies.

Authors:  Pascal Joly; Thomas Schaus; Andrea Sass; Anke Dienelt; Alexander S Cheung; Georg N Duda; David J Mooney
Journal:  PLoS One       Date:  2017-06-30       Impact factor: 3.240

9.  Human iPSC-derived osteoblasts and osteoclasts together promote bone regeneration in 3D biomaterials.

Authors:  Ok Hee Jeon; Leelamma M Panicker; Qiaozhi Lu; Jeremy J Chae; Ricardo A Feldman; Jennifer H Elisseeff
Journal:  Sci Rep       Date:  2016-05-26       Impact factor: 4.379

10.  The observed difference of macrophage phenotype on different surface roughness of mineralized collagen.

Authors:  Jun Li; Yu-Jue Zhang; Zhao-Yong Lv; Kun Liu; Chun-Xiu Meng; Bo Zou; Ke-Yi Li; Feng-Zhen Liu; Bin Zhang
Journal:  Regen Biomater       Date:  2020-01-25
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