Literature DB >> 27686136

Demineralized Bone Matrix Scaffolds Modified by CBD-SDF-1α Promote Bone Regeneration via Recruiting Endogenous Stem Cells.

Jiajia Shi1,2, Jie Sun1,3, Wen Zhang4, Hui Liang1, Qin Shi5, Xiaoran Li1, Yanyan Chen1, Yan Zhuang1, Jianwu Dai1,3,6.   

Abstract

The reconstruction of bone usually depends on substitute transplantation, which has drawbacks including the limited bone substitutes available, comorbidity, immune rejection, and limited endogenous bone regeneration. Here, we constructed a functionalized bone substitute by combining application of the demineralized bone matrix (DBM) and collagen-binding stromal-cell-derived factor-1α (CBD-SDF-1α). DBM was a poriferous and biodegradable bone substitute, derived from bovine bone and consisting mainly of collagen. CBD-SDF-1α could bind to collagen and be controllably released from the DBM to mobilize stem cells. In a rat femur defect model, CBD-SDF-1α-modified DBM scaffolds could efficiently mobilize CD34+ and c-kit+ endogenous stem cells homing to the injured site at 3 days after implantation. According to the data from micro-CT, CBD-SDF-1α-modified DBM scaffolds could help the bone defects rejoin with mineralization accumulated and bone volume expanded. Interestingly, osteoprotegerin (OPG) and osteopontin (OPN) were highly expressed in CBD-SDF-1α group at an early time after implantation, while osteocalcin (OCN) was more expanded. H&E and Masson's trichrome staining showed that the CBD-SDF-1α-modified DBM scaffold group had more osteoblasts and that the bone defect rejoined earlier. The ultimate strength of the regenerated bone was investigated by three-point bending, showing that the CBD-SDF-1α group had superior strength. In conclusion, CBD-SDF-1α-modified DBM scaffolds could promote bone regeneration by recruiting endogenous stem cells.

Entities:  

Keywords:  CBD-SDF-1α; bone regeneration; demineralized bone matrix scaffolds; endogenous stem cell; sustained release

Year:  2016        PMID: 27686136     DOI: 10.1021/acsami.6b08685

Source DB:  PubMed          Journal:  ACS Appl Mater Interfaces        ISSN: 1944-8244            Impact factor:   9.229


  10 in total

Review 1.  The neuronal differentiation microenvironment is essential for spinal cord injury repair.

Authors:  Yannan Zhao; Zhifeng Xiao; Bing Chen; Jianwu Dai
Journal:  Organogenesis       Date:  2017-06-09       Impact factor: 2.500

2.  In vivo bone regeneration assessment of offset and gradient melt electrowritten (MEW) PCL scaffolds.

Authors:  Naghmeh Abbasi; Ryan S B Lee; Saso Ivanovski; Robert M Love; Stephen Hamlet
Journal:  Biomater Res       Date:  2020-10-01

3.  Supramolecular Hydrogels Based on Nanoclay and Guanidine-Rich Chitosan: Injectable and Moldable Osteoinductive Carriers.

Authors:  Xiao Zhang; Jiabing Fan; Chung-Sung Lee; Soyon Kim; Chen Chen; Min Lee
Journal:  ACS Appl Mater Interfaces       Date:  2020-03-24       Impact factor: 9.229

4.  Enhanced Osteoinductivity of Demineralized Bone Matrix with Noggin Suppression in Polymer Matrix.

Authors:  Chen Chen; Matthew Rehnama; Soyon Kim; Chung-Sung Lee; Xiao Zhang; Tara Aghaloo; Jiabing Fan; Min Lee
Journal:  Adv Biol (Weinh)       Date:  2021-01-04

Review 5.  Micro-CT - a digital 3D microstructural voyage into scaffolds: a systematic review of the reported methods and results.

Authors:  Ibrahim Fatih Cengiz; Joaquim Miguel Oliveira; Rui L Reis
Journal:  Biomater Res       Date:  2018-09-26

Review 6.  Reconstructing Bone with Natural Bone Graft: A Review of In Vivo Studies in Bone Defect Animal Model.

Authors:  Mengying Liu; Yonggang Lv
Journal:  Nanomaterials (Basel)       Date:  2018-12-03       Impact factor: 5.076

7.  Low Dose BMP2-Doped Calcium Phosphate Graft Promotes Bone Defect Healing in a Large Animal Model.

Authors:  Tie Liu; Wen Fang; Gang Wu; Yining Li; Janak L Pathak; Yuelian Liu
Journal:  Front Cell Dev Biol       Date:  2021-01-21

8.  Constructing a highly bioactive tendon-regenerative scaffold by surface modification of tissue-specific stem cell-derived extracellular matrix.

Authors:  Liang-Ju Ning; Jing Cui; Shu-Kun He; Ruo-Nan Hu; Xuan Yao; Yi Zhang; Wei Ding; Yan-Jing Zhang; Jing-Cong Luo; Ting-Wu Qin
Journal:  Regen Biomater       Date:  2022-04-20

9.  Photoacoustic stimulation promotes the osteogenic differentiation of bone mesenchymal stem cells to enhance the repair of bone defect.

Authors:  Zebin Huang; Jiankun Xu; Jiebin Chen; Hongjiang Chen; Hailong Wang; Zhonglian Huang; Youbin Chen; Xiaolin Lu; Fushen Lu; Jun Hu
Journal:  Sci Rep       Date:  2017-11-20       Impact factor: 4.379

10.  Biofabrication of SDF-1 Functionalized 3D-Printed Cell-Free Scaffolds for Bone Tissue Regeneration.

Authors:  Alina Lauer; Philipp Wolf; Dorothea Mehler; Hermann Götz; Mehmet Rüzgar; Andreas Baranowski; Dirk Henrich; Pol Maria Rommens; Ulrike Ritz
Journal:  Int J Mol Sci       Date:  2020-03-21       Impact factor: 5.923

  10 in total

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