Literature DB >> 34325336

Immunopolarization-regulated 3D printed-electrospun fibrous scaffolds for bone regeneration.

Xingzhi Liu1, Mimi Chen2, Junchao Luo2, Huan Zhao2, Xichao Zhou2, Qiaoli Gu2, Huilin Yang2, Xuesong Zhu3, Wenguo Cui4, Qin Shi5.   

Abstract

Three-dimension (3D)-printed bioscaffolds are precise and personalized for bone regeneration. However, customized 3D scaffolds may activate the immune response in vivo and consequently impede bone formation. In this study, with layer-by-layer deposition and electrospinning technology to control the physical structure, 3D-printed PCL scaffolds with PLLA electrospun microfibrous (3D-M-EF) and nanofibrous (3D-N-EF) composites were constructed, and their immunomodulatory effect and the subsequent osteogenic effects were explored. Compared to 3D-N-EF scaffolds, 3D-M-EF scaffolds polarized more RAW264.7 cells toward alternatively activated macrophages (M2), as demonstrated by increased M2 and deceased classically activated macrophage (M1) phenotypic marker expression in the cells. In addition, the 3D-M-EF scaffolds shifted RAW264.7 cells to the M2 phenotype through PI3K/AKT signaling and enhanced VEGF and BMP-2 expression. Conditional medium from the RAW264.7 cells seeded in 3D-M-EF scaffolds promoted osteogenesis of MC3T3-E1 cells. Furthermore, in vivo study of repairing rat calvarial defects, the 3D-M-EF scaffolds increased the polarization of M2 macrophages, enhanced angiogenesis, and accelerated new bone formation. Collectively, our data suggested that well-designed 3D-M-EF scaffolds are favorable for osteogenesis through regulation of M2 polarization. Therefore, it is potential to utilize the physical structure of 3D-printed scaffolds to manipulate the osteoimmune environment to promote bone regeneration.
Copyright © 2021 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  3D printed; Bone regeneration; Electrospun fibrous; Immune response; Macrophage polarization

Year:  2021        PMID: 34325336     DOI: 10.1016/j.biomaterials.2021.121037

Source DB:  PubMed          Journal:  Biomaterials        ISSN: 0142-9612            Impact factor:   12.479


  6 in total

1.  Regulated macrophage immune microenvironment in 3D printed scaffolds for bone tumor postoperative treatment.

Authors:  Cuidi Li; Changwei Li; Zhenjiang Ma; Hongfang Chen; Huitong Ruan; Lianfu Deng; Jinwu Wang; Wenguo Cui
Journal:  Bioact Mater       Date:  2022-05-02

2.  Novel 3D Bioglass Scaffolds for Bone Tissue Regeneration.

Authors:  Evangelos Daskalakis; Boyang Huang; Cian Vyas; Anil Ahmet Acar; Ali Fallah; Glen Cooper; Andrew Weightman; Bahattin Koc; Gordon Blunn; Paulo Bartolo
Journal:  Polymers (Basel)       Date:  2022-01-22       Impact factor: 4.329

3.  Small extracellular vesicles with nanomorphology memory promote osteogenesis.

Authors:  Liang Ma; Wencan Ke; Zhiwei Liao; Xiaobo Feng; Jie Lei; Kun Wang; Bingjin Wang; Gaocai Li; Rongjin Luo; Yunsong Shi; Weifeng Zhang; Yu Song; Weibin Sheng; Cao Yang
Journal:  Bioact Mater       Date:  2022-01-12

4.  SrFe12O19-doped nano-layered double hydroxide/chitosan layered scaffolds with a nacre-mimetic architecture guide in situ bone ingrowth and regulate bone homeostasis.

Authors:  Yu-Wei Ge; Zhang-Hao Fan; Qin-Fei Ke; Ya-Ping Guo; Chang-Qing Zhang; Wei-Tao Jia
Journal:  Mater Today Bio       Date:  2022-07-19

5.  3D printing polylactic acid polymer-bioactive glass loaded with bone cement for bone defect in weight-bearing area.

Authors:  Yurun Ding; Xiaolin Liu; Jue Zhang; Zhuocheng Lv; Xiangchao Meng; Zhiguo Yuan; Teng Long; You Wang
Journal:  Front Bioeng Biotechnol       Date:  2022-07-25

Review 6.  The Roles of Exosomes upon Metallic Ions Stimulation in Bone Regeneration.

Authors:  Xuwei Luo; Dongqin Xiao; Chengdong Zhang; Guanglin Wang
Journal:  J Funct Biomater       Date:  2022-08-24
  6 in total

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