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Multi-walled carbon nanotubes reversing the bone formation of bone marrow stromal cells by activating M2 macrophage polarization

Authors :
Runlian Lin
Kun Ge
Dehui Fan
Jing Li
Guoqiang Zhou
Kaihan Zhang
Yuanyu Huang
Lili Ma
Jinchao Zhang
Source :
Regenerative Biomaterials.
Publication Year :
2023
Publisher :
Oxford University Press (OUP), 2023.

Abstract

Multi-walled carbon nanotubes (MWCNTs) are an excellent bone tissue repair material both in vitro and in vivo. The interactions between MWCNTs and single type of cells of bone tissue, including osteoblasts, bone marrow stromal cells (BMSCs), or osteoclasts, have been extensively studied. However, the interactions between MWCNTs with different types of cells in the bone microenvironment remain elusive. Bone microenvironment is a complex system composed of different types of cells, which have interactions between each other. In this work, the effects of MWCNTs on bone microenvironment was firstly studied by culture of MWCNTs with BMSCs, osteoblasts, osteoclasts, macrophages, and vascular endothelial cells, respectively. Then, co-culture systems of macrophages-BMSCs, macrophages-calvaria, and macrophages-BMSCs-vascular endothelial cells were treated with MWCNTs, respectively. The osteogenic differentiation of BMSCs and osteoblasts was inhibited when these two types of cells were cultured with MWCNTs, respectively. Strikingly, when co-culture MWCNTs with BMSCs and macrophages, the osteogenesis of BMSCs was promoted by inducing the M2 polymerization of macrophages. Meanwhile, MWCNTs promoted the bone formation in the osteolysis model of calvaria ex vivo. In addition, the formation of osteoclasts was inhibited, and angiogenesis was increased when treated with MWCNTs. This study revealed the inconsistent effects of MWCNTs on single type of bone cells and on the bone microenvironment. The results provided basic research data for the application of MWCNTs in bone tissue repair.

Subjects

Subjects :
Biomaterials

Details

ISSN :
20563426 and 20563418
Database :
OpenAIRE
Journal :
Regenerative Biomaterials
Accession number :
edsair.doi...........e524e926e3ad02b3a3ce224377a94994