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骨免疫调节特性骨组织工程支架在修复骨缺损中的应用和发展

周宇翔 沈烈军 万诗雨 柴璐渝 逄人奇 李登顺 王鑫 李展振

中国组织工程研究2024,Vol.28Issue(29):4734-4740,7.
中国组织工程研究2024,Vol.28Issue(29):4734-4740,7.DOI:10.12307/2024.566

骨免疫调节特性骨组织工程支架在修复骨缺损中的应用和发展

Application and development of bone tissue engineering scaffolds with bone immune regulatory properties in repairing bone defects

周宇翔 1沈烈军 2万诗雨 3柴璐渝 1逄人奇 1李登顺 4王鑫 5李展振6

作者信息

  • 1. 江西中医药大学,江西省南昌市 330004
  • 2. 舟山定海广华医院,浙江省舟山市 316000
  • 3. 广州中医药大学,广东省广州市 511400
  • 4. 江西中医药大学科技学院,江西省南昌市 330004
  • 5. 解放军总医院,北京市 100028
  • 6. 江西中医药大学,江西省南昌市 330004||舟山定海广华医院,浙江省舟山市 316000
  • 折叠

摘要

Abstract

BACKGROUND:Careful regulation of bone immune response during repair of bone scaffold is important for bone regeneration. OBJECTIVE:To review the influence of bone immune response on bone repair and the design of bone tissue engineering scaffold with regulating bone immune function and its application in bone repair. METHODS:Relevant articles published from 1973 to 2023 were retrieved from Science Direct,PubMed,Web of Science,and CNKI databases.English search terms were"osteoimmunology,macrophages,bone repair materials,bone scaffold,bone defects,bone regeneration".Chinese search terms were"bone immunity,macrophages,bone repair material,bone stent,bone defect,bone regeneration".Totally 80 articles of the latest research progress in this field were summarized and analyzed. RESULTS AND CONCLUSION:(1)A detailed review was conducted on the important time points in the origin and development process of bone immunity,and it was explained that macrophages,as important members of the bone immune regulatory system,can be divided into two phenotypes:M1(pro-inflammatory)and M2(anti-inflammatory),and play a key role in different stages of bone regeneration.During the inflammatory phase,M1 type macrophages can activate osteoclasts,initiate tissue repair processes,and participate in the reconstruction of bone microvascular networks.On the other hand,during the bone tissue regeneration process in the later stages of inflammation,sustained high expression of M1 type macrophages can hinder the formation of new bones.During the repair phase,M2 macrophages can secrete osteogenic cytokines,stimulate osteogenic differentiation and mineralization of bone marrow mesenchymal stem cells,and promote bone formation.On the other hand,long-term activation of M2 macrophages can increase the secretion of fibrogenic molecules,leading to excessive formation of scar tissue and delaying the healing process.Therefore,regulating macrophages to undergo phenotype transformation at appropriate stages and constructing an immune microenvironment beneficial for osteogenesis has great significance for bone regeneration.(2)In the process of designing bone scaffolds with bone immune regulation characteristics,the physical and chemical properties such as scaffold roughness,pore structure,stiffness,hydrophilicity,surface charge,and surface functional groups can be changed to affect non-specific protein and cell adhesion,thereby affecting the interaction between bone scaffolds and the immune system.By designing surface functional coatings of bioactive substances such as hydroxyapatite,bioactive glass,metal ions,extracellular matrix,drugs,cytokines,and exosomes,the immune microenvironment can be actively regulated by releasing bioactive substances after implantation into the body,affecting macrophage polarization and crosstalk between macrophages and bone cells,and promoting more M2 polarization of macrophages,so as to build a bone immune microenvironment that is conducive to bone regeneration.(3)Based on the research and development of bone tissue engineering scaffolds,in addition to focusing on the direct regulatory factors of stem cell osteogenic differentiation,this article also proposes that attention should be paid to the management of the immune microenvironment of stem cell differentiation.By regulating the appropriate bone immune microenvironment,more stem cell osteogenic differentiation can be induced;the osteogenic efficiency of the scaffold can be enhanced,and the concept of"bone immune regulatory characteristics"can be condensed;deeply elucidated the multi-directional regulatory role of the bone immune microenvironment and introduced the existing strategies for changing the physicochemical properties and surface functional coating of scaffolds to endow them with bone immune regulatory potential,providing new ideas for guiding the development of a new generation of bone tissue engineering scaffolds with bone immune regulatory characteristics.However,the bone immune microenvironment is a dynamic equilibrium state,and most of the existing regulatory strategies do not consider the dynamic matching of regulation.Therefore,the research and development of intelligent bone immune regulatory scaffolds with efficient and targeted regulation of the immune microenvironment will be a key focus of attention for scholars in future.

关键词

骨免疫/免疫系统/骨骼系统/巨噬细胞/成骨细胞/破骨细胞/骨修复材料/骨支架/骨缺损/骨重建

Key words

bone immunity/immune system/skeletal system/macrophage/osteoblast/osteoclast/bone repair material/bone scaffold/bone defect/bone reconstruction

分类

医药卫生

引用本文复制引用

周宇翔,沈烈军,万诗雨,柴璐渝,逄人奇,李登顺,王鑫,李展振..骨免疫调节特性骨组织工程支架在修复骨缺损中的应用和发展[J].中国组织工程研究,2024,28(29):4734-4740,7.

基金项目

浙江省卫生健康科技计划(2022KY1372),项目负责人:沈烈军 (2022KY1372)

舟山市医药卫生科技计划(2022YA16),项目负责人:沈烈军 Zhejiang Provincial Health Science and Technology Plan,No.2022KY1372(to SLJ) (2022YA16)

Zhoushan Medical Health Science and Technology Plan,No.2022YA16(to SLJ) (to SLJ)

中国组织工程研究

OA北大核心CSTPCD

2095-4344

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