Insight into the role of integrins and integrins-targeting biomaterials in bone regeneration.

IF 2.8 4区 医学 Q3 CELL BIOLOGY Connective Tissue Research Pub Date : 2024-09-01 Epub Date: 2024-09-19 DOI:10.1080/03008207.2024.2396002
Mohammad Tollabi, Zahra Poursalehi, Parichehr Mehrafshar, Rayhaneh Bakhtiari, Vahid Hosseinpour Sarmadi, Lobat Tayebi, Seyed Mohammad Amin Haramshahi
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Abstract

Features of the extracellular matrix, along with biochemical factors, have a momentous impress in making genes on and/or off. The interaction of cells and the extracellular matrix is mediated by integrins. Therefore, these molecules have pivotal roles in regulating cell behaviors. Integrins include a group of molecules with a variety of characteristics that can affect different molecular cascades. Considering the importance of these molecules in tissue regeneration after injury, it is necessary to know well the integrins involved in the process of connecting cells to the extracellular matrix in each tissue.With the increase in life expectancy, bone tissue engineering has received more attention from researchers. Integrins are critical components in osteoblast differentiation, survival, and bone mechanotransduction. During osteogenic differentiation in stem cells, specific integrins facilitate multiple signaling pathways through their cytoplasmic domain, leading to the induction of osteogenic differentiation. Also, due to the importance of using biomaterials in bone tissue engineering, efforts have been made to design and use biomaterials with maximum interaction with integrins. Notably, the use of RGD peptide or fibronectin for surface modification is a well-established and commonly employed approach to manipulate integrin activity.This review article looks into integrins' role in bone development and regeneration. It then goes on to explore the complex mechanisms by which integrins contribute to these processes. In addition, this review discusses the use of natural and synthetic biomaterials that target integrins to promote bone regeneration.

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深入了解整合素和整合素靶向生物材料在骨再生中的作用。
细胞外基质的特征与生化因素一起,对基因的开启和/或关闭有着重要的影响。细胞与细胞外基质的相互作用是由整合素介导的。因此,这些分子在调节细胞行为方面发挥着关键作用。整合素是一组具有多种特性的分子,可影响不同的分子级联。考虑到这些分子在损伤后组织再生中的重要性,有必要充分了解参与细胞与各组织细胞外基质连接过程的整合素。整合素是成骨细胞分化、存活和骨机械传导的关键成分。在干细胞成骨分化过程中,特定整合素通过其胞质结构域促进多种信号通路,从而诱导成骨分化。此外,由于在骨组织工程中使用生物材料的重要性,人们一直在努力设计和使用能与整合素产生最大相互作用的生物材料。值得注意的是,使用 RGD 肽或纤维连接蛋白进行表面修饰是操纵整合素活性的一种行之有效的常用方法。这篇综述文章探讨了整合素在骨骼发育和再生过程中的作用,接着探讨了整合素在这些过程中发挥作用的复杂机制。此外,这篇综述还讨论了针对整合素促进骨再生的天然和合成生物材料的使用。
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来源期刊
Connective Tissue Research
Connective Tissue Research 生物-细胞生物学
CiteScore
6.60
自引率
3.40%
发文量
37
审稿时长
2 months
期刊介绍: The aim of Connective Tissue Research is to present original and significant research in all basic areas of connective tissue and matrix biology. The journal also provides topical reviews and, on occasion, the proceedings of conferences in areas of special interest at which original work is presented. The journal supports an interdisciplinary approach; we present a variety of perspectives from different disciplines, including Biochemistry Cell and Molecular Biology Immunology Structural Biology Biophysics Biomechanics Regenerative Medicine The interests of the Editorial Board are to understand, mechanistically, the structure-function relationships in connective tissue extracellular matrix, and its associated cells, through interpretation of sophisticated experimentation using state-of-the-art technologies that include molecular genetics, imaging, immunology, biomechanics and tissue engineering.
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