用生物信息学方法研究磷酸钙在骨再生中的作用

V. Galván-Chacón, A. Vasilevich, Huipin Yuan, N. Groen, J. de Boer, P. Habibović, S. Vermeulen
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引用次数: 0

摘要

磷酸钙(CaPs)被广泛用作骨修复和再生的生物材料,被认为是一种有趣的天然骨移植的合成替代品。然而,许多CaP骨移植替代物的骨再生潜力有待进一步提高。cap的生物活性受多种特性的调控,包括其化学成分和(表面)结构特性。在这项研究中,我们对六种CaP陶瓷进行了全面的表征,这些陶瓷已经在体外和体内研究中进行了测试,使我们能够在计算机上区分骨诱导和非骨诱导的CaP陶瓷。从这一表征中获得的数值参数进一步与在这六种CaP陶瓷上培养的成骨细胞MG63的成骨相关基因表达和通路相关。结果显示,除其他外,化学和结构参数对细胞骨架和细胞外基质相关基因表达和成骨相关途径(如MAPK和BMP)的影响。这里提出的生物信息学方法允许探索由CaP陶瓷诱导的转录景观,并获得关于细胞-生物材料相互作用的基本知识。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A bioinformatics approach to study the role of calcium phosphate properties in bone regeneration
ABSTRACT Calcium phosphates (CaPs) are extensively used as biomaterials for bone repair and regeneration and are considered an interesting synthetic alternative for natural bone grafts. However, the bone regenerative potential of many CaP bone graft substitutes requires further improvements. The bioactivity of CaPs is regulated by a variety of properties, including their chemical composition and (surface) structural properties. In this study, we performed a comprehensive characterization of six CaP ceramics that had been previously tested in several in vitro and in vivo studies, allowing us to in silico distinguish osteoinductive and non-osteoinductive CaP ceramics. The numerical parameters obtained from this characterization were further correlated with osteogenesis-associated gene expression and pathways of osteoblastic MG63 cells cultured on these six CaP ceramics. The results showed, among others, the influence of both chemical and structural parameters on cytoskeleton- and extracellular matrix-related gene expression and osteogenesis-associated pathways such as MAPK and BMP. The bioinformatics approach presented here allows exploring the transcriptional landscape induced by CaP ceramics and gaining fundamental knowledge about cell-biomaterial interactions.
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