首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Off-Stoichiometric Reactions at the Cell–Substrate Biomolecular Interface of Biomaterials: In Situ and Ex Situ Monitoring of Cell Proliferation Differentiation and Bone Tissue Formation
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Off-Stoichiometric Reactions at the Cell–Substrate Biomolecular Interface of Biomaterials: In Situ and Ex Situ Monitoring of Cell Proliferation Differentiation and Bone Tissue Formation

机译:生物材料的细胞-底物生物分子界面的化学计量外反应:原位和异位监测细胞的增殖分化和骨组织形成

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摘要

The availability of osteoinductive biomaterials has encouraged new therapies in bone regeneration and has potentially triggered paradigmatic shifts in the development of new implants in orthopedics and dentistry. Among several available synthetic biomaterials, bioceramics have gained attention for their ability to induce mesenchymal cell differentiation and successive bone formation when implanted in the human body. However, there is currently a lack of understanding regarding the fundamental biochemical mechanisms by which these materials can induce bone formation. Phenomenological studies of retrievals have clarified the final effect of bone formation, but have left the chemical interactions at the cell–material interface uncharted. Accordingly, the knowledge of the intrinsic material properties relevant for osteoblastogenesis and osteoinduction remains incomplete. Here, we systematically monitored in vitro the chemistry of mesenchymal cell metabolism and the ionic exchanges during osteoblastogenesis on selected substrates through conventional biological assays as well as via in situ and ex situ spectroscopic techniques. Accordingly, the chemical behavior of different bioceramic substrates during their interactions with mesenchymal cells could be unfolded and compared with that of biomedical titanium alloy. Our goal was to clarify the cascade of chemical equations behind the biological processes that govern osteoblastogenic effects on different biomaterial substrates.
机译:骨诱导性生物材料的可用性鼓励了骨再生的新疗法,并有可能触发整形外科和牙科领域新植入物的开发范例转变。在几种可用的合成生物材料中,生物陶瓷因植入人体后具有诱导间充质细胞分化和连续骨形成的能力而受到关注。但是,目前对于这些材料可诱导骨骼形成的基本生化机制缺乏了解。取回的现象学研究已经阐明了骨形成的最终作用,但并未发现细胞-材料界面的化学相互作用。因此,与成骨细胞生成和骨诱导有关的内在材料特性的知识仍然不完整。在这里,我们通过常规的生物学检测以及原位和异位光谱技术,系统地监测了体外间充质细胞代谢的化学过程以及成骨细胞生成过程中所选基质上的离子交换。因此,可以揭示不同生物陶瓷基质与间充质细胞相互作用期间的化学行为,并将其与生物医学钛合金进行比较。我们的目标是阐明控制成骨细胞作用于不同生物材料基质的生物学过程背后的化学方程式。

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