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首页> 外文期刊>Journal of biomedical materials research, Part A >A kinetic approach to osteoblast adhesion on biomaterial surface.
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A kinetic approach to osteoblast adhesion on biomaterial surface.

机译:一种动力学方法,用于将成骨细胞粘附在生物材料表面上。

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摘要

An incompletely understood question in the field of biomaterials is how eucaryotic cells adhere on material surfaces. The adhesion of cells on materials is generally studied after some hours. Because this evaluation after some hours cannot let us presume about the future of the cells on the material, we have developed a culture model that does allow study in the long term of an elaborate cell/material interface closer to the in vivo situation. For that, we used a progressive trypsin-based detachment method. Here we report on the mathematical modeling of long-term human primary osteoblastic cell adhesion on metallic substrates, which allows us to quantify the real adhesion simultaneously by taking into account the effect of cell proliferation. A time-dependent adhesion index t(d) is proposed, which varies with culture time t according to the power law: t(d)(t) = at(b), a being independent of b. The exponent b is equal to 0.5 +/- 0.03 and is independent of the substrate's characteristics, meaning that the long-term adhesion increases proportionally to the square root of culture time. On the contrary, the parameter a significantly depends on the material's nature, the surface's topography, and the surface chemistry of the substrate and is sufficient to characterize cell adhesion. From this relationship, we suggest that a diffusion-based process related to the kinetic of formation of extracellular matrix should be involved in long-term adhesion on materials.
机译:在生物材料领域,一个尚未完全理解的问题是真核细胞如何粘附在材料表面上。通常在几个小时后研究细胞在材料上的粘附。由于几个小时后的评估不能让我们推测材料上细胞的未来,因此我们开发了一种培养模型,该模型可以长期研究更精细的细胞/材料界面,使其更接近体内情况。为此,我们使用了一种基于胰蛋白酶的渐进式分离方法。在这里,我们报告了人类长期在金属基质上原代成骨细胞粘附的数学模型,这使我们能够通过考虑细胞增殖的影响来同时量化真实粘附。提出了随时间变化的粘附指数t(d),其根据幂律随培养时间t变化:t(d)(t)= at(b),a与b无关。指数b等于0.5 +/- 0.03,并且与底物的特性无关,这意味着长期粘附力与培养时间的平方根成正比。相反,参数a很大程度上取决于材料的性质,表面的形貌和基材的表面化学性质,并且足以表征细胞粘附。从这种关系,我们建议与细胞外基质形成动力学有关的基于扩散的过程应参与对材料的长期粘附。

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