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Looking for Calcium Phosphate Composite Suitable to Study Osteoclast Endocytosis: Preliminary Observations

机译:寻找适用于研究破骨细胞内吞作用的磷酸钙复合物:初步观察

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摘要

One of the issues regarding in vitro study of bone resorption is the synthesis of a bone-like biomaterial forming a thin layer onto either glass or plastic. The synthesis of a bone-like material suitable for in vitro studies can be valuable both to investigate osteoclast differentiation, that in vivo proceeds within the local microenvironment of bone and to understand how its presence triggers activation of macrophages present in situ when bone is damaged (a scenario that can occur for example in case of bone fracture). Despite the intensive studies committed to recreate synthetic bone analogues, the most used substrates for in vitro studies on bone resorption are slices of bone or dentine. Therefore morphological investigations (i.e. fluorescence analysis and phase contrast) are strongly compromised due to the thickness of the bone analogue. In the present study, with the aim to guarantee a versatile (and easy to be made) substrate, that could be suitable to study cell adhesion and morphology by epifluorescence, phase contrast and TEM, we developed a biomaterial containing a calcium phosphate salt and type I collagen. This material (made specifically for in vitro studies) forms a very thin layer that allowed to merge the morphological information derived from phase-contrast and epifluorescence observation, making possible the observation of the interface between cell and matrix. Moreover the electron microscopy evaluation of the endocytosis performed on cell differentiated could be more suitable because sample does not need the process of demineralization.
机译:关于骨吸收的体外研究的问题之一是合成在玻璃或塑料上形成薄层的类骨生物材料。适合于体外研究的类骨材料的合成,对于研究破骨细胞分化,体内在骨局部微环境中进行以及了解其存在如何触发骨受损时原位存在的巨噬细胞的活化都是有价值的(例如在骨折的情况下可能发生的情况)。尽管进行了致力于再生合成骨类似物的深入研究,但用于骨吸收的体外研究最常用的底物是骨切片或牙本质。因此,由于骨类似物的厚度,形态学研究(即荧光分析和相差)受到很大的损害。在本研究中,为了保证一种通用的(且易于制造的)底物,该底物可能适合通过落射荧光,相衬和TEM研究细胞粘附和形态,我们开发了一种包含磷酸钙盐和类型的生物材料。我胶原蛋白。这种材料(专门为体外研究而制成)形成了一个非常薄的层,该层允许合并从相差和落射荧光观察获得的形态信息,从而可以观察细胞与基质之间的界面。而且,由于样品不需要去矿质过程,因此对分化的细胞进行的内吞作用的电子显微镜评估可能更合适。

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