首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Soluble factors released by ATDC5 cells affect the formation of calcium phosphate crystals.
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Soluble factors released by ATDC5 cells affect the formation of calcium phosphate crystals.

机译:ATDC5细胞释放的可溶性因子影响磷酸钙晶体的形成。

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摘要

During biomineralization the organism controls the nature, orientation, size and shape of the mineral phase. The aim of this study was to investigate whether proteins or vesicles that are constitutively released by growing ATDC5 cells have the ability to affect the formation of the calcium phosphate crystal. Therefore, subconfluent cultured ATDC5 cells were incubated for 1 h in medium without serum. Subsequently, medium was harvested and incubated for 24 h in the presence of additional Pi. This resulted in the formation of flat mineralizing structures (FMS), consisting of complex irregularly shaped flat crystals, which occasionally contained fiber-like structures ( approximately 40 microm in size). Without pre-incubation of medium with cells, only small punctate (dot like) calcium phosphate precipitates were observed. The formation of FMS was shown to be caused by soluble factors released by subconfluent ATDC5 cells. Proteomic analysis by mass spectrometry showed that FMS contained a specific set intracellular proteins, serum proteins, and extracellular matrix proteins. Bulk cytosolic proteins derived from homogenized cells or serum proteins did, however, not induce the formation of FMS. Conditioned medium from HeLa, CHO K1, RAW 264.7 and MDCK cells was also capable to form FMS under our experimental conditions. Therefore the formation of FMS seems to be caused by specific soluble factors constitutively released by ADTC5 and other cells. This in vitro model system can be used as a tool to identify factors that affect the shape of the biomineral phase.
机译:在生物矿化过程中,生物体控制矿相的性质,方向,大小和形状。这项研究的目的是研究通过生长的ATDC5细胞组成性释放的蛋白质或囊泡是否具有影响磷酸钙晶体形成的能力。因此,亚汇合培养的ATDC5细胞在无血清的培养基中孵育1小时。随后,收获培养基并在另外的Pi存在下孵育24小时。这导致形成平坦的矿化结构(FMS),该结构由复杂的不规则形状的扁平晶体组成,偶尔包含纤维状结构(大小约为40微米)。没有将培养基与细胞进行预温育,仅观察到小点状(点状)磷酸钙沉淀。 FMS的形成表明是由亚汇合的ATDC5细胞释放的可溶性因子引起的。通过质谱进行的蛋白质组学分析表明,FMS包含一组特定的细胞内蛋白,血清蛋白和细胞外基质蛋白。然而,来源于均质化细胞的大量胞质蛋白或血清蛋白并不能诱导FMS的形成。在我们的实验条件下,来自HeLa,CHO K1,RAW 264.7和MDCK细胞的条件培养基也能够形成FMS。因此,FMS的形成似乎是由ADTC5和其他细胞组成性释放的特定可溶性因子引起的。该体外模型系统可以用作识别影响生物矿物质相形状的因素的工具。

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