Bigi A, Gandolfi M, Roveri N, Valdré G
Department of Chemistry G. Ciamician, University of Bologna, Italy.
Biomaterials. 1997 May;18(9):657-65. doi: 10.1016/s0142-9612(96)00156-1.
Atomic force microscopy (AFM), scanning electron microscopy and X-ray energy dispersive spectroscopy have been performed on decalcified turkey tendons submitted to in vitro calcification in order to investigate the morphology and the surface relationships between the inorganic phase and the collagen fibres during deposition and compare with those found for physiologically calcified samples. 'Tapping mode' AFM was used to reduce the vertical force applied to the samples, which were examined without any preparation. A further characterization has been carried out by means of X-ray diffraction, infrared absorption and chemical analyses. The observations indicate that the inorganic phase deposited on collagen fibres during in vitro calcification is poorly crystalline B carbonated apatite. The composition, structure and dimensions of apatitic crystallites, as well as their orientation with respect to collagen fibrils, are very similar to those characteristic of physiologically calcified tissues. However, the crystallites seem to be nucleated on the fibril surface, without appreciably affecting the molecular packing of collagen.
为了研究无机相在沉积过程中与胶原纤维之间的形态及表面关系,并与生理钙化样本进行比较,对经过体外钙化的脱钙火鸡肌腱进行了原子力显微镜(AFM)、扫描电子显微镜和X射线能量色散光谱分析。采用“轻敲模式”原子力显微镜以降低施加于样本的垂直力,样本未经任何预处理即进行检测。还通过X射线衍射、红外吸收和化学分析进行了进一步表征。观察结果表明,体外钙化过程中沉积在胶原纤维上的无机相是结晶性较差的B型碳酸磷灰石。磷灰石微晶的组成、结构和尺寸,以及它们相对于胶原纤维的取向,与生理钙化组织的特征非常相似。然而,微晶似乎在纤维表面成核,而对胶原的分子堆积没有明显影响。