DSMC, University of Brescia, Brescia, Italy.
DMC, University of Insubria, Varese, Italy.
Microsc Res Tech. 2020 Aug;83(8):853-864. doi: 10.1002/jemt.23477. Epub 2020 Mar 30.
Calcination and decalcification are basic procedures useful to a morphological approach of a biological, composite material like cortical bone. The study was carried out on a whole human femur conserved in liquid (from an educational collection). Cortical fracturing and SEM observation of vascular canals surface collagen texture was used to study bone deproteination at scalar temperatures (400-1,200°C) and acid bone decalcification at crescent time intervals. Heating burned and vaporized the organic matrix with shrinkage of the bone specimens as documented by the weight loss and transverse surface morphometry. SEM showed a pattern of aligned spherulites at 400°C which maintained the collagen fibrils layout (like a mineral cast), followed by a spherulites fusion progression with the temperature increments. At 1200°C a crystalline-like structure of tightly-packed trapezohendron units. XRD analysis supported the SEM morphology displaying the complete Debey rings of hydroxyapatite and spotted Debey rings of withlockite. Surface Ca and P elution was documented after 12 hr of exposition to the acid solution by dissolution of spherulites and the whole canal surface decalcified in depth after 15 days by SEM-EDAX analysis. The periodic pattern of collagen fibrils was still evident up to 15 days of decalcification together with fine granular deposits of a not-collagenic proteic material, while after 30 days no period was observed in the decalcified fibrils. Collagen mineral cast at 400°C calcination. Complete crystalline transformation at 1200°C. Up to 15 days of decalcification fibrils period maintained.
煅烧和脱钙是对皮质骨等生物复合材料进行形态学研究的基本程序。本研究使用保存在液体中的整个人类股骨(来自教育收藏)进行。通过对血管腔表面胶原纹理进行皮质骨折和 SEM 观察,研究了在标度温度(400-1200°C)下骨脱蛋白和在递增时间间隔下酸脱钙的情况。加热燃烧并蒸发了有机基质,导致骨标本收缩,正如重量损失和横截面试样形态计量所记录的那样。SEM 显示在 400°C 时出现了排列整齐的球晶图案,保持了胶原纤维的布局(类似于矿化铸型),随后随着温度的升高,球晶融合。在 1200°C 时,形成了紧密堆积的梯形单元的结晶状结构。XRD 分析支持 SEM 形态学,显示了完整的羟磷灰石德拜环和点状羟磷灰石德拜环。通过球晶的溶解,在酸溶液中暴露 12 小时后记录到表面 Ca 和 P 的洗脱,并且在 15 天后通过 SEM-EDAX 分析深度脱钙整个管腔表面。在脱钙 15 天内,胶原纤维的周期性图案仍然明显,同时还有非胶原蛋白的细颗粒状沉积物,而在脱钙 30 天后,脱钙纤维中没有观察到周期性。400°C 煅烧时形成胶原矿化铸型。1200°C 时完全结晶转变。脱钙 15 天内保持纤维的周期性。