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Raman spectroscopic evidence of crystalline phosphate precursor to bone apatitic mineral

机译:拉曼光谱证据表明磷灰石是骨骼磷灰石矿物的前体

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Bone is a highly specialized connective tissue comprised of cross-linked collagen fibers interspersed with apatitic mineral crystallites of various sizes, shapes, orientation, and composition. However, the nucleation, growth, and propagation of mineral crystallite into the collagenous matrix are not clearly understood. By using a research grade inverted microscope fitted with a line-shaped 830 nm laser and spectrograph, we show that the Raman scatter from mineralizing cell cultures in an incubation chamber can be collected and monitored directly through the bottom of the well-plates over a period of 24 hours. In our studies, murine-derived MC3T3 cells were incubated at 37℃ in the presence of 5% CO_2 and 85% humidity. Results show a gradual shift in the phosphate v_1 apatitic band center (955-957 cm~(-1)) during the first hour of mineralization. The phosphate v_1 apatitic band width also narrowed during this time. To quantify the amount of crystal growth in vivo, we used a calibration curve derived from X-ray powder diffraction and Raman studies performed on a series of synthetic carbonated apatites and deproteinated mouse femoral specimens. Mineralization in neonatal mouse calvarial culture was observed along the lambdoid suture. Deposition proceeded in a stepwise fashion over the course of ~30 h.
机译:骨是一种高度专业化的结缔组织,由交联的胶原纤维和各种大小,形状,方向和组成的脂肪性矿物微晶组成。但是,尚不清楚矿物微晶的成核,生长和向胶原基质的繁殖。通过使用配有线形830 nm激光和光谱仪的研究级倒置显微镜,我们显示可以在一段时间内直接通过孔板底部收集和监测来自温育室中矿化细胞培养物的拉曼散射。 24小时在我们的研究中,鼠源性MC3T3细胞在5%CO_2和85%湿度下于37℃孵育。结果显示,在矿化的第一个小时中,磷酸盐v_1磷化带中心(955-957 cm〜(-1))逐渐移动。在此期间,磷酸盐v_1的血亲带宽也变窄。为了量化体内晶体的生长量,我们使用了从X射线粉末衍射和拉曼研究得出的校准曲线,该校准曲线是对一系列合成的碳酸磷灰石和脱蛋白的小鼠股骨标本进行的。沿lambdoid缝合线观察到新生小鼠颅骨培养物中的矿化作用。沉积在约30小时内逐步进行。

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