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Quick and easy sample preparation without resin embedding for the bone quality assessment of fresh calcified bone using fourier transform infrared imaging

机译:无需树脂包埋即可快速轻松地进行样品制备,从而使用傅立叶变换红外成像技术评估新鲜钙化骨的骨质量

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摘要

Fourier transform infrared (FTIR) imaging is a powerful tool for the assessment of bone quality; however, it requires the preparation of thin bone sections. Conventional poly(methyl methacrylate) (PMMA) embedding for the preparation of sections takes more than two weeks and causes denaturation of the bone. Development of a quick and easy sample preparation technique without denaturation is needed for accurate clinical evaluation of fresh calcified bone using FTIR imaging. Frozen sectioning allows the quick and easy preparation of thin sections without denaturation, but it requires a substrate with good chemical resistance and improved heat shock resistance. Polypropylene (PP) film afforded both good chemical resistance and greater heat shock resistance, and the 4-μm-thick PP film coated with glue was thin enough for the IR beam to pass through it, while the optical anisotropy of infrared bands overlapping with PO43- band was negligible. The bone quality of femoral thin sections prepared by the conventional PMMA embedding and sectioning procedure (RESIN-S) or the newly developed frozen sectioning procedure (FROZEN-S) was evaluated by FTIR imaging. The mineral-to-matrix ratio and crystallinity in the RESIN-S sections were higher than those in the FROZEN-S sections, whereas the carbonate-to-phosphate ratio in the RESIN-S sections was lower than that in the FROZEN-S sections. In RESIN-S, the increased mineral-to-matrix ratio could be caused by dehydration, and the increased crystallinity and decreased carbonate-to-phosphate ratio might be consequence of dissolution of bone mineral during PMMA embedding. Therefore, the combined use of PP film coated with glue and the frozen sectioning procedure without denaturation appears well suited to the assessment of the bone quality of fresh calcified bone using FTIR imaging.
机译:傅里叶变换红外(FTIR)成像是评估骨质量的强大工具。但是,它需要准备薄的骨切片。用于制备切片的常规聚甲基丙烯酸甲酯(PMMA)嵌入需要两个多星期,并且会导致骨骼变性。需要开发一种快速,简便的不变性样品制备技术,以使用FTIR成像对新鲜钙化骨进行准确的临床评估。冷冻切片可快速,轻松地制备没有变性的薄切片,但它需要具有良好耐化学性和耐热冲击性的基材。聚丙烯(PP)膜既具有良好的耐化学性,又具有更好的耐热冲击性,涂有胶的4μm厚的PP膜足够薄,足以使IR光束通过,而红外波段的光学各向异性与PO4重叠 3-带可忽略不计。通过FTIR成像评估通过常规PMMA包埋和切片程序(RESIN-S)或新开发的冷冻切片程序(FROZEN-S)制备的股骨薄片的骨质量。 RESIN-S部分的矿物质与基质的比率和结晶度高于FROZEN-S部分的矿物质与结晶度,而RESIN-S部分的碳酸盐与磷酸盐的比率低于FROZEN-S部分。在RESIN-S中,矿物质与基质的比率增加可能是由于脱水引起的,而结晶度的增加和碳酸盐与磷酸盐比率的下降可能是在PMMA埋入过程中骨矿物质溶解的结果。因此,结合使用涂有胶的PP膜和无变性的冷冻切片程序的组合似乎非常适合使用FTIR成像评估新鲜钙化骨的骨质量。

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