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Postembedding Decalcification of Mineralized Tissue Sections Preserves the Integrity of Implanted Biomaterials and Minimizes Number of Experimental Animals

机译:矿化组织切片的嵌入后脱钙可保留植入的生物材料的完整性,并最大程度地减少实验动物的数量

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摘要

Bone histology of decalcified or undecalcified samples depends on the investigation. However, in research each method provides different information to answer the scientific question. Decalcification is the first step after sample fixation and governs what analysis is later feasible on the sections. Besides, decalcification is favored for immunostaining and in situ hybridization. Otherwise, sample decalcification can be damaging to bone biomaterials implants that contains calcium or strontium. On the other hand, after decalcification mineralization cannot be assessed using histology or imaging mass spectrometry. The current study provides a solution to the hardship caused by material presence within the bone tissue. The protocol presents a possibility of gaining sequential and alternating decalcified and undecalcified sections from the same bone sample. In this manner, investigations using histology, protein signaling, in situ hybridization, and mass spectrometry on the same sample can better answer the intended research question. Indeed, decalcification of sections and grindings resulted in well-preserved sample and biomaterials integrity. Immunostaining was comparable to that of classically decalcified samples. The study offers a novel approach that incites correlative analysis on the same sample and reduces the number of processed samples whether clinical biopsies or experimental animals.
机译:脱钙或未脱钙样品的骨组织学取决于研究。但是,在研究中,每种方法都提供了不同的信息来回答科学问题。脱钙是样品固定后的第一步,并决定以后在这些部分上可行的分析。此外,脱钙有利于免疫染色和原位杂交。否则,样品的脱钙可能会损坏包含钙或锶的骨生物材料植入物。另一方面,脱钙后不能使用组织学或成像质谱法评估矿化作用。当前的研究提供了解决由于骨组织内存在物质而引起的困难的方法。该方案提出了从同一骨样品中获得依次和交替的脱钙和未脱钙切片的可能性。以这种方式,使用组织学,蛋白质信号传导,原位杂交和质谱对同一样品进行的研究可以更好地回答预期的研究问题。实际上,切片和研磨物的脱钙作用导致样品和生物材料保存完好。免疫染色与经典脱钙样品相当。这项研究提供了一种新颖的方法,可以对同一样本进行相关分析,并减少临床活检或实验动物处理的样本数量。

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