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Applicability of ToF-SIMS for monitoring compositional changes in bone in a long-term animal model

机译:ToF-SIMS在长期动物模型中监测骨骼组成变化的适用性

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摘要

Time-of-flight secondary ion mass spectrometry (ToF-SIMS) is a well-established technique in material sciences but has not yet been widely explored for implementation in life sciences. Here, we demonstrate the applicability and advantages of ToF-SIMS analysis for the study of minerals and biomolecules in osseous tissue. The locally resolved analysis of fragment ions deriving from the sample surface enables imaging and differentiation of bone tissue and facilitates histology on non-stained cross sections. In a rat model, bilateral ovariectomy combined with either a multi-deficiency diet or steroid treatment was carried out to create osteoporotic conditions. We focused our study on the Ca content of the mineralized tissue and monitored its decline. Calcium mass images of cross sections show the progressive degenerative changes in the bone. We observed a decreased Ca concentration in the edge region of the trabeculae and a decline in the Ca/P ratio. Additionally, we focused on the non-mineralized matrix and identified fragment ions that are characteristic for the collagen matrix. We observed trabeculae with wide ranges of non-mineralized collagen for the diet group owing to an impaired mineralization process. Here, the advantage of coeval monitoring of collagen and minerals indicated an osteomalacic model rather than an osteoporotic one.
机译:飞行时间二次离子质谱法(ToF-SIMS)是材料科学中成熟的技术,但尚未在生命科学中进行广泛探索。在这里,我们证明了ToF-SIMS分析在骨组织中矿物质和生物分子研究中的适用性和优势。对源自样品表面的碎片离子进行局部解析分析,可以对骨组织进行成像和分化,并有助于在未染色的横截面上进行组织学检查。在大鼠模型中,进行了双侧卵巢切除术并结合了多缺乏饮食或类固醇治疗,以创造骨质疏松症。我们将研究重点放在矿化组织的钙含量上,并监测其下降。横截面的钙质图像显示了骨骼的逐渐退行性变化。我们观察到小梁边缘区域的Ca浓度降低,而Ca / P比降低。此外,我们专注于非矿化基质,并确定了胶原基质特有的碎片离子。我们发现由于饮食过程中矿化过程受损,小梁中含有大量未矿化的胶原。在这里,对胶原蛋白和矿物质进行同时监测的优势表明是骨苹果酸模型,而不是骨质疏松模型。

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