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首页> 外文期刊>Bone >Longitudinal live animal micro-CT allows for quantitative analysis of tumor-induced bone destruction.
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Longitudinal live animal micro-CT allows for quantitative analysis of tumor-induced bone destruction.

机译:纵向活体动物微型CT可以定量分析肿瘤引起的骨破坏。

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摘要

The majority of breast cancer and prostate cancer patients with metastatic disease will go on to develop bone metastases, which contribute largely to the patient's morbidity and mortality. Numerous small animal models of cancer metastasis to bone have been developed to study tumor-induced bone destruction, but the advancement of imaging modalities utilized for these models has lagged significantly behind clinical imaging. Therefore, there is a significant need for improvements to live small animal imaging, particularly when obtaining high-resolution images for longitudinal quantitative analyses. Recently, live animal micro-computed tomography (muCT) has gained popularity due to its ability to obtain high-resolution 3-dimensional images. However, the utility of muCT in bone metastasis models has been limited to end-point analyses due to off-target radiation effects on tumor cells. We hypothesized that live animal in vivo muCT can be utilized to perform reproducible and quantitative longitudinal analyses of bone volume in tumor-bearing mice, particularly in a drug treatment model of breast cancer metastasis to bone. To test this hypothesis, we utilized the MDA-MB-231 osteolytic breast cancer model in which the tumor cells are inoculated directly into the tibia of athymic nude mice and imaged mice weekly by Faxitron (radiography), Imtek muCT (in vivo), and Maestro (GFP-imaging). Exvivo muCT and histology were performed at end point for validation. After establishing a high-resolution scanning protocol for the Imtek CT, we determined whether clear, measurable differences in bone volume were detectable in mice undergoing bisphosphonate drug treatments. We found that in vivo muCT could be used to obtain quantifiable and longitudinal images of the progression of bone destruction over time without altering tumor cell growth. In addition, we found that we could detect lesions as early as week 1 and that this approach could be used to monitor the effect of drug treatment on bone. Taken together, these data indicate that in vivo muCT is an effective and reproducible method for longitudinal monitoring of tumor-associated bone destruction in mouse models of tumor-induced bone disease.
机译:大多数患有转移性疾病的乳腺癌和前列腺癌患者将继续发展为骨转移,这大大增加了患者的发病率和死亡率。已经开发出许多小癌转移到骨骼的小动物模型来研究肿瘤引起的骨破坏,但是用于这些模型的成像方式的进步已经大大落后于临床成像。因此,特别是当获得用于纵向定量分析的高分辨率图像时,非常需要改进活的小动物成像。近年来,活体动物计算机断层扫描(muCT)由于获得高分辨率3维图像的能力而受到欢迎。但是,由于对肿瘤细胞的脱靶放射作用,muCT在骨转移模型中的应用仅限于终点分析。我们假设活体动物体内muCT可用于对荷瘤小鼠进行骨量的可重复和定量纵向分析,尤其是在乳腺癌转移至骨的药物治疗模型中。为了验证这一假设,我们利用了MDA-MB-231溶骨性乳腺癌模型,在该模型中,将肿瘤细胞直接接种到无胸腺裸鼠的胫骨中,并每周通过Faxitron(放射线照相),Imtek muCT(体内)和成年小鼠成像。大师(GFP成像)。在终点进行Exvivo muCT和组织学检查。在为Imtek CT建立高分辨率扫描方案后,我们确定了在接受双膦酸酯药物治疗的小鼠中是否可以检测到清晰,可测量的骨量差异。我们发现体内muCT可用于获得随时间推移骨破坏进展的可量化和纵向图像,而不会改变肿瘤细胞的生长。此外,我们发现我们最早可以在第1周就检测到病变,并且该方法可用于监视药物治疗对骨骼的影响。综上所述,这些数据表明,体内muCT是一种有效且可重现的方法,用于在肿瘤诱导的骨病小鼠模型中纵向监测肿瘤相关的骨破坏。

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