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Prostate Cancer Metastases Alter Bone Mineral and Matrix Composition Independent of Effects on Bone Architecture in Mice A Quantitative Study Using microCT and Raman Spectroscopy

机译:前列腺癌转移改变了小鼠的骨矿物质和基质成分而对小鼠骨结构的影响无关。使用microCT和拉曼光谱的定量研究

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摘要

Prostate cancer is the most common primary tumor and the second leading cause of cancer-related deaths in men in the United States. Prostate cancer bone metastases are characterized by abnormal bone remodeling processes and result in a variety of skeletal morbidities. Prevention of skeletal complications is a crucial element in prostate cancer management. This study investigated prostate cancer-induced alterations in the molecular composition and morphological structure of metastasis-bearing bones in a mouse model of prostate cancer using Raman spectroscopy and micro-computed tomography (microCT). LNCaP C4-2B prostate cancer cells were injected into the right tibiae of 5-week old male SCID mice. Upon sacrifice at 8 weeks post tumor inoculation, two out of the ten tumor-bearing tibiae showed only osteoblastic lesions in the radiographs, 4 osteolytic lesions only and 4 mixed with osteoblastic and osteolytic lesions.. Carbonate substitution was significantly increased while there was a marked reduction in the level of collagen mineralization, mineral crystallinity, and carbonate:matrix ratio in the cortex of the intact tumor-bearing tibiae compared to contralateral controls. MicroCT analysis revealed a significant reduction in bone volume/total volume, trabecular number and trabecular thickness, as well as significant increase in bone surface/volume ratio in tibiae with osteolytic lesions, suggesting active bone remodeling and bone loss. None of the changes in bone compositional properties were correlated with lesion area from radiographs or the changes in bone architecture from microCT. This study indicates that LNCaP C4-2B prostate cancer metastases alter bone tissue composition independent of changes in architecture, and altered bone quality may be an important contributor to fracture risk in these patients. Raman spectroscopy may provide a new avenue of investigation into interactions between tumor and bone microenvironment.
机译:在美国,前列腺癌是最常见的原发性肿瘤,并且是与癌症相关的死亡的第二大主要原因。前列腺癌骨转移的特征是异常的骨重塑过程,并导致各种骨骼疾病。预防骨骼并发症是前列腺癌治疗中的关键要素。这项研究使用拉曼光谱和微计算机断层扫描(microCT)研究了前列腺癌小鼠模型中带有转移性骨骼的分子组成和形态结构的改变。将LNCaP C4-2B前列腺癌细胞注射到5周大的雄性SCID小鼠的右胫骨中。在肿瘤接种后第8周处死后,十个带有肿瘤的胫骨中有两个在X线片中仅显示成骨性病变,仅4个溶骨性病变和4个混合有成骨性和溶骨性病变。碳酸盐替代明显增加,但有明显的变化。与对侧对照相比,完整携带肿瘤的胫骨皮质中胶原矿化,矿物质结晶度和碳酸盐:基质比率的降低。 MicroCT分析显示,伴溶骨性病变的胫骨的骨体积/总体积,小梁数目和小梁厚度显着减少,并且骨表面/体积比显着增加,表明活跃的骨重塑和骨丢失。放射线照片中的骨组成特性变化与病变面积无关系,microCT的骨骼结构变化均无相关性。这项研究表明,LNCaP C4-2B前列腺癌转移会独立于结构变化而改变骨组织组成,并且改变的骨质可能是这些患者骨折风险的重要因素。拉曼光谱法可能为研究肿瘤与骨微环境之间的相互作用提供新的途径。

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