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伴有转移累及的大鼠椎骨内胶原纤维组织

Collagen fibril organization within rat vertebral bone modified with metastatic involvement.

作者信息

Burke Mikhail, Golaraei Ahmad, Atkins Ayelet, Akens Margarete, Barzda Virginijus, Whyne Cari

机构信息

Institution of Biomaterials and Biomedical Engineering, University of Toronto, Toronto, ON, Canada; Orthopaedics Biomechanics Laboratory, Sunnybrook Research Institute, Toronto, ON, Canada.

Department of Physics and Institute for Optical Sciences, University of Toronto, Toronto, ON, Canada; Department of Chemical & Physical Sciences, University of Toronto Mississauga, Mississauga, ON, Canada.

出版信息

J Struct Biol. 2017 Aug;199(2):153-164. doi: 10.1016/j.jsb.2017.06.008. Epub 2017 Jun 24.

Abstract

Metastatic involvement diminishes the mechanical integrity of vertebral bone, however its specific impact on the structural characteristics of a primary constituent of bone tissue, the collagen-I fibril matrix, has not been adequately characterized. Female athymic rats were inoculated with HeLa or Ace-1 cancer cells lines producing osteolytic or mixed (osteolytic & osteoblastic) metastases respectively. A maximum of 21days was allowed between inoculation and rat sacrifice for vertebrae extraction. Linear polarization-in, polarization-out (PIPO) second harmonic generation (SHG) and transmission electron microscopy (TEM) imaging was utilized to assess the impact of metastatic involvement on collagen fibril organization. Increased observations of deviations in the typical plywood motif or a parallel packing structure and an increased average measured susceptibility ratio (related to relative degree of in-plane vs. out-plane fibrils in the analyzed tissue area) in bone adjacent to metastatic involvement was indicative of change in fibrilar organization compared to healthy controls. In particular, collagen-I fibrils in tumour-induced osteoblastic bone growth showed no adherence to the plywood motif or parallel packing structure seen in healthy lamellar bone, exhibiting a much higher susceptibility ratio and degree of fibril disorder. Negative correlations were established between measured susceptibility ratios and the hardness and modulus of metastatic bone tissue assessed in a previous study. Characterizing modifications in tissue level properties is key in defining bone quality in the presence of metastatic disease and their potential impact on material behaviour.

摘要

转移瘤的累及会降低椎骨的机械完整性,然而,其对骨组织主要成分——I型胶原纤维基质的结构特征的具体影响尚未得到充分描述。分别给雌性无胸腺大鼠接种产生溶骨性转移或混合性(溶骨性和成骨性)转移的HeLa或Ace-1癌细胞系。接种与处死大鼠以提取椎骨之间的间隔时间最长为21天。利用线性偏振入射、偏振出射(PIPO)二次谐波产生(SHG)和透射电子显微镜(TEM)成像来评估转移瘤累及对胶原纤维组织的影响。与健康对照相比,在转移瘤累及附近的骨中,典型胶合板图案或平行堆积结构的偏差观察结果增加,以及平均测量的磁化率增加(与分析组织区域内平面与平面外纤维的相对程度有关),表明纤维组织发生了变化。特别是,肿瘤诱导的成骨性骨生长中的I型胶原纤维不遵循健康板层骨中所见的胶合板图案或平行堆积结构,表现出更高的磁化率和纤维紊乱程度。在先前研究中评估的测量磁化率与转移骨组织的硬度和模量之间建立了负相关。表征组织水平特性的改变是定义存在转移疾病时骨质量及其对材料行为潜在影响的关键。

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