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Targeted Apc;Twist Double-Mutant Mice: A New Model of Spontaneous Osteosarcoma That Mimics the Human Disease

机译:靶向Apc;双突变双突变小鼠:模仿人类疾病的自发性骨肉瘤新模型

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摘要

TWIST and adenomatosis polyposis coli (APC) are critical signaling factors in normal bone development. In previous studies examining a homogeneously treated cohort of pediatric osteosarcoma patients, we reported the frequent and concurrent loss of both TWIST and APC genes. On these bases, we created a related animal model to further explore the oncogenic cooperation between these two genes. We performed intercrosses between twist-null/+ and Apc1638N/+ mice and studied their progeny. The Apc1638N/+;twistnull/+ mice developed bone abnormalities observed by macroscopic skeletal analyses and in vivo imaging. Complementary histologic, cellular, and molecular analyses were used to characterize the identified bone tumors, including cell culture and immunofluorescence of bone differentiation markers. Spontaneous localized malignant bone tumors were frequently identified in Apc1638N/+;twist-null/+ mice by in vivo imaging evaluation and histologic analyses. These tumors possessed several features similar to those observed in human localized osteosarcomas. In particular, the murine tumors presented with fibroblastic, chondroblastic, and osteoblastic osteosarcoma histologies, as well as mixtures of these subtypes. In addition, cellular analyses and bone differentiation markers detected by immunofluorescence on tumor sections reproduced most murine and human osteosarcoma characteristics. For example, the early bone differentiation marker Runx2, interacting physically with hypophosphorylated pRb, was undetectable in these murine osteosarcomas, whereas phosphorylated retinoblastoma was abundant in the osteoblastic and chondroblastic tumor subtypes. These characteristics, similar to those observed in human osteosarcomas, indicated that our animal model may be a powerful tool to further understand the development of localized osteosarcoma.
机译:TWIST和结肠腺瘤性息肉病(APC)是正常骨骼发育中的关键信号转导因子。在以前的研究中,对均等治疗的小儿骨肉瘤患者进行了研究,我们报道了TWIST和APC基因的频繁并发丢失。在这些基础上,我们创建了一个相关的动物模型,以进一步探索这两个基因之间的致癌作用。我们进行了扭零/ +和Apc1638N / +小鼠之间的杂交,并研究了它们的后代。 Apc1638N / +; twnullull / +小鼠出现了骨骼异常,这是通过宏观骨骼分析和体内成像观察到的。补充的组织学,细胞学和分子分析被用于表征已鉴定的骨肿瘤,包括骨分化标志物的细胞培养和免疫荧光。通过体内成像评估和组织学分析,经常在Apc1638N / +; twist-null / +小鼠中发现自发性局部恶性骨肿瘤。这些肿瘤具有与人类局部骨肉瘤中观察到的特征相似的几个特征。特别地,鼠类肿瘤表现为成纤维细胞,成软骨细胞和成骨性骨肉瘤的组织学,以及这些亚型的混合物。此外,在肿瘤切片上通过免疫荧光检测到的细胞分析和骨分化标志物可重现大多数鼠类和人骨肉瘤的特征。例如,在这些鼠类骨肉瘤中无法检测到与次磷酸化的pRb物理相互作用的早期骨分化标记Runx2,而在成骨细胞和软骨成纤维细胞瘤亚型中磷酸化视网膜母细胞瘤丰富。这些特征与在人类骨肉瘤中观察到的特征相似,表明我们的动物模型可能是进一步了解局部骨肉瘤发展的有力工具。

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