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Pathways Contributing to Development of Spontaneous Mammary Tumors in BALB/c-Trp53+/− Mice

机译:促进BALB / c-Trp53 +/-小鼠自发性乳腺肿瘤发展的途径

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摘要

Mutation and loss of function in p53 are common features among human breast cancers. Here we use BALB/c-Trp53+/− mice as a model to examine the sequence of events leading to mammary tumors. Mammary gland proliferation rates were similar in both BALB/c-Trp53+/− mice and wild-type controls. In addition, sporadic mammary hyperplasias were rare in BALB/c-Trp53+/− mice and not detectably different from those of wild-type controls. Among the 28 mammary tumors collected from BALB/c-Trp53+/− mice, loss of heterozygosity for Trp53 was detected in more than 90% of invasive mammary tumors. Transplantation of Trp53+/− ductal hyperplasias also indicated an association between loss of the wild-type allele of Trp53 and progression to invasive carcinomas. Therefore, loss of p53 function seems to be a rate-limiting step in progression. Moreover, expression of biomarkers such as estrogen receptor α, progesterone receptor, Her2/Neu, and activated Notch1 varied among mammary tumors, suggesting that multiple oncogenic lesions collaborate with loss of p53 function. Expression of biomarkers was retained when tumor fragments were transplanted to syngeneic hosts. Tumors expressing solely luminal or basal keratins were also observed (27 and 11%, respectively), but the largest class of tumors expressed both luminal and basal keratins (62%). Overall, this panel of transplantable tumors provides a resource for detailed evaluation of the cell lineages undergoing transformation and preclinical testing of therapeutic agents targeting a variety of oncogenic pathways including cancer stem cells.
机译:p53中的突变和功能丧失是人类乳腺癌中的常见特征。在这里,我们使用BALB / c-Trp53 +/-小鼠作为模型来检查导致乳腺肿瘤的事件序列。在BALB / c-Trp53 +/-小鼠和野生型对照中,乳腺增殖率均相似。此外,散发性乳腺增生在BALB / c-Trp53 +/-小鼠中很少见,与野生型对照无明显差异。从BALB / c-Trp53 +/-小鼠收集的28种乳腺肿瘤中,在90%以上的浸润性乳腺肿瘤中检测到Trp53的杂合性丧失。 Trp53 +/-导管增生的移植也表明Trp53的野​​生型等位基因的丧失与进展为浸润性癌之间存在关联。因此,p53功能的丧失似乎是进展中的限速步骤。此外,在乳腺肿瘤中,诸如雌激素受体α,孕激素受体,Her2 / Neu和活化的Notch1等生物标志物的表达各不相同,这表明多种致癌性病变与p53功能丧失密切相关。当肿瘤片段被移植到同源宿主中时,生物标志物的表达得以保留。还观察到仅表达腔角蛋白或基底角蛋白的肿瘤(分别为27%和11%),但最大类型的肿瘤同时表达腔蛋白和基底角蛋白(62%)。总体而言,这组可移植肿瘤为详细评估正在进行转化的细胞谱系和针对包括癌干细胞在内的多种致癌途径的治疗剂进行临床前测试提供了资源。

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