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自发性猫乳腺癌是HER2过表达的预后不良人类乳腺癌的一种模型。

Spontaneous feline mammary carcinoma is a model of HER2 overexpressing poor prognosis human breast cancer.

作者信息

De Maria Raffaella, Olivero Martina, Iussich Selina, Nakaichi Munekazu, Murata Tomoaki, Biolatti Bartolomeo, Di Renzo Maria Flavia

机构信息

Department of Animal Pathology, School of Veterinary Medicine, University of Turin, Grugliasco, Turin, Italy.

出版信息

Cancer Res. 2005 Feb 1;65(3):907-12.

Abstract

Companion animal spontaneous tumors are suitable models for human cancer, primarily because both animal population and the tumors are genetically heterogeneous. Feline mammary carcinoma (FMC) is a highly aggressive, mainly hormone receptor-negative cancer, which has been proposed as a model for poor prognosis human breast cancer. We have identified and studied the feline orthologue of the HER2 gene, which is both an important prognostic marker and therapeutic target in human cancer. Feline HER2 (f-HER2) gene kinase domain is 92% similar to the human HER2 kinase. F-HER2-specific mRNA was found 3- to 18-fold increased in 3 of 3 FMC cell lines, in 1 of 4 mammary adenomas and 6 of 11 FMC samples using quantitative reverse transcription-PCR. Western blot showed that an anti-human HER2 antibody recognized a protein comigrating with the human p185HER2 in FMC cell lines. The same antibodies strongly stained 13 of 36 FMC archival samples. These data show that feline HER2 overexpression qualifies FMC as homologous to the subset of HER2 overexpressing, poor prognosis human breast carcinomas and as a suitable model to test innovative approaches to therapy of aggressive tumors.

摘要

伴侣动物自发性肿瘤是人类癌症的合适模型,主要是因为动物群体和肿瘤在基因上都是异质的。猫乳腺癌(FMC)是一种侵袭性很强、主要激素受体呈阴性的癌症,已被提议作为预后不良的人类乳腺癌模型。我们已经鉴定并研究了HER2基因的猫科直系同源基因,该基因在人类癌症中既是重要的预后标志物,也是治疗靶点。猫HER2(f-HER2)基因激酶结构域与人类HER2激酶有92%的相似性。使用定量逆转录-聚合酶链反应,在3个FMC细胞系中的3个、4个乳腺腺瘤中的1个以及11个FMC样本中的6个中,发现F-HER2特异性mRNA增加了3至18倍。蛋白质印迹法显示,一种抗人类HER2抗体在FMC细胞系中识别出一种与人类p185HER2共迁移的蛋白质。相同的抗体对36个FMC存档样本中的13个进行了强烈染色。这些数据表明,猫HER2的过表达使FMC与HER2过表达、预后不良的人类乳腺癌子集具有同源性,并且是测试侵袭性肿瘤创新治疗方法的合适模型。

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