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Rodent models of pheochromocytoma, parallels in rodent and human tumorigenesis

机译:鼠鼠霉素肌瘤的啮齿动物模型,啮齿动物和人类肿瘤的平行

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摘要

Paragangliomas and pheochromocytomas are rare neuroendocrine tumors characterized by a large spectrum of hereditary predisposition. Based on gene expression profiling classification, they can be classically assigned to either a hypoxic/angiogenic cluster (cluster 1 including tumors with mutations in SDHx , VHL and FH genes) or a kinase-signaling cluster (cluster 2 consisting in tumors related to RET , NF1 , TMEM127 and MAX genes mutations, as well as most of the sporadic tumors). The past 15?years have seen the emergence of an increasing number of genetically engineered and grafted models to investigate tumorigenesis and develop new therapeutic strategies. Among them, only cluster 2-related predisposed models have been successful but grafted models are however available to study cluster 1-related tumors. In this review, we present an overview of existing rodent models targeting predisposition genes involved or not in human pheochromocytoma/paraganglioma susceptibility and their contribution to the improvement of pheochromocytoma experimental research.
机译:Paragangliomas和Pheochromocytomas是罕见的神经内分泌肿瘤,其特征在于大谱的遗传性易感性。基于基因表达分析分类,可以将它们经典分配给缺氧/血管生成簇(包括SDHX,VHL和FH基因中突变的肿瘤)或激酶 - 信令簇(由与RET相关的肿瘤组成的簇2, NF1,TMEM127和MAX基因突变以及大部分散发性肿瘤)。过去的15年有所了解了越来越多的转基因和接枝模型的出现,以研究肿瘤发生并发展新的治疗策略。其中,只有与群体2相关的预见模型已经成功但是接枝的模型可用于研究群体1相关的肿瘤。在本综述中,我们概述了靶向涉及的易感性基因或不在人类嗜肺细胞瘤/伞菌基因瘤易感性以及对嗜铬细胞瘤实验研究的贡献的贡献的概述。

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