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Genetically engineered mice: mouse models for cancer research

机译:基因工程小鼠:用于癌症研究的小鼠模型

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Genetically engineered mice (GEM) have been extensively used to model human cancer. Mouse models mimic the morphology, histopathology, phenotype, and genotype of the corresponding cancer in humans. GEM mice are created by random integration of a transgene into the genome, which results in gene overexpression (transgenic mice); gene deletion (knock-out mice); or targeted insertion of the transgene in a selected locus (knock-in mice). Knock-out may be constitutive, i.e. total inactivation of the gene of interest in any cell, or conditional, i.e. tissue-specific inactivation of the gene. Gene knock-down (RNAi) and humanization of the mouse are more sophisticated models of GEM mice. RNA interference (RNAi) is a mechanism in which double-stranded RNAs inhibits the respective gene expression by inducing degradation of its mRNA. Humanization is based on replacing a mouse gene by its human counterpart. The alterations in genes in GEM have to be heritable. The opportunities provided by employing GEM cancer models are: analysis of the role of specific cancer genes and modifier genes, evaluation of conventional cancer therapies and new drugs, identification of cancer markers of tumor growth, analysis of the influence of the tumor’s microenvironment on tumor formation, and the definition of the pre-clinical, discrete steps of tumorigenesis. The validation of mouse models of human cancer is the task of the MMHCC (Mouse Models of Human Cancer Consortium). The GEM models of breast, pancreatic, intestinal and colon, and prostate cancer are the most actively explored. In contrast, the models of brain tumors and ovary, cervical, and skin cancer are in the early stage of investigation.
机译:基因工程小鼠(GEM)已被广泛用于模拟人类癌症。小鼠模型模仿人类相应癌症的形态,组织病理学,表型和基因型。 GEM小鼠是通过将转基因随机整合到基因组中而产生的,导致基因过度表达(转基因小鼠);基因缺失(敲除小鼠);或将转基因靶向插入所选位点(敲入小鼠)。敲除可以是组成性的,即在任何细胞中目的基因的全部失活,或有条件的,即基因的组织特异性失活。基因敲除(RNAi)和小鼠的人源化是GEM小鼠的更复杂模型。 RNA干扰(RNAi)是一种机制,其中双链RNA通过诱导其mRNA降解来抑制各自的基因表达。人性化是基于其人类对应物替代小鼠基因。 GEM中基因的改变必须是可遗传的。利用GEM癌症模型提供的机会包括:分析特定癌症基因和修饰基因的作用,评估常规癌症疗法和新药,鉴定肿瘤生长的癌症标志物,分析肿瘤微环境对肿瘤形成的影响,以及肿瘤发生前临床离散步骤的定义。 MMHCC(人类癌症协会小鼠模型)的任务是验证人类癌症的小鼠模型。乳腺癌,胰腺癌,肠道癌,结肠癌和前列腺癌的GEM模型得到了最积极的探索。相比之下,脑肿瘤,卵巢癌,宫颈癌和皮肤癌的模型仍处于研究初期。

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