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Transplantation of engineered organoids enables rapid generation of metastatic mouse models of colorectal cancer.

机译:工程类器官的移植能够快速生成结直肠癌转移小鼠模型。

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摘要

Colorectal cancer (CRC) is a leading cause of death in the developed world, yet facile preclinical models that mimic the natural stages of CRC progression are lacking. Through the orthotopic engraftment of colon organoids we describe a broadly usable immunocompetent CRC model that recapitulates the entire adenoma-adenocarcinoma-metastasis axis in vivo. The engraftment procedure takes less than 5 minutes, shows efficient tumor engraftment in two-thirds of mice, and can be achieved using organoids derived from genetically engineered mouse models (GEMMs), wild-type organoids engineered ex vivo, or from patient-derived human CRC organoids. In this model, we describe the genotype and time-dependent progression of CRCs from adenocarcinoma (6 weeks), to local disseminated disease (11-12 weeks), and spontaneous metastasis (>20 weeks). Further, we use the system to show that loss of dysregulated Wnt signaling is critical for the progression of disseminated CRCs. Thus, our approach provides a fast and flexible means to produce tailored CRC mouse models for genetic studies and pre-clinical investigation.
机译:结肠直肠癌(CRC)是发达国家的主要死亡原因,但缺乏模仿CRC进展自然阶段的简便临床前模型。通过结肠有机体的原位移植,我们描述了一种可广泛使用的具有免疫能力的CRC模型,可概括体内的整个腺瘤-腺癌-转移轴。植入过程耗时不到5分钟,在三分之二的小鼠中显示出有效的肿瘤植入,并且可以使用源自基因工程小鼠模型(GEMM),离体基因工程改造的野生型类器官或源自患者的人类的类器官CRC类器官。在此模型中,我们描述了CRC从腺癌(6周)到局部播散性疾病(11-12周)和自发转移(> 20周)的基因型和时间依赖性进展。此外,我们使用该系统来显示失调的Wnt信号的丢失对于散发CRC的进展至关重要。因此,我们的方法提供了一种快速灵活的方法来生成定制的CRC小鼠模型,用于基因研究和临床前研究。

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