KPC

Nomenclature

C57BL/6JSmo-Trp53em4(R172H)Krasem4(LSL-G12D)Tg(Pdx1-cre)Smoc

Cat. NO.

NM-KI-210096

Strain State

Repository Live

Export PDF

Model Description

The KPC mouse is an established and clinically relevant model of pancreatic ductal adenocarcinoma (PDAC) which develops many key features observed in human PDAC including pancreatic intraepithelial neoplasia alongside a robust inflammatory reaction including exclusion of effector T cells. Metastases are observed in around 80% of KPC animals located primarily in the liver and lungs. Mutations in both KRAS and TP53 genes are found in around 80% and 70% of all human PDACs respectively. Trp53-R172H、Kras-LSL-G12D were crossed with Pdx1-Cre-Tg to generate KPC mice. The KPC mouse contains a dominant negative point mutation in the transformation related protein 53 gene (TP53R172H), and a conditional activation point mutation in the KRAS gene (KRASG12D). A lox-stop-lox termination sequence is encoded upstream of KRAS mutated genes to prevent expression in the absence of Cre recombinase. The pancreas-specific Pdx-1 promoter enables expression of Cre recombinase in acini, islet and duct cells of the pancreas. Cre-mediated recombination excises the lox-stop-lox termination sequences and enables expression of KRASG12D in pancreatic tissue.
Research Application:Spontaneous pancreatic tumor

Validation Data

验证数据-KPC小鼠模型-图1.png

Fig 1 The spontaneous pancreatic tumor of KPC mouse model with large volume, uneven surface and multiple nodular projections.

验证数据-KPC小鼠模型-图2.png

Fig 2 HE staining of pancreatic tumor from KPC mouse model.

The tumor cells from KPC mouse model demonstrated disorderly arranged pancreatic cells, irregular tissue structure, dilated pancreatic ducts, inflammatory cells infiltration and stromal fibrosis as was seen in pancreas adenocarcinoma.



You may also like

Tamoxifen诱导Cre-ERT2小鼠 使用指南

Cre-ERT2在无Tamoxifen诱导的情况下,在细胞质内处于无活性状态;当Tamoxifen诱导后,Tamoxifen的代谢产物4-OHT(雌激素类似物)与ERT结合,可使Cre-ERT2进核发挥Cre重组酶活性。

Learn more

【小鼠大学问】基因工程小鼠的命名规则

常见的基因工程小鼠可以分为两种命名方式,包括基因定点修饰的小鼠命名,比如:敲除、敲入、点突变等等,和随机转基因的小鼠命名。

Learn more

Cre-lox系统介绍及使用汇总

你一定听说过Cre-lox重组系统,无论你是否直接进行过基因操作。由于Cre-lox系统具有操作简单、重组率高的优点,如今已经成为体内外遗传操作的强有力工具。利用Cre-lox系统,可以在特定细胞、组织或整个生物体,甚至在特定时间点敲除或表达某个基因,实现对特定基因的时空特异性操作,这对基因功能的研究和人类疾病动物模型的建立都具有深刻影响。

Learn more