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Mouse models for cancer research

Tumor bearing Mouse DEN model PDX model CDX model

Shanghai Model Organisms Center provides multiple types of tumor-bearing mouse models for cancer research and drug efficacy testing, including cell line-derived xenograft model (CDX) and patient-derived xenograft model (PDX). While PDX models better reflect the heterogeneity and diversity of human cancers, CDX models allow researchers to advance their pre-clinical drug development in a cost- and time-efficient manner.

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Research on Diseases

genetics diseases studies diseases research diseases

Shanghai Model Organisms provides a professional R&D platform for genetically-engineered mouse, zebrafish and nematode models, a service platform for phenotyping, and a rich repository of disease mouse models to support your studies on disease genetics, pathogenesis, drug treatments, and more.

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Liver Cancer PDX Model

PDX PDX models Patient-derived Xenografts

Patient-derived Xenografts (PDX) are advanced preclinical oncology models for drug development. It offers a far better alternative for preclinical drug evaluation as compared to the conventional cell line-derived xenograft model.

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Inflammation Models

inflammation diseases inflammation research inflammatory factors

Inflammation is a common yet important pathological process. Any factor that may cause tissue damage can lead to inflammation. Anomal inflammatory response may result in chronic inflammation, autoimmune diseases and even cancer. The regulation of inflammation-related genes is an important topic in the study of the development of inflammation.

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P53 CKO Mouse Model

p53 knockout p53 knockout mice p53 gene

Our own-developed mouse model of p53 conditional knockout (p53-CKO) can be mated with mice carrying tissue-specific Cre expression to obtain mice with homozygous deletion of p53 in specific tissues or cells. These mice can be used for tumorigenesis and tumor mechanistic studies.

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Pten CKO Mouse Model

Our own-developed mouse model of Pten conditional knockout (Pten-CKO) can be mated with mice carrying tissue-specific Cre expression to obtain mice with homozygous deletion of Pten in specific tissues or cells, thus avoiding the embryonic death caused by systemic and homozygous Pten knockout. Pten-CKO mice can be used to study tumorigenesis, anti-tumor targets, neurogenesis, glial differentiation and cerebellar development.

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