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Fibrosis

liver fibrosis model

The mouse liver fibrosis model can be generated by surgery or drug induction, which can be used to study the role of genes and proteins in the development of liver fibrosis, to explore the mechanisms underlying liver fibrosis, and to carry out drug efficacy evaluations.

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Evaluating the Efficacy of Tumor-targeted Antibody in vivo

immunotherapy immune checkpoint immune checkpoint genes

As the most frequently used animal model, mice have been widely applied in the evaluation of drug efficacy. However, the human immune checkpoint genes only share ~60% identity with their murine counterparts. Thus antibodies that recognize human proteins do not necessarily interact with murine proteins, making it inappropriate to use wild type mice for evaluating the in vivo efficacy of human-specific antibody. The humanized immune checkpoint mouse models (Immune-Hu models), which were independently developed by Shanghai Model Organisms Center, are ideal models to evaluate the efficacy of anti-tumor antibody therapy.

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Pharmacodynamics Analysis & Evaluation

Based on the U-GEMM repository, the pharmacodynamics evaluation service from Shanghai Model Organisms can conduct main pharmacodynamics study on the drugs for anti-inflammatory-immunity, antineoplastic, cardiovascular system, respiratory system and metabolic diseases,etc, satisfy the study requirements of different layers of in vivo experiments, mechanism investigation and molecular biological study, and confirm the effectiveness and safety of new drug(s).

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Popular Model Organisms

genetically modified organisms transgenic organisms genetically modified organisms examples

Model organisms are instrumental to the study of gene functions. Gene editing technology has always played a crucial role in the research on gene functions, diseases and drug discovery, through its application in genetic engineering of model organisms, mimicking of human diseases, as well as observation of physiological or pathological changes. In particular, the CRISPR/Cas9 technology has achieved remarkable breakthroughs in recent years, significantly improving the efficiency of genetic engineering in model organisms, and facilitating more extensive and in-depth applications of animal models in various research fields.

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Aging and Longevity Research

Humans have always been fascinated with the study of aging. Despite experiencing thousands of years of civilization, we have yet to clearly identify the mechanisms of aging. Either from the perspective of drug development or genetic research, the study of aging is undoubtedly a worthy cause.

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Immunology and Inflammation

Inflammatory mouse

Shanghai Model Organisms provides a variety of mouse models of inflammation including exarteritis, chemotherapy-induced intestinal inflammation and inflammatory bowel disease. These models can be applied in researches on the mechanism of inflammation, evaluation of drug efficacy, and others.

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Behavioral Analysis

study of animal behavior behavioral analysis

Shanghai Model Organisms' rodent behavioral analysis platform is equipped with a variety of experimental instruments used to study the classical behaviors of mice. Shanghai Model Organisms can provide single-item or complete sets of mouse behavioral analysis to assist you with your research in neurology, physiology, drug development, and drug efficacy evaluation. The Noldus behavioral analysis system is used to more comprehensively and accurately reflect the neurological and mental states of mice.

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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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U-GEMMsモデルリソースライブラリには

U-GEMMsモデルリソースライブラリには、KOモデルライブラリ、CKOモデルライブラリ、Find Cre ツールボックスマウス、遺伝的ヒト化マウス、免疫不全モデル、レポーターツールボックスマウス、蛍光トレーサーツールボックスマウス、遺伝性疾患モデルなどの複数のモデルを含む6000以上のモデルがあり、多くの人気分野をカバーしており、実験周期を効果的に短縮します。

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