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Blood Analysis

Mouse serum mouse serum albumin

At Shanghai Model Organisms Center, we use an automatic biochemical analyzer to measure a specific chemical composition of serum according to the principle of photoelectric colorimetry. This can be used to assess liver and kidney functions or measure blood sugar, blood lipids, and electrolytes.

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Drug Screening

drug screening high throughput screening for drug discovery

With a comprehensive model organisms service platform that generates the mouse, zebrafish and C. elegans models, Shanghai Model Organisms enables high-throughput drug screening as well as the evaluation and research on drug efficacy, thus accelerating drug development and achieving greater accuracy in the prediction of in vivo interactions.

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薬効の分析と評価

上海南方モデル動物バイオテクノロジー株式会社(Shanghai Model Organisms Center, Inc)の薬力学的評価サービスは、二十年の業界経験を積み重ねて、自社開発のU-GEMM®モデルマウスリソースライブラリーを利用して、抗炎免疫、抗腫瘍、心臓血管系、呼吸器系、代謝性疾患など薬物のスクリーニングをする為に、研究者様の求めに応じて 、in vivo 実験、メカニズムの検討、分子生物学研究などの異なるレベルの研究ニーズを満足し、新薬の有効性と安全性を明らかにし、国内外の製薬会社、生物医薬研究機関、新薬開発センター、大学の新薬開発機関などに、専門的な薬力学的評価サービスを提供しております。

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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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Osteoporosis

osteoporosis gene osteoporosis diseases Tnfrsf11b

Tnfrsf11b (Opg) knockout mice were generated through homologous recombination and supplied by Shanghai Research Center for Model Organisms. This mouse model, which is referred to as the "osteoporotic mouse", shows a typical phenotype of osteoporosis and arterial calcification, and Therefore, this animal model is ideal for drug screening and evaluation for the treatment of "human osteoporosis", in gene therapy of osteoporosis, as well as in the research on the mechanisms of interaction between osteoclasts and osteoblasts.

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Metabolic Analysis

Metabolic analysis

There are many mice models used to mimic human metabolic diseases, such as diabetes and obesity, which are caused by nutritional imbalances and metabolic disorders. The detection and analysis of sugar and lipid metabolism phenotypes in these model mice are crucial for the establishment of model mice, the study of disease progression, and the research on the pathogenesis. Shanghai Model Organisms can help your research on metabolism by providing you with a series of testing tools for glucose and lipid metabolisms.

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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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Breeding Services

We will delivery the specific genotype model product within specific period by natural breeding or assisted reproduction technology. The specified breeding technologies include natural breeding, assisted reproduction, SPF purification, etc.

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About Us

Our vision is to become the leader in the field of genetically modified animal models,helping people understand the life science and improving quality of life around the world.

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Gene Knockout

gene knockout gene knockout technology knockout mice

Expedite your research with highly customizable, gene knockout mouse models that provide thorough insight into key genetic mechanisms.

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