Technical Services

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  • Human-Derived Organoid Pathogen Infection Models

    This enables the rapid establishment of a human tissue-derived organoid pathogen infection model within 1-2 weeks, along with the design of pathogen-host infection experimental protocols. Comprehensive reagent services make it possible to conduct research validation and drug development projects for newly emerging and sudden viral infections, which were previously difficult to undertake due to ethical concerns or the lack of suitable models.
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  • Tumor Initiation Models

    Tumor initiation models are established through human tissue-derived organoid models, using specific gene manipulation techniques to form tumor organoids with characteristics consistent with those of tumors. This allows for real-time observation of the progression of tumor development and addresses the challenges in tumor drug development that arise due to ethical concerns and the lack of suitable models.
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  • Human Embryonic Organoid Construction and Human Development Simulation (Liver, Lung, Thyroid)

    Models of human embryonic organoids at different developmental stages, along with accompanying reagents and analytical protocols, can comprehensively elucidate the mechanisms of birth defects related to specific developmental stages, identify particular developmental time windows, and uncover the regulatory mechanisms of specific molecules during development.
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  • PDOX Construction (Nude Mice, NSG, etc., Immunodeficient Mice)

    Transplanting organoids with tissue-specific characteristics into immunodeficient mice such as nude mice or NSG mice enables dynamic simulation of tumor development and embryonic development processes, as well as high-throughput drug screening. The mouse transplantation also achieves in vivo validation.
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  • Organoid Transplantation and Regenerative Biology (NSG In Situ Humanization)

    Transplanting organoids with tissue-specific characteristics into immunodeficient mice such as nude mice or NSG mice enables dynamic simulation of tumor development and embryonic development processes, as well as high-throughput drug screening. The mouse transplantation also achieves in vivo validation.
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  • Organoid Genetic Manipulation Strategies

    Organoid genetic manipulation can utilize the dynamic simulation, high-throughput nature, and short cycle times of organoid models to flexibly perform genetic manipulations, thus enabling the study of gene functions under specific conditions.
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