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Humanized model of the immune system
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iHuPBMC-T
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iHuPBMC-NK
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iHuPBMC-B
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PBMC-LT
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CD34+ HSC
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Winn model
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iHuPBMC-MHC/KO
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iHuPBMC-OncVax
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PBMC mixed inoculation model
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In vivo tumor experimental platform
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CDX
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iHuPDX
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Non-GLP Toxicology
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PK/PD
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Brain in situ model
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Other in situ models
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Hematologic tumor model system inoculation
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Creation of high interstitial tumor models
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In vitro killing experiment platform
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Immune co-culture killing model
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CDC
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In vitro killing experiment platform
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IC50
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PDC High-Throughput In Vitro Pharmacodynamics
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3D organoids
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ADCC
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T cell-mediated killing experiment
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Mouse-derived immune system model
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Tumor vaccine
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Cell therapy
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In vitro testing platform
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Non-GLP Toxicology Platform
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Non-tumor model and drug efficacy evaluation platform
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Systematic Vaccination Model
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Non-tumor model and drug efficacy evaluation platform
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Skin injury model
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Stroke model
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Liver fibrosis model
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Diabetes model
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Gouty Arthritis (GA) Model
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Pulmonary fibrosis model
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Systemic lupus erythematosus (SLE) model
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Inflammatory Bowel Disease (IBD) model
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Rheumatoid Arthritis (RA) Model
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PDX model
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PDX model
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Head and neck cancer
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Eye cancer
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Lung cancer
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Human breast cancer
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Esophageal cancer in humans
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Human gastric cancer
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Colorectal cancer
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Human liver cancer
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Bile duct cancer
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Gallbladder cancer
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Human pancreatic cancer
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Human kidney cancer
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Human Bladder Cancer
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Ureteral cancer
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Prostate cancer
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Uterine cancer
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Cervical cancer in women
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Human Ovarian Cancer
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Human skin cancer
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sarcoma
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Human Nervous System Cancer
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Embryonal carcinoma
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Human Lymphoma
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Human leukemia
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Multiple Myeloma
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Adrenal gland
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Mesothelioma
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Other people
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CDX model
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CDX model
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Head and neck cancer
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Eye cancer
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Lung cancer
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Human breast cancer
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Esophageal cancer in humans
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Human gastric cancer
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Colorectal cancer
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Human liver cancer
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Bile duct cancer
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Gallbladder cancer
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Human pancreatic cancer
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Human kidney cancer
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Human Bladder Cancer
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Ureteral cancer
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Prostate cancer
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Uterine cancer
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Cervical cancer in women
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Human Ovarian Cancer
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Human skin cancer
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sarcoma
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Human Nervous System Cancer
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Embryonal carcinoma
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Human Lymphoma
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Human leukemia
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Multiple Myeloma
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Adrenal gland
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Mesothelioma
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Other people
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Homogeneous Model
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Homogeneous Model
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Head and neck cancer
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Eye cancer
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Lung cancer
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Breast cancer
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Stomach cancer
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Liver cancer
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Bile duct cancer
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Gallbladder cancer
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Pancreatic cancer
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Kidney cancer
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Bladder cancer
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Ureteral cancer
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Prostate cancer
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Uterine cancer
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Cervical cancer
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Ovarian cancer
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Esophageal cancer
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Skin cancer
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sarcoma
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Nervous System Cancer
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Embryonal carcinoma
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Lymphoma
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Leukemia
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Multiple Myeloma
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Adrenal gland
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Mesothelioma
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Other
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Colorectal cancer
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News Center
——
InnoModels Biotechnology: Leading Provider of In Vivo Tumor Platforms
Author:
InnoModels Biotechnology
Release time:
2024-01-17
InnoModels Biotechnology has been playing an important role in the field of biomedical research, and its in vivo tumor platform has become the tool of choice for researchers conducting experiments and studies in the field of cancer. The platform's uniqueness and advanced technology have revolutionized cancer treatment and drug development.
Introduction to InnoModels's In Vivo Tumor Platform
The company's In Vivo Tumor Experimentation Platform is a comprehensive suite of tools and services designed to help scientists and researchers gain a deeper understanding of the biology of tumors, drug response, and therapeutic efficacy. The following are key features of the platform:
1. Biodiverse models:
InnoModels Biotechnology offers a wide range of tumor models covering a wide range of cancer types. This includes breast cancer, lung cancer, gastrointestinal tumors, and more, providing researchers with a wealth of options to better meet different research needs.

2. In vivo environment reduction:
The platform provides more realistic experimental conditions for research by simulating the in vivo environment, including the immune system, blood supply and other factors. This helps to more accurately assess the performance and potential efficacy of drugs in vivo.
3. Personalized therapy research:
InnoModels's platform supports personalized therapy research by allowing researchers to conduct experiments using a patient's tumor samples to better understand how different patients respond to specific treatment regimens.
Advantages of the platform
1. Highly accurate simulations:
InnoModels's in vivo tumor experimental platform successfully simulates the complexity of tumors in the human body, providing reliable data and results for research.
2. Accelerated drug development:
Researchers can utilize this platform to more rapidly assess the effectiveness and safety of drugs, thus accelerating the process of drug development.
3. Support multidisciplinary research:
The platform is not only applicable to basic science research, but also widely used in clinical research and translational medicine, providing support for multidisciplinary collaboration.
Future Prospects
InnoModels Biotechnology is committed to continuously upgrading the technical level of its in vivo tumor experimental platform in order to respond to the evolving needs of scientific research. In the future, the company plans to expand the types of models, optimize the experimental process, and combine advanced technological means to provide researchers with more comprehensive and efficient services.
Conclusion
InnoModels's in vivo tumor experimental platforms play a crucial role in the field of cancer research and treatment. By providing advanced technology and comprehensive services, the company plays a leading role in advancing cancer medicine.
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InnoModels Biotechnology (Beijing) Co., Ltd.
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TEL: +86 15711355061
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E-mail: xuyl@imodels.tech
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Address: Building 14, No. 79 West Shuangying Road, Changping District, Beijing
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