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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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Prostate 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:3D Organoid Platform Features
Author:
InnoModels
Release time:
2024-05-07
In the field of biomedicine, we have been searching for a technology that can better mimic the structure and physiological functions of complex organs in the human body. This quest has been dramatically demonstrated in the 3D organoid platform from InnoModels Biotechnology. With its unique advantages, this platform is gradually leading a new trend in biomedical research.
1. Multi-cell type support: simulating complex organ structures
The 3D organoid platform of InnoModels Biotechnology supports the self-assembly of multiple cell types, which can simulate complex organ structures, such as liver, heart, lungs, etc. This feature allows researchers to simulate complex organ structures in vivo. This feature allows researchers to more realistically simulate the physiological and pathological processes of organs in the human body in an in vitro environment, thus providing an experimental platform closer to the actual biological environment for disease research and drug development.

2、Physiological function restoration: closer to the biological characteristics of internal organs
Through carefully designed culture conditions and support structures, the 3D organoid platform can better restore the physiological functions of organoids. This high degree of physiological reproducibility makes the results of in vitro experiments more informative and provides more accurate guidance for drug development and disease treatment.
3、High-throughput screening: accelerating the drug development and evaluation process
In addition to providing a highly restorative biological environment, the 3D organoid platform of InnoModels Biotechnology also supports high-throughput experiments. This feature greatly accelerates the drug screening and evaluation process, thus shortening the drug development cycle and bringing earlier treatment opportunities to patients with diseases.
In conclusion, the 3D organoid platform of InnoModels Biotechnology opens up a new path for biomedical research with its unique features of multi-cell type support, physiological function reduction and high-throughput screening. The emergence of this platform not only improves the accuracy and reliability of in vitro experiments, but also accelerates the process of drug development and evaluation, bringing new hope for disease treatment. With the continuous development and improvement of the technology, we have reason to believe that the 3D organoid platform of InnoModels will bring more surprises and breakthroughs to the biomedical field in the future.
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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