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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 iHuPDX Platform
Author:
InnoModels
Release time:
2024-08-14
In the field of biomedicine, innovation is an important driving force for technological advancement and clinical application. With its iHuPDX (Individualized Human Patient-Derived Xenograft) platform, InnoModels Biotechnology (Beijing) Co., Ltd. is bringing unprecedented changes to cancer research and treatment. This platform not only demonstrates InnoModels' profound strength in the field of personalized medicine, but also provides new hope and possibilities for tumor treatment.
Core Advantages of iHuPDX Technology
iHuPDX technology is a xenotransplantation technology based on individual patient's tumor cells, the core of which lies in the establishment of a tumor model that is highly close to the actual situation of the patient. Cancer tissue samples are collected from patients and transplanted into animals such as mice to form individualized transplanted tumors. This highly individualized disease model can not only more accurately simulate the biological characteristics of the patient's tumor growth, metastasis, and drug response, but also provide doctors with an important basis for a comprehensive understanding of the patient's tumor characteristics.
Strong support for precision medicine
Traditional tumor models are often based on standardized cell lines or tissue samples, which cannot fully reflect the uniqueness of a patient's tumor. The iHuPDX platform, on the other hand, is derived directly from the patient's tumor cells, and is therefore able to more accurately simulate the actual condition of the patient's tumor. This technology provides an important basis for the development of personalized treatment plans, enabling physicians to select the most appropriate drug combinations and dosages for patients prior to treatment, thereby increasing the success rate of treatment and reducing unnecessary risks.

Accuracy of Drug Response Prediction
The iHuPDX platform also has significant advantages in drug response prediction. Due to the high degree of similarity between the model and the patient's tumor, researchers can test the response of different drugs on the model against a specific patient's tumor, thereby predicting the drug's efficacy and possible side effects in the patient. This predictive ability provides physicians with important decision support, allowing for more scientific and precise treatment planning.
Stability and Growth Rate of the Technology
The iHuPDX platform also excels in technology stability and growth rate. With advanced primary cell inoculation technology, the model is able to achieve early and uniform growth, ensuring that efficacy experiments are conducted within the optimal window. At the same time, the homogenization of the same batch of samples is ensured through the modeling of cell suspensions, resulting in a high degree of consistency in the growth rate and biological characteristics of the models. This stability not only ensures the reliability of experimental results, but also reduces experimental and time costs.
New breakthrough in tumor immunity research
InnoModels Biotechnology also combined the iHuPDX platform with the humanized model of the PBMC immune system, providing a more ideal model for tumor immunity research. This combination enables the model to simulate not only tumor growth and drug response, but also the interaction between the tumor and the immune system. This provides a powerful tool for a deeper understanding of tumor immune mechanisms and the development of new immunotherapies, driving further development in the field of tumor therapy.
Future Prospects of InnoModels Biotechnology
InnoModels Biotechnology (Beijing) Co., Ltd. is confident in the future of the iHuPDX platform. With the deepening of biomedical research and continuous technological innovation, iHuPDX platform is expected to play a more important role in the field of personalized medicine. In the future, we can expect to see more research results and application scenarios related to iHuPDX technology, which will bring more accurate and effective treatment solutions to patients.
Since its establishment, InnoModels Biotechnology has been committed to promoting innovation in the field of biomedicine and has established several unique modeling platforms, including the iHuPDX platform. The Company has not only made remarkable achievements in the field of new drug development, but also helped the industry develop at a rapid pace by providing the most clinically referenced preclinical research support to innovators in oncology and tumor immunotherapy.
In summary, with its high degree of individualization, accurate drug response prediction and stable and reliable growth characteristics, the iHuPDX platform of InnoModels Biotechnology has become an important support for personalized precision medicine. In the future, with the continuous development and improvement of the technology, iHuPDX platform will play an even more important role in the field of cancer treatment, bringing hope and gospel to more patients.
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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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