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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
more -
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News Center
——
InnoModels Biotechnology: What are the features of the ELISpot platform?
Author:
InnoModels
Release time:
2024-06-11
As a cutting-edge biotechnology, InnoModels' ELISpot platform has demonstrated its unique advantages in many fields such as immunomonitoring, vaccine development and cancer immunotherapy. The core features of the platform are its high sensitivity, single-cell level detection, easy and economical operation, and wide range of applications.
First, the ELISpot platform has ultra-high sensitivity. This is due to its ability to accurately identify and detect a single cytokine-secreting positive cell among millions of negative cells. This sensitivity is 2-3 orders of magnitude higher than traditional ELISA methods, allowing the ELISpot platform to accurately measure and analyze cellular activity in different biological samples. This high degree of sensitivity allows researchers to accurately capture and analyze rare immune cells, which is important for early diagnosis of disease and development of therapeutic options.
Second, the ELISpot platform performs live cell functional assays at the single-cell level. Unlike traditional population cell assays, the ELISpot platform enables precise analysis of individual cells, revealing the unique roles and functions of individual cells in the immune response. This fine-grained analysis method enables researchers to gain insight into the complexity and diversity of the immune system, providing strong support for precision treatment of diseases.

In addition, the ELISpot platform is easy and cost-effective to use. It does not require complex in vitro cell expansion, isotopes or large, specialized instrumentation. Standardized protocols allow a single experimenter to work with hundreds of samples at a time, which greatly improves the efficiency of experiments. This efficient and cost-effective operation makes the ELISpot platform ideal for laboratory and clinical research.
Last but not least, the ELISpot platform from InnoModels Biotechnology has a wide range of applications. Whether in the fields of immunology, infectious agent research, autoimmune diseases or tumor immunology, the ELISpot platform can play an important role. Its flexibility and customizability allow researchers to tailor it to specific research needs and meet the experimental requirements of different fields.
In summary, with its high sensitivity, single-cell level detection, easy and economical operation, and a wide range of applications, the ELISpot platform of InnoModels Biotechnology has become an important tool in the field of modern bioscience research. With the continuous development and improvement of the technology, it is believed that the ELISpot platform will provide powerful support for research in more fields in the future and promote the progress of biomedical research.
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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