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Guided learning journeys that build knowledge step by step.
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This advanced graduate-level learning path explores the emerging field of immunometabolism, focusing on how metabolic pathways in immune cells regulate their function and fate. It covers central metabolic pathways, key signaling regulators like mTOR and HIF, and the implications for inflammatory diseases. The path is designed for students with a background in immunology and basic biochemistry, building from foundational concepts to current research topics.
This path guides learners from foundational immunology through the design, engineering, manufacturing, and clinical application of CAR-T cells, culminating in an understanding of side effects and future directions. It is designed for graduate students in oncology and immunology seeking career skills in this rapidly advancing field.
This learning path equips medical laboratory scientists with the theoretical and practical knowledge to perform and interpret diagnostic immunology tests. It covers immunoassays, allergy testing, autoantibody detection, and flow cytometry for hematology, grounded in fundamental immunology.
This path equips immunology researchers with the knowledge and skills to design, execute, and interpret experiments using mouse models. It covers essential basic immunology, genetic manipulation techniques, and common disease models, emphasizing practical considerations and data interpretation.
This learning path guides researchers through the process of analyzing immune cells within tissue samples, covering essential immunology, tissue preparation, staining, multiplexing, imaging, and data analysis. It is designed for graduate-level learners in immunology and pathology who want to develop practical skills for their research.
This learning path equips immunology and biomarker researchers with the knowledge and practical skills to accurately measure cytokines and chemokines. It covers fundamental immunology concepts, assay principles (ELISA, multiplex, bead-based, intracellular staining), and critical considerations for experimental design and data interpretation.
This advanced learning path guides immunology and biotechnology students through the complete pipeline of monoclonal antibody (mAb) production—from foundational immunology and hybridoma technology to modern recombinant methods, humanization, and diverse applications. It emphasizes laboratory techniques and the scientific rationale behind each step.
This learning path equips immunology researchers with the knowledge and skills to design, execute, and interpret assays that assess T cell function. It covers fundamental immunology, key functional assays (proliferation, cytotoxicity, cytokine release, flow-based), and practical considerations for data interpretation and troubleshooting.
This learning path provides a comprehensive understanding of enzyme-linked immunosorbent assays (ELISA) and ELISPOT, from basic immunology principles to advanced optimization and application. Designed for immunology and diagnostic lab students, it covers direct, indirect, and sandwich ELISA formats, ELISPOT methodology, and practical considerations for assay development and troubleshooting.
This path guides immunology researchers from foundational flow cytometry principles to advanced multicolor panel design, compensation, data analysis, and cell sorting. It emphasizes practical application and troubleshooting for high-dimensional immunophenotyping.