Dendritic Cell Engineering

Dendritic cell engineering is the deliberate modification of dendritic cells to control how they capture, process, and present antigens, making it a powerful approach for studying and directing immune responses. Researchers can load cells with pathogen-derived antigens or alter them genetically and biochemically to regulate maturation, costimulatory signaling, cytokine production, and migration to lymphoid tissues. Engineered cells then present peptide-MHC complexes to T cells, helping initiate or shape cellular and humoral immunity. In immunology and infection research, this strategy supports vaccine development, analysis of host-pathogen interactions, and the design of cell-based therapies that improve antigen-specific protection.

Dendritic Cell Engineering - Related Videos

Research

JoVE Journal - Immunology and Infection

T Cells Capture Bacteria by Transinfection from Dendritic Cells

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Cited by 2 •

2016

Here a protocol is presented to measure bacterial capture by CD4+ T cells which occurs during antigen presentation via transinfection from pre-infected dendritic cells (DC). We show how to perform the necessary steps: isolation of primary cells, infection of DC, DC/T cell conjugate formation, and measurement of bacterial T cell transfection.

Isolation of Mouse Lung Dendritic Cells

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Cited by 17 •

2011

A highly purified preparation of mouse lung dendritic cells is described. Specific emphasis is given to the isolation of conventional dendritic cell subset.

Bone Marrow-Derived Dendritic Cells Generation: A Method to Generate Dendritic Cells from Mouse Bone Marrow

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2023

This video describes a protocol for the generation of dendritic cells--key antigen-presenting cells that activate T cells--from the bone marrow of an adult mouse.

Research

JoVE Journal - Biology
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Engineering Cell-permeable Protein

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Cited by 12 •

2009

Protein transduction enables the direct delivery of biologically active proteins into cells. In contrast to conventional methods such as DNA transfection or viral transduction this non-invasive paradigm allows highly efficient cellular manipulation in a titratable manner circumventing cellular toxicity and the risk of oncogenic transformation by permanent genetic modification.

Culture of myeloid dendritic cells from bone marrow precursors

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Cited by 22 •

2008

This video demonstrates the procedure for differentiating myeloid dendritic cells from mouse bone marrow. Isolation of mouse tibia and femur, and processing of bone marrow are demonstrated. Pictures demonstrating cell morphology before and after differentiation, and figures depicting cell phenotype and IL-12 production following maturation using CpG are shown.

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