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An Efficient and High Yield Method for Isolation of Mouse Dendritic Cell Subsets
Published on: April 18, 2016
In vitro evidence that Langerhans cells can adopt two functionally distinct forms capable of antigen presentation to
1Department of Microbiology and Immunology, University of Miami School of Medicine, FL 33101.
Insights
Freshly extracted Langerhans cells (LC) excel at processing native antigens, while cultured LC are better at activating T cells. This suggests distinct functions rather than immaturity in fresh LC for immune responses.
Area of Science:
- Immunology
- Cell Biology
Background:
- Langerhans cells (LC) are critical antigen-presenting cells in the epidermis.
- The functional state of LC, whether fresh or cultured, influences their immune stimulatory capacity.
Purpose of the Study:
- To compare the antigen processing and presentation capabilities of fresh epidermal LC versus cultured LC.
- To investigate the functional differences and potential roles of fresh and cultured LC in T cell activation.
Main Methods:
- Isolation of epidermal Langerhans cells (LC) from mice.
- Incubation of LC in tissue culture for 72 hours to generate cultured LC.
- Assessment of antigen processing of native ovalbumin (OVA) and presentation to OVA peptide-specific T cell hybridomas.
- Evaluation of T cell proliferation assays using autologous and allogeneic T cells.
Main Results:
- Fresh LC were superior in processing native OVA for presentation to T cells.
- Cultured LC, but not fresh LC, stimulated proliferation in autologous T cells.
- Cultured LC were more effective at stimulating allogeneic T cell proliferation.
- Fresh LC efficiently process native antigens for in situ presentation to memory/effector T cells.
- Cultured LC acquire accessory molecules that promote unprimed T cell activation.
Conclusions:
- Fresh and cultured LC possess distinct functional capabilities, not indicative of an immature-to-mature precursor-product relationship.
- Fresh LC are specialized for efficient processing and presentation of native antigens to existing T cells.
- Cultured LC, resembling those in lymph nodes, are optimized for activating naive T cells through enhanced accessory functions.
Abstract:
Monodisperse suspensions of epidermal Langerhans cells (LC) have been examined for their capacity to process and present Ag immediately upon extraction from mouse epidermis (fresh LC) and after 72 h in tissue culture (cultured LC). Cultured, but not fresh, LC stimulated proliferation among autologous T cells, whereas fresh, but not cultured, LC proved to be superior at processing native OVA for presentation to an OVA peptide-specific, MHC-restricted T cell hybridoma. Cultured LC were also more effective at stimulating proliferation among allogeneic T cells. However, a significant, but difficult to quantify, component of lymphocyte activation in these assays was derived from the ability of cultured LC to stimulate autologous T cells. It has been proposed that the superior capacity of cultured LC to stimulate T cells in these assays is due to the "immaturity" of freshly prepared LC--which "mature" during the 72-h culture interval. Based on the observation that fresh LC are superior at processing native protein Ag, we would amend the currently held notion that there is a "precursor-product" relationship between fresh and cultured LC to include the fact that these populations are differentially equipped to carry out distinct physiologic functions and that fresh LC should not, therefore, be considered "immature." We propose that fresh LC (in vitro equivalents of intraepidermal LC) can process native protein Ag with great efficiency, and can present these Ag in situ to memory and effector T cells (high affinity TCR interactions). Cultured LC (in vitro equivalents of LC that have migrated from skin to draining lymph node) exchange highly efficient Ag processing for acquisition of accessory molecules (surface ligands and secreted cytokines) that promote activation of unprimed T cells (including even low affinity TCR interactions).
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