Related Experiment Video
Updated: Aug 9, 2026

Phenotypic and Functional Analysis of Activated Regulatory T Cells Isolated from Chronic Lymphocytic Choriomeningitis Virus-infected Mice
Published on: June 22, 2016
Regulation of Langerhans cell function via blood borne factor(s)
1Schepens Eye Research Institute, Harvard Medical School, Boston, MA 02114, USA.
Insights
Mouse serum contains a factor that inhibits Langerhans cells (LC) from activating T cells in vitro. This factor may keep epidermal LC in their
Area of Science:
- Immunology
- Dermatology
- Cell Biology
Background:
- Langerhans cells (LC) are epidermal dendritic cells with labile function.
- Freshly obtained LC (fLC) activate allogeneic T cells but not autologous T cells.
- Cultured LC acquire the ability to activate both allogeneic and autologous T cells.
Purpose of the Study:
- To investigate the factors influencing LC functional transformation in vitro and in vivo.
- To identify potential in vivo factors that antagonize GM-CSF's effect on LC function.
- To understand the species-specific regulation of LC activation.
Main Methods:
- Culturing of fLC with keratinocytes or in explanted mouse skin.
- Analysis of LC surface molecule expression (MHC class I/II, B7, ICAM-1).
- Assessment of LC T cell activating capacity (allogeneic and autologous).
- Inclusion of mouse serum during different stages of LC culture.
- Testing the effect of heterologous sera on mouse LC function.
Main Results:
- Cultured LC up-regulate MHC and co-stimulatory molecules, gaining autologous T cell activation capacity.
- In vivo GM-CSF administration does not induce LC functional transformation.
- Mouse serum inhibits LC functional and phenotypic transformation in vitro, including B7 and Ia expression.
- This inhibitory effect is species-specific and can be overcome by adding serum late in culture.
Conclusions:
- A species-specific inhibitory factor in mouse serum prevents epidermal LC from acquiring T cell-activating properties in vitro.
- This serum factor likely maintains epidermal LC in a 'fresh' functional state in vivo.
- The findings reveal a novel mechanism regulating LC function and T cell interaction.
Abstract:
Langerhans cells (LC) are epidermal dendritic cells that are functionally labile. Freshly obtained LC (fLC) readily activate allogeneic T cells, but they are incapable of activating autologous T cells; and even when pulsed with antigen, they fail to activate naive, antigen-specific T cells. When fLC are cultured for 2-3 days in the presence of keratinocytes, LC swiftly up-regulate surface expression of class I and II MHC molecules, and express de novo the co-stimulatory molecules B7 and ICAM-1. In addition to displaying enhanced ability to activate allogeneic T cells, cultured LC acquire the novel functional property of activating autologous T cells. It is believed that keratinocyte-derived GM-CSF is the primary driving force responsible for the conversion of fresh to cultured LC in vitro. However, in vivo administration of GM-CSF, either intracutaneously or systematically, fails to induce LC to undergo functional transformation in situ. Moreover, despite a high level of GM-CSF in the circulation, fLC from mice bearing GM-CSF-producing tumors display no ability to activate syngeneic T cells. These observations suggest that a homeostatic factor that antagonizes the effect of GM-CSF may be present in vivo. To test this possibility, we have examined the functional properties of LC prepared from mouse skin that had been explanted in vitro for 3 days. We found that the functional and phenotypic features of these cells closely resembled those of LC cultured in single cell suspension: the cells strongly expressed B7-1 and B7-2, and displayed enhanced expression of class II MHC molecules; they readily activated naive autologous T cells. Strikingly, when explants or suspensions of fresh epidermal cells were cultured in the presence of 10% mouse serum they failed to acquire syngeneic T cell activating properties; and surface up-regulation of Ia and de novo expression of B7 was inhibited. However, the cultured cells still expressed surface Ia and readily activated allogeneic naive T cells. If mouse serum was added only during the last 24 h of culture, the LC displayed full functional transformation. Human, rabbit and bovine serum showed no inhibitory effect on mouse LC. Our data suggest that mouse serum contains a factor (or factors) that inhibits, in a species-specific manner, epidermal LC from undergoing functional transformation in vitro, and this factor may maintain epidermal LC in the 'fresh' functional program in vivo.
More Related Videos
11:48Isolation Protocol of Mouse Monocyte-derived Dendritic Cells and Their Subsequent In Vitro Activation with Tumor Immune Complexes
Published on: May 31, 2018
08:06Determination of Regulatory T Cell Subsets in Murine Thymus, Pancreatic Draining Lymph Node and Spleen Using Flow Cytometry
Published on: February 27, 2019
Related Concept Videos
Receptor Downregulation in MVBs
The EGFR can initiate signaling pathways that lead to cell proliferation, migration, and differentiation. Overexpression of EGFR stimulates cells to proliferate. Excessive EGFR activation may...
Differentiation of Common Myeloid Progenitor Cells
Regulation of Hematopoietic Stem Cells
Role of Hematopoietic Growth Factors
Thrombopoietin (TPO), mainly released by the liver,...
B Cell Activation and Differentiation
When naive B cells encounter a specific antigen that can bind to the B cell receptor (BCR) on their surface, they undergo sensitization to respond to the antigen's presence. Sensitization begins with...