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Updated: Aug 8, 2026

Lymphocyte Isolation from Human Skin for Phenotypic Analysis and Ex Vivo Cell Culture
Published on: April 8, 2016
CD68 positive epidermal dendritic cells
P Petzelbauer1, D Födinger, K Rappersberger
1Department of Dermatology, University of Vienna Medical School, Austria.
Insights
Pemphigus foliaceus (PF) skin lesions show a shift from CD1a+ Langerhans cells to CD1a- dendritic cells expressing CD68. These CD68+ cells may represent transitional myelomonocytic cells transforming into Langerhans cells in PF.
Area of Science:
- Immunodermatology
- Cell Biology
- Autoimmune Diseases
Background:
- Pemphigus foliaceus (PF) is characterized by intraepidermal blistering.
- Previous studies noted an increase in CD68+ dendritic cells in PF epidermis.
- The nature of this CD68+ cell population in PF remains unclear.
Purpose of the Study:
- To investigate the phenotype and origin of intraepidermal CD68+ dendritic cells in pemphigus foliaceus.
- To compare these cells with those found in pemphigus vulgaris (PV).
Main Methods:
- Analysis of lesional skin from five PF patients and comparison with PV patients.
- Utilized a panel of monoclonal antibodies with immunoperoxidase and immunofluorescence techniques.
- Immunoelectron microscopy was employed to examine cellular ultrastructure and Birbeck granules (BG).
Main Results:
- PF epidermis showed significantly fewer CD1a+ Langerhans cells compared to PV.
- PF epidermis contained abundant bone marrow-derived (CD45+) cells expressing CD68, HLA-DR, CD11c, and CD18.
- These CD68+ cells were predominantly CD1a- and lacked BG, but a subset was CD1a+ with BG, suggesting a transitional form.
Conclusions:
- A shift occurs in PF from CD1a+/CD68- Langerhans cells to CD1a-/CD68+ dendritic cells.
- The presence of CD1a+/CD68+/BG+ cells suggests a link between Langerhans cells and CD68+ cells.
- These findings indicate CD68+ dendritic cells in PF may be transitional myelomonocytic cells differentiating into epidermal Langerhans cells.
Abstract:
In a pilot study designed to investigate immunopathologic events in the evolution of cutaneous lesions in pemphigus foliaceus, we found that in this condition the epidermis is replete with CD68+ dendritic cells. The present study was designed to investigate the nature of this novel intraepidermal CD68+ cell population. For that purpose lesional skin of five patients with PF and, for comparison, of patients with another acantholytic autoimmune disease, pemphigus vulgaris, were examined using a panel of monoclonal antibodies in a three-step immunoperoxidase technique, in an immunofluorescence double-labeling technique, and by immunoelectron microscopy. We found epidermal CD1a+ Langerhans cells significantly decreased in pemphigus foliaceus compared to pemphigus vulgaris, but pemphigus foliaceus and not pemphigus vulgaris epidermis harbored large amounts of bone marrow-derived (CD45+) cells that expressed CD68, HLA-DR, and beta 2-integrin antigens, the most pronounced expression being observed for CD11c and CD18. These epidermal CD68+ cells were of dendritic shape, were CD1a-, and lacked Birbeck granules (BG); however, a small portion of CD68+ cells was also CD1a+ and exhibited BG as revealed by immunoelectron microscopy. These findings demonstrate that in certain conditions, i.e., in pemphigus foliaceus but not in pemphigus vulgaris, there is a shift from CD1a+/CD68- epidermal Langerhans cells towards CD1a-/CD68+ dendritic epidermal cells. The detection of a small number of CD1a+/CD68+/BG+ dendritic epidermal cells may identify these cells as a link between the CD1a+/CD68+/BG+ Langerhans cells and the CD1a-/CD68+/BG- cell population and suggests that these cells represent a transitional form of myelomonocytic cells during their phenotypic and morphologic transformation into resident epidermal Langerhans cells.
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