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Updated: Jan 24, 2026

Isolation of Papillary and Reticular Fibroblasts from Human Skin by Fluorescence-activated Cell Sorting
Published on: May 7, 2019
Isolation of Papillary and Reticular Fibroblasts from Human Skin by Fluorescence-activated Cell Sorting
Ana Korosec1, Sophie Frech1, Beate M Lichtenberger2
1Skin, Endothelium Research Division, Department of Dermatology, Medical University of Vienna.
Abstract:
Fibroblasts are a highly heterogeneous cell population implicated in the pathogenesis of many human diseases. In human skin dermis, fibroblasts have traditionally been attributed to the superficial papillary or lower reticular dermis according to their histological localization. In mouse dermis, papillary and reticular fibroblasts originate from two different lineages with diverging functions regarding physiological and pathological processes and a distinct cell surface marker expression profile by which they can be distinguished. Importantly, evidence from explant cultures from superficial and lower dermal layers suggest that at least two functionally distinct dermal fibroblasts lineages exist in human skin dermis as well. However, unlike for mouse skin, cell surface markers enabling the discrimination of different fibroblast subsets have not yet been established for human skin. We developed a novel protocol for the isolation of human papillary and reticular fibroblast populations via fluorescence-activated cell sorting (FACS) using the two cell surface markers Fibroblast Activation Protein (FAP) and Thymocyte antigen 1 (Thy1)/CD90. This method enables the isolation of pure fibroblast subsets without in vitro manipulation, which was shown to affect gene expression, thus permitting accurate functional analysis of human dermal fibroblast subsets in regard to tissue homeostasis or disease pathology.
Insights
Researchers identified specific cell surface markers to isolate distinct human papillary and reticular fibroblast populations. This breakthrough enables accurate functional analysis of these crucial cells in skin health and disease.
Area of Science:
- Dermatology
- Cell Biology
- Immunology
Background:
- Fibroblasts are heterogeneous and play roles in human diseases.
- Human skin dermis fibroblasts are localized to superficial papillary or lower reticular dermis.
- Mouse dermis fibroblasts have distinct lineages, functions, and markers, unlike human fibroblasts.
Purpose of the Study:
- To establish cell surface markers for discriminating human papillary and reticular fibroblast subsets.
- To enable accurate functional analysis of distinct human dermal fibroblast subsets without in vitro manipulation.
Main Methods:
- Developed a novel protocol for isolating human papillary and reticular fibroblasts.
- Utilized fluorescence-activated cell sorting (FACS).
- Employed cell surface markers Fibroblast Activation Protein (FAP) and Thymocyte antigen 1 (Thy1)/CD90.
Main Results:
- Successfully isolated pure human papillary and reticular fibroblast subsets.
- Enabled isolation without in vitro manipulation, preserving native gene expression.
- Established a method for distinguishing fibroblast subsets in human skin.
Conclusions:
- Identified FAP and Thy1/CD90 as key markers for human dermal fibroblast subset isolation.
- This method allows for precise functional studies of fibroblast heterogeneity.
- Facilitates understanding of fibroblast roles in tissue homeostasis and disease pathology.
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