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Updated: May 5, 2026

Generation and Culturing of Primary Human Keratinocytes from Adult Skin
Published on: December 22, 2017
Analysis of Intracellular Communication Reveals Consistent Gene Changes Associated with Early-Stage Acne Skin
Min Deng1, Woodvine O Odhiambo1, Min Qin1
1University of California (UCLA).
Abstract:
A comprehensive understanding of the intricate cellular and molecular changes governing the complex interactions between cells within acne lesions is currently lacking. Herein, we analyzed early papules from six subjects with active acne vulgaris, utilizing single-cell and high-resolution spatial RNA sequencing. We observed significant changes in signaling pathways across seven different cell types when comparing lesional skin samples (LSS) to healthy skin samples (HSS). Using CellChat, we constructed an atlas of signaling pathways for the HSS, identifying key signal distributions and cell-specific genes within individual clusters. Further, our comparative analysis revealed changes in 49 signaling pathways across all cell clusters in the LSS- 4 exhibited decreased activity, whereas 45 were upregulated, suggesting that acne significantly alters cellular dynamics. We identified ten molecules, including GRN, IL-13RA1 and SDC1 that were consistently altered in all donors. Subsequently, we focused on the function of GRN and IL-13RA1 in TREM2 macrophages and keratinocytes as these cells participate in inflammation and hyperkeratinization in the early stages of acne development. We evaluated their function in TREM2 macrophages and the HaCaT cell line. We found that GRN increased the expression of proinflammatory cytokines and chemokines, including IL-18, CCL5, and CXCL2 in TREM2 macrophages. Additionally, the activation of IL-13RA1 by IL-13 in HaCaT cells promoted the dysregulation of genes associated with hyperkeratinization, including KRT17, KRT16, and FLG. These findings suggest that modulating the GRN-SORT1 and IL-13-IL-13RA1 signaling pathways could be a promising approach for developing new acne treatments.
Insights
Acne vulgaris significantly alters skin cell communication, with 45 signaling pathways upregulated. Targeting GRN-SORT1 and IL-13-IL-13RA1 pathways shows promise for new acne vulgaris treatments.
Area of Science:
- Dermatology
- Immunology
- Molecular Biology
Background:
- Acne vulgaris involves complex cellular interactions within lesions.
- Current understanding of these cellular and molecular changes is limited.
Purpose of the Study:
- To analyze cellular and molecular changes in early acne lesions.
- To identify key signaling pathways and molecules involved in acne development.
Main Methods:
- Single-cell and spatial RNA sequencing of early acne papules.
- Comparative analysis of lesional skin samples (LSS) and healthy skin samples (HSS).
- CellChat analysis to construct signaling pathway atlas and identify molecular functions.
Main Results:
- Significant alterations in 49 signaling pathways across seven cell types in LSS compared to HSS.
- Upregulation of 45 signaling pathways indicates altered cellular dynamics in acne.
- Identified GRN and IL-13RA1 as key molecules; GRN promotes inflammation in macrophages, while IL-13RA1 activation in keratinocytes dysregulates hyperkeratinization genes.
Conclusions:
- Acne vulgaris profoundly impacts skin cell signaling networks.
- GRN and IL-13RA1 play critical roles in acne pathogenesis.
- Targeting GRN-SORT1 and IL-13-IL-13RA1 pathways offers potential therapeutic strategies for acne.
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