Enhanced differentiation potential of pigmented human epidermal equivalents
Abstract
Abstract Melanocyte-keratinocyte interactions are vital for regulating melanogenesis and maintaining epidermal homeostasis. However, most 3D human skin equivalents lack melanocytes, limiting their relevance for pigmentation studies. To address this, we utilized a pigmented human epidermal equivalent (PmtHEE) that incorporates melanocytes into the epidermis. Using single-cell RNA sequencing (scRNA-seq), we characterized PmtHEE and compared it with neonatal foreskin epidermis (FsEpi) and a fibroblast-containing human skin equivalent model (FibHSE). PmtHEE showed a higher proportion of differentiated cells and model-specific cell state transition paths that reflect possible in vivo trajectories. We further uncovered an inferred L1CAM-EZR-driven external signaling network using exSigNet in FsEpi and PmtHEE that may influence keratinocyte differentiation. Altogether, PmtHEE provides a distinct and physiologically relevant model of pigmented skin, with likely enhanced differentiation potential compared to conventional in vitro systems.
Article Details
Authors (6)
Yunlong Y. Jia
Julia Bajsert
Arinnae I. Kurdian
Jessica Shiu
Miguel Perez-Aso
Scott X. Atwood