Enhanced differentiation potential of pigmented human epidermal equivalents

Y Yunlong Y. Jia J Julia Bajsert A Arinnae I. Kurdian J Jessica Shiu M Miguel Perez-Aso S Scott X. Atwood

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

Volume / Issue Vol. 1, Issue 1
Published August 04, 2026
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (6)

Y

Yunlong Y. Jia

J

Julia Bajsert

A

Arinnae I. Kurdian

J

Jessica Shiu

M

Miguel Perez-Aso

S

Scott X. Atwood