A bioinformatic single-cell and structure-informed framework identifies a baicalin-CA2-keratinocyte state axis in atopic dermatitis.

Boyan Yang, Guilin Zhou, Jun Dai

Journal: PloS one 2026;21(9):e0356174

PMID: 42726753

Abstract

Atopic dermatitis (AD) is characterized by a self-reinforcing loop between epidermal barrier dysfunction and type 2-skewed inflammation; yet the most perturbed keratinocyte states and actionable epidermal targets remain incompletely defined. We integrated pharmacogenomic target mining, complementary machine-learning feature selection (LASSO and SVM-RFE), single-cell state-resolved perturbation analyses (Augur and scDist), and structure-based molecular modeling (molecular docking, MD simulation, and MM-PBSA free energy calculation) to prioritize candidate targets of baicalin in AD. CA2 emerged as a convergent epidermal candidate; scRNA-seq analyses localized CA2-associated transcriptional differences to keratinocytes, with the keratinocyte compartment exhibiting the disease-associated strongest separability and transcriptomic distance, accompanied by enrichment of metabolic reprogramming, epithelial junction and barrier remodeling, and proliferative quiescence gene programs. Structure-based evaluation supported a computationally plausible baicalin-CA2 interaction, with an estimated MM-PBSA binding free energy of -22.082 kcal/mol. Collectively, these findings nominate a computationally supported "baicalin-CA2-Kcs9" axis as a hypothesis-generating framework for epidermal stratification and experimental prioritization in AD.

Copyright: © 2026 Yang et al. This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.

Address: Department of Dermatology, The First People's Hospital of Yibin. No. 16 Puhe East Road, Yibin, Sichuan, PR China.; Department of Dermatology, The Fourth People's Hospital of Sichuan Province, No. 12, Chengshou East Street, Jinjiang District, Chengdu, Sichuan, PR China.
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