Comprehensive modular analyses of scar subtypes illuminate underlying molecular mechanisms and potential therapeutic targets

Author:

Liu Liang12,Lu Lantian3,Qiu Min4,Han Ning5,Dai Shijie6,Shi Shuiping4,He Shanshan1,Zhang Jing1,Yan Qingfeng1,Chen Shuqing27

Affiliation:

1. College of Life Sciences Zhejiang University Hangzhou China

2. ZJU‐Hangzhou Global Scientific and Technological Innovation Center Zhejiang University Hangzhou China

3. School of Chemistry and Molecular Biosciences The University of Queensland St Lucia Australia

4. Hangzhou Neoantigen Therapeutics Co., Ltd Hangzhou China

5. Hangzhou AI‐Nano Therapeutics Co., Ltd. Hangzhou China

6. School of Life Sciences Zhejiang Chinese Medical University Hangzhou China

7. College of Pharmaceutical Sciences Zhejiang University Hangzhou China

Abstract

AbstractPathological scarring resulting from traumas and wounds, such as hypertrophic scars and keloids, pose significant aesthetic, functional and psychological challenges. This study provides a comprehensive transcriptomic analysis of these conditions, aiming to illuminate underlying molecular mechanisms and potential therapeutic targets. We employed a co‐expression and module analysis tool to identify significant gene clusters associated with distinct pathophysiological processes and mechanisms, notably lipid metabolism, sebum production, cellular energy metabolism and skin barrier function. This examination yielded critical insights into several skin conditions including folliculitis, skin fibrosis, fibrosarcoma and congenital ichthyosis. Particular attention was paid to Module Cluster (MCluster) 3, encompassing genes like BLK, TRPV1 and GABRD, all displaying high expression and potential implications in immune modulation. Preliminary immunohistochemistry validation supported these findings, showing elevated expression of these genes in non‐fibrotic samples rich in immune activity. The complex interplay of different cell types in scar formation, such as fibroblasts, myofibroblasts, keratinocytes and mast cells, was also explored, revealing promising therapeutic strategies. This study underscores the promise of targeted gene therapy for pathological scars, paving the way for more personalised therapeutic approaches. The results necessitate further research to fully ascertain the roles of these identified genes and pathways in skin disease pathogenesis and potential therapeutics. Nonetheless, our work forms a strong foundation for a new era of personalised medicine for patients suffering from pathological scarring.

Publisher

Wiley

Subject

Dermatology,Surgery

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