BACKGROUND: Keloid is a typical skin fibrotic disease with unclear mechanisms and limited therapeutic options. Fibroblast-induced fibrogenesis is a crucial cause of KD. However, the types of cells involved in fibroblast fibrogenesis in KD and the specific mechanisms are unclear. This study aimed to investigate the role of melanocyte-secreted melanin in promoting fibroblast fibrogenesis and its mechanism and to evaluate the potential therapeutic effect of intervening melanin in treating keloid. METHODS: The activity of pigmentation-related pathways in KD melanocytes was examined using single-cell RNA-sequence (scRNA-seq) analysis. Masson-Fontana staining or isolated melanin quantification detected the melanin levels and distribution in the skin and cells. Collagen deposition, wounding healing, and proliferation analysis were employed to integratively assess fibroblast fibrogenesis. After melanin treatment, bulk-seq identified fibroblasts' differentially expressed genes (DEGs). The iron levels were detected by Perl's staining or isolated iron quantification. Cell viability, LipidROS, and malondialdehyde assay accessed the ferroptosis levels. The therapeutic potential of ML329 was evaluated in keloid-bearing mice. RESULTS: We found the enriched skin pigmentation-related pathways in the melanocytes of keloid by single-cell RNA-sequence (scRNA-seq) analysis. We further validated increased melanin levels in keloid patients. Additionally, melanin positively correlated with the Keloid Area and Severity Index in keloid. Furthermore, melanocyte-secreted melanin significantly promoted fibroblast proliferation, migration, and collagen synthesis. Mechanically, melanin increased basal cell permeability and inflammation to facilitate its transfer to the dermis, where it further activated fibroblasts by evoking iron overload and ferroptosis resistance. Consistently, iron overload and ferroptosis resistance were validated in primary fibroblasts and skin tissues of keloid patients. Inhibition of iron overload and ferroptosis resistance effectively diminish melanin-induced fibrogenesis. Interestingly, melanin induced iron overload and ferroptosis resistance in melanocytes in an autocrine manner and further stimulated keratinocytes to take up melanin to deepen skin color by upregulating the F2R-like trypsin receptor 1 (F2RL1). In vivo, the delivery of ML329, a microphthalmia-associated transcription factor (MITF) inhibitor, could suppress melanogenesis and alleviate keloid in human keloid-bearing nude mice. Meanwhile, ML329 decreased the iron content and restored the sensitivities of ferroptosis. CONCLUSION: Collectively, melanin-lowing strategies may appear as a potential new therapeutic target for keloid.
Increased melanin induces aberrant keratinocyteâ-âmelanocyteâ-âbasalâ-âfibroblast cell communication and fibrogenesis by inducing iron overload and ferroptosis resistance in keloids.
黑色素增多会诱导瘢痕疙瘩中角质形成细胞-黑色素细胞-基底细胞-成纤维细胞之间的异常通讯和纤维化,其机制是通过诱导铁过载和铁死亡抵抗
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作者:Shi Xiangguang, Xia Xueyi, Xiao Yang, Zhang Ying, Gong Yiyi, Chen Yahui, Shi Chenyi, Wang Wei, Liu Jianlan, Huang Jia, Liu Mengguo, Xu Zhuoya, Ma Yanyun, Shi Mengkun, Wang Jiucun, Wu Wenyu
| 期刊: | Cell Communication and Signaling | 影响因子: | 8.900 |
| 时间: | 2025 | 起止号: | 2025 Mar 18; 23(1):141 |
| doi: | 10.1186/s12964-025-02116-z | 研究方向: | 细胞生物学 |
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