分子生物学
IVD分子诊断
细胞培养与分析
蛋白研究
细胞因子
重组蛋白
抗体
高通量测序建库
病原检测UCF系列
生物医药
工具酶
抑制剂激活剂与常用试剂
仪器
耗材

A network pharmacology and molecular docking approach to investigate the anticancer mechanism of baicalin against melanoma through induction of apoptosis via EGFR-mediated PI3K/AKT pathway

Zhongshun He, Aiping Huang, Jing Lv, Jing Zhou, Wenrong Lou, Biao Xu, Xuesong Wu

Journal:Translational Cancer Research

IF:2.1

DOI:10.21037/tcr-2025-1-2777

PMID:42305502

Published:2026-05-27

research field:肿瘤学分子生物学生物信息学皮肤病学药理学

Abstract

Background Malignant melanoma is among the most aggressive and life-threatening forms of skin cancer, and effective therapeutic treatment options remain limited. Thus, there is an urgent need to develop efficient and broadly applicable anti-melanoma drugs. Growing evidence suggests that baicalin (BAI) possesses anti-cancer potential; however, its anti-tumor mechanisms in melanoma cells remain to be fully elucidated. Therefore, this study aimed to investigate whether BAI exerts anti-melanoma effects. Methods A375 melanoma cells were treated with varying concentrations of BAI to assess its effects on cell proliferation, migration, invasion, and apoptosis. Network pharmacology analysis was then employed to predict potential molecular targets of BAI in melanoma treatment. Molecular docking was used to evaluate the binding interactions between BAI and the predicted targets. Finally, in vitro experiments were performed to investigate the regulatory effects of the potential targets on A375 cell functions. Results BAI significantly inhibited A375 cell proliferation, invasion, and migration, as well as inducing apoptosis of A375 cells in a dose-dependent manner (all P<0.05). Subsequent network pharmacology analysis identified three potential therapeutic targets of BAI, among which epidermal growth factor receptor (EGFR) exhibited strong binding affinity with BAI. Further in vitro experiments demonstrated that BAI suppressed EGFR-mediated PI3K/AKT pathway activation in a dose-dependent manner. Consistent with previous findings, EGFR overexpression exerted oncogenic effects in melanoma cells by inhibiting apoptosis. Mechanistically, BAI induced apoptosis in melanoma cells by targeting the EGFR-mediated PI3K/AKT signaling pathway. Conclusions This study demonstrates that BAI exerted cytotoxic effects on melanoma cells by targeting EGFR and inhibiting the PI3K/AKT pathway, thereby inducing apoptosis. These findings suggest that BAI may serve as a promising therapeutic c

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