Exploring the Mechanism of Platycladi Cacumen in Intervening Androgenetic Alopecia Based on Network Pharmacology, Molecular Docking, and Molecular Dynamics Simulation

    February 2026 in “ Scientific Reports
    Jianing Liu, Hexiang Mei, Chuanpeng Ren, Yanyun Ma
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    Studysummary This study predicted that key components of Platycladi Cacumen, such as quercetin and apigenin, may have stable binding interactions with targets involved in androgenetic alopecia. Our plain-language summary of this paper — not a Tressless recommendation.
    This study investigates the potential of Platycladi Cacumen (PC), a traditional herb, in treating androgenetic alopecia (AGA) through network pharmacology, molecular docking, and molecular dynamics simulation. Researchers identified 32 active components and 439 targets, with quercetin, apigenin, myricetin, and hinokinin as key components. Important targets include ESR1, BCL2, INS, AR, and STAT3. The study suggests that PC may affect AGA by regulating pathways such as the HIF-1 signaling pathway. Molecular docking and dynamics simulations showed stable binding of key components to targets, indicating PC's potential efficacy in AGA intervention.
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