Hepatobiliary Pancreatic Surgery Division 1, Hainan Cancer Hospital, No. 9, Changbin West Fourth Street, Xiuying District, Haikou, 570100, Hainan, People's Republic of China.
Department of Integrated Traditional Chinese and Western Medicine, Hainan Cancer Hospital, Haikou, 570100, Hainan, People's Republic of China.
Hum Cell. 2024 Sep;37(5):1505-1521. doi: 10.1007/s13577-024-01105-7. Epub 2024 Jul 29.
The electrospun nanofiber system is correlated with high efficacy of drug delivery. This study aims to investigate the effect of nanofiber-based delivery of evodiamine, an indole alkaloid derived from Rutaceae plants Evodia rutaecarpa (Juss.) Benth, on intrahepatic cholangiocarcinoma (ICC), as well as to explore the molecular mechanisms. An electrospun nanofiber system carrying evodiamine was generated. Compared to evodiamine treatment alone, the nano-evodiamine exhibited more pronounced effects on suppressing proliferation, colony formation, invasiveness, migration, apoptosis resistance, cell cycle progression, and in vivo tumorigenesis of two ICC cell lines (HUCC-T1 and RBE). ICC cells exhibited increased expression of histone deacetylase 4 (HDAC4) while decreased tropomyosin 1 (TPM1). HDAC4 suppressed TPM1 expression by removing H3K9ac modifications from its promoter. Nano-evodiamine reduced HDAC4 protein levels in ICC cells, thus promoting transcription and expression of TPM1. Either overexpression of HDAC4 or downregulation of TPM1 negated the tumor-suppressive effects of nano-evodiamine. Collectively, this study demonstrates that the electrospun nanofiber system enhances the efficiency of evodiamine. Additionally, evodiamine suppresses the malignant properties of ICC cells. The findings may provide fresh insights into the application of electrospun nanofiber system for drug delivery and the effects of evodiamine on tumor suppression.
电纺纳米纤维系统与药物输送的高效性相关。本研究旨在探讨电纺纳米纤维递送吴茱萸碱(一种源自芸香科植物吴茱萸 Evodia rutaecarpa(Juss.)Benth 的吲哚生物碱)对肝内胆管癌(ICC)的影响,并探索其分子机制。生成了载有吴茱萸碱的电纺纳米纤维系统。与单独使用吴茱萸碱相比,纳米吴茱萸碱对抑制两种 ICC 细胞系(HUCC-T1 和 RBE)的增殖、集落形成、侵袭、迁移、抗凋亡、细胞周期进程和体内致瘤性具有更显著的作用。ICC 细胞表现出组蛋白去乙酰化酶 4(HDAC4)表达增加,而原肌球蛋白 1(TPM1)表达减少。HDAC4 通过从其启动子上去除 H3K9ac 修饰来抑制 TPM1 表达。纳米吴茱萸碱降低了 ICC 细胞中的 HDAC4 蛋白水平,从而促进了 TPM1 的转录和表达。HDAC4 的过表达或 TPM1 的下调均否定了纳米吴茱萸碱的肿瘤抑制作用。综上所述,本研究表明电纺纳米纤维系统增强了吴茱萸碱的效率。此外,吴茱萸碱抑制了 ICC 细胞的恶性特性。这些发现可能为电纺纳米纤维系统在药物输送中的应用以及吴茱萸碱在肿瘤抑制方面的作用提供新的见解。