异丙酚
乳腺癌
血管生成
免疫印迹
医学
药理学
癌症研究
癌症
模仿
重组DNA
人体乳房
癌细胞
转移
细胞
生物
化学
分子模拟
活力测定
内皮干细胞
内皮
作者
Shi-Yi Tian,Mingqing Peng,Min Li
标识
DOI:10.36721/pjps.2025.38.5.reg.13016.1
摘要
Propofol is widely used in anesthesia, but its role in breast cancer progression remains controversial. This study investigated the molecular mechanisms of propofol in breast cancer, focusing on IL-6 and tumor microenvironment modulation. Bioinformatics analysis identified IL-6 as a potential target of propofol. MCF-7 cells were treated with varying propofol concentrations (0-100 μg/mL), and cell viability was assessed via CCK-8 assay. Propofol at 50 μg/mL significantly reduced viability, while 25 μg/mL (a non-cytotoxic dose) was selected for further experiments. Western blot confirmed propofol down regulated IL-6 expression. Functional assays demonstrated that propofol suppressed migration, invasion, and angiogenesis in MCF-7 cells; and effects that were reversed by recombinant human IL-6 (rhIL-6). Molecular docking analysis further supported the interaction between propofol and IL-6. Additionally, IL-6 and VEGF-C were found to be co-expressed, suggesting a possible link between propofol and vascular mimicry inhibition. These findings indicate that propofol may exert anti-tumor effects in breast cancer by targeting IL-6, thereby inhibiting key oncogenic processes. This study provides new insights into the potential therapeutic benefits of propofol in breast cancer management.
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