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Controlled synthesis and size effects of multifunctional mesoporous silica nanosystem for precise cancer therapy

机译:多功能介孔二氧化硅纳米系统的受控合成和尺寸效应,用于精确的癌症治疗

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Abstract Nanomaterials-based drug delivery systems display potent applications in cancer therapy, owing to the enhanced permeability and retention effect and diversified chemical modification. In this study, we have tailored and synthesized different sized mesoporous silica nanoparticles (MSNs) through reactant control to investigate the relevancy of nanoparticle size toward anticancer efficacy and suppressing cancer multidrug resistance. The different sized MSNs loaded with anticancer ruthenium complex (RuPOP) and conjugated with folate acid (FA) to enhance the selectivity between cancer and normal cells. The nanosystem (Ru@MSNs) can specifically recognize HepG2 hepatocellular carcinoma cells, thus enhance accumulation and selective cellular uptake. The smaller sized (20?nm) Ru@MSNs exhibit higher anticancer activity against HepG2 cells, while the larger sized (80?nm) Ru@MSNs exhibit higher inhibitory effect against DOX-resistant hepatocellular carcinoma cells (R-HepG2). Moreover, Ru@MSNs induced ROS overproduction in cancer cells, leading to DNA damage and p53 phosphorylation, consequently promoting cancer cells apoptosis. Ru@MSNs (80?nm) also inhibited ABCB1 and ABCG2 expression in R-HepG2 cells to prevent drug efflux, thus overcome multidrug resistance. Ru@MSNs also inhibited tumor growth in vivo without obvious toxicity in major organs of tumor-bearing nude mice. Taken together, these results verify the size effects of MSNs nanosystem for precise cancer therapy.
机译:摘要由于增强的渗透性和保留作用以及多样化的化学修饰,基于纳米材料的药物输送系统在癌症治疗中显示出强大的应用前景。在这项研究中,我们通过控制反应物量身定制并合成了不同尺寸的中孔二氧化硅纳米颗粒(MSN),以研究纳米颗粒尺寸与抗癌功效和抑制癌症多药耐药性的相关性。装有抗癌钌络合物(RuPOP)并与叶酸(FA)缀合的不同大小的MSN,可增强癌症细胞与正常细胞之间的选择性。纳米系统(Ru @ MSNs)可以特异性识别HepG2肝细胞癌细胞,从而增强积累和选择性细胞摄取。较小尺寸(20?nm)的Ru @ MSNs对HepG2细胞表现出更高的抗癌活性,而较大尺寸(80?nm)的Ru @ MSNs对DOX耐药性肝癌细胞(R-HepG2)表现出更高的抑制作用。此外,Ru @ MSNs诱导癌细胞中ROS过度产生,导致DNA损伤和p53磷酸化,从而促进癌细胞凋亡。 Ru @ MSNs(80?nm)也抑制R-HepG2细胞中的ABCB1和ABCG2表达,从而防止药物外排,从而克服了多重耐药性。 Ru @ MSNs还可以抑制体内肿瘤的生长,而对荷瘤裸鼠的主要器官没有明显的毒性。综上所述,这些结果验证了用于精确癌症治疗的MSNs纳米系统的尺寸效应。

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