Cancer Metastasis Alert and Prevention Center, Pharmaceutical Photocatalysis of State Key Laboratory of Photocatalysis on Energy and Environment, and Fujian Provincial Key Laboratory of Cancer Metastasis Chemoprevention and Chemotherapy, College of Chemistry, Fuzhou University , Fuzhou 350116, China.
J Agric Food Chem. 2017 Aug 16;65(32):6904-6911. doi: 10.1021/acs.jafc.7b03047. Epub 2017 Aug 3.
A targeting drug delivery system (TDDS) can selectively deliver antitumor drugs to cancerous parts to improve its anticancer efficacy. Hence, a targeted drug delivery system (UA/siVEGF@MSN-FA) coloading ursolic acid (UA) and vascular endothelial growth factor (VEGF) targeted siRNA (siVEGF) based on mesoporous silica (MSN) nanocarrier modified by a folic acid (FA) molecule was designed and synthesized. The MSN-FA nanoparticles were investigated for shape, diameter, and zeta potential and and by infrared (IR) spectroscopy. FR-overexpressing HeLa cells and FR-negative HepG2 cell lines were used to evaluate the in vitro cellular uptake and the cytotoxicity of MSN-FA nanoparticles. The morphology of HeLa cells transfected with siVEGF@MSN-FA was observed using fluorescence microscopy. Our findings demonstrated that UA@MSN-FA nanoparticles were near-spherical, and the particle size was about 209 ± 9.21 nm. The MSN-FA nanocarrier not only could enhance the in vitro transfection efficiency and the stability of siVEGF but also could further improve the targeted anticancer efficacy of UA and siVEGF via the active targeting property of FA. Overall, the MSN-FA drug delivery system could serve as an excellent material in biomedical applications.
一种靶向药物传递系统(TDDS)可以将抗肿瘤药物选择性地递送到癌症部位,以提高其抗癌疗效。因此,设计并合成了一种基于介孔硅(MSN)纳米载体的靶向药物传递系统(UA/siVEGF@MSN-FA),该系统共载有乌苏酸(UA)和血管内皮生长因子(VEGF)靶向 siRNA(siVEGF),并修饰了叶酸(FA)分子。对 MSN-FA 纳米粒子的形状、直径和 zeta 电位进行了研究,并通过红外(IR)光谱进行了研究。FR 过表达的 HeLa 细胞和 FR 阴性的 HepG2 细胞系用于评估 MSN-FA 纳米粒子的体外细胞摄取和细胞毒性。用荧光显微镜观察转染了 siVEGF@MSN-FA 的 HeLa 细胞的形态。我们的研究结果表明,UA@MSN-FA 纳米粒子呈近球形,粒径约为 209 ± 9.21nm。MSN-FA 纳米载体不仅可以提高 siVEGF 的体外转染效率和稳定性,还可以通过 FA 的主动靶向特性进一步提高 UA 和 siVEGF 的靶向抗癌疗效。总的来说,MSN-FA 药物传递系统可以作为生物医学应用中的一种优异材料。