Li Jingjing, Chen Tong, Deng Feng, Wan Jingyuan, Tang Yalan, Yuan Pei, Zhang Liangke
Chongqing Medicine Engineering Research Center, Chongqing Key Laboratory of Biochemistry and Molecular Pharmacology, School of Pharmacy, Chongqing Medical University, Chongqing, People's Republic of China.
School of Pharmaceutical Sciences, Yunnan Key Laboratory of Pharmacology for Natural Products, Kunming Medical University, Kunming, People's Republic of China.
Int J Nanomedicine. 2015 Aug 27;10:5475-87. doi: 10.2147/IJN.S88253. eCollection 2015.
We have designed and developed curcumin (Ccn)-loaded albumin nanoparticles (BNPs) surface-functionalized with glycyrrhetinic acid (Ccn-BNP-GA) for GA receptor-mediated targeting. Ccn-BNP-GA was prepared by conjugating GA as a hepatoma cell-specific binding molecule onto the surface of BNPs. Ccn-BNP-GA showed a narrow distribution with an average size of 258.8±6.4 nm, a regularly spherical shape, an entrapment efficiency of 88.55%±5.54%, and drug loading of 25.30%±1.58%. The density of GA as the ligand conjugated to BNPs was 140.48±2.784 μg/g bovine serum albumin. Cytotoxicity assay results indicated that Ccn-BNP-GA was significantly more cytotoxic to HepG2 cells and in a concentration-dependent manner. Ccn-BNP-GA also appeared to be taken up to a greater extent by HepG2 cells than undecorated groups, which might be due to the high affinity of GA for GA receptors on the HepG2 cell surface. These cytotoxicity assay results were corroborated by analysis of cell apoptosis and the cell cycle. Further, Ccn-BNP-GA showed an approximately twofold higher rate of cell apoptosis than the other groups. Moreover, proliferation of HepG2 cells was arrested in G2/M phase based on cell cycle analysis. These results, which were supported by the GA receptor-mediated endocytosis mechanism, indicate that BNPs surface-functionalized with GA could be used in targeted cancer treatment with high efficacy, sufficient targeting, and reduced toxicity.
我们设计并开发了用甘草次酸表面功能化的载姜黄素(Ccn)白蛋白纳米颗粒(BNPs)(Ccn-BNP-GA),用于甘草次酸受体介导的靶向作用。通过将作为肝癌细胞特异性结合分子的甘草次酸缀合到BNPs表面来制备Ccn-BNP-GA。Ccn-BNP-GA呈现窄分布,平均粒径为258.8±6.4 nm,形状规则呈球形,包封率为88.55%±5.54%,载药量为25.30%±1.58%。作为配体缀合到BNPs上的甘草次酸密度为140.48±2.784 μg/g牛血清白蛋白。细胞毒性试验结果表明,Ccn-BNP-GA对HepG2细胞具有显著更高的细胞毒性,且呈浓度依赖性。Ccn-BNP-GA被HepG2细胞摄取的程度似乎也比未修饰组更高,这可能是由于甘草次酸对HepG2细胞表面的甘草次酸受体具有高亲和力。细胞凋亡和细胞周期分析证实了这些细胞毒性试验结果。此外,Ccn-BNP-GA的细胞凋亡率比其他组高约两倍。而且,基于细胞周期分析,HepG2细胞的增殖在G2/M期被阻滞。这些结果得到甘草次酸受体介导的内吞作用机制的支持,表明用甘草次酸表面功能化的BNPs可用于高效、靶向性充分且毒性降低的靶向癌症治疗。