Soe Zar Chi, Ou Wenquan, Gautam Milan, Poudel Kishwor, Kim Bo Kyun, Pham Le Minh, Phung Cao Dai, Jeong Jee-Heon, Jin Sung Giu, Choi Han-Gon, Ku Sae Kwang, Yong Chul Soon, Kim Jong Oh
College of Pharmacy, Yeungnam University, 214-1, Dae-Dong, Gyeongsan 712-749, Korea.
Department of Pharmaceutics, University of Pharmacy (Mandalay), Mandalay-Lashio Rd, Mandalay 05011, Myanmar.
Pharmaceutics. 2019 Oct 30;11(11):562. doi: 10.3390/pharmaceutics11110562.
In this study, we investigated the active targeted delivery of a hydrophobic drug, paclitaxel (PTX), via receptor-mediated endocytosis by folate receptors expressed on cancer cells using a protein-based nanoparticle system. PTX was loaded on zein nanoparticles and conjugated with folate (PTX/Zein-FA) to estimate its chemotherapeutic efficacy in folate receptor-expressing KB cancer cells. PTX/Zein-FA nanoparticles were successfully developed, with a nanoparticle size of 180 nm and narrow polydispersity index (0.22). Accelerated release of PTX in an acidic environment was observed for PTX/Zein-FA. An in vitro cellular study of PTX/Zein-FAs in KB cells suggested that PTX/Zein-FA improved the cytotoxic activity of PTX on folate receptors overexpressed in cancer cells by inducing proapoptotic proteins and inhibiting anti-apoptotic proteins. In addition, PTX/Zein-FA exhibited anti-migratory properties and could alter the cell cycle profile of KB cells. A549 cells, which are folate receptor-negative cancer cells, showed no significant enhancement in the in vitro cellular activities of PTX/Zein-FA. We describe the antitumor efficacy of PTX/Zein-FA in KB tumor-bearing mice with minimum toxicity in healthy organs, and the results were confirmed in comparison with free drug and non-targeted nanoparticles.
在本研究中,我们使用基于蛋白质的纳米颗粒系统,研究了疏水性药物紫杉醇(PTX)通过癌细胞上表达的叶酸受体介导的内吞作用进行主动靶向递送。将PTX负载于玉米醇溶蛋白纳米颗粒上,并与叶酸偶联(PTX/Zein-FA),以评估其在表达叶酸受体的KB癌细胞中的化疗效果。成功制备了PTX/Zein-FA纳米颗粒,其纳米颗粒尺寸约为180 nm,多分散指数较窄(约0.22)。观察到PTX/Zein-FA在酸性环境中PTX加速释放。对KB细胞中PTX/Zein-FA的体外细胞研究表明,PTX/Zein-FA通过诱导促凋亡蛋白和抑制抗凋亡蛋白,提高了PTX对癌细胞中过表达的叶酸受体的细胞毒活性。此外,PTX/Zein-FA表现出抗迁移特性,并可改变KB细胞的细胞周期分布。叶酸受体阴性癌细胞A549细胞中,PTX/Zein-FA的体外细胞活性未显示出显著增强。我们描述了PTX/Zein-FA在荷KB瘤小鼠中的抗肿瘤疗效,对健康器官的毒性最小,并且与游离药物和非靶向纳米颗粒相比,结果得到了证实。