Zhang Huiyun, Xu Wenqian, Omari-Siaw Emmanuel, Liu Yingkun, Chen Baoding, Chen Deyu, Yu Jiangnan, Xu Ximing
a Department of Pharmaceutics, School of Pharmacy, Center for Nano Drug/Gene Delivery and Tissue Engineering , Jiangsu University , Zhenjiang , People's Republic of China.
b Department of Ultrasound , The Affiliated Hospital of Jiangsu University , Zhenjiang , People's Republic of China.
Drug Deliv. 2017 Nov;24(1):1170-1178. doi: 10.1080/10717544.2017.1365393.
Periplocymarin (PPM), a cardiac glycoside, has a narrow therapeutic index, poor tumor selectivity and severe cardiovascular toxicity which hinder its wide clinical applications in cancer treatment. Herein, we report novel redox-responsive prodrug-nanoparticles (MPSSV-NPs) self-assembled by co-nanoprecipitation of PPM-vitamin E conjugate and a PEG derivative of linoleate (mPEG2000-LA) in water. It was found that the characteristics of PPM-vitamin E nanoparticles (PSSV-NPs) were improved through co-nanoprecipitation with increased percentages of mPEG2000-LA. Moreover, the MPSSV-NPs were optimized according to the in vitro release and cytotoxicity study. Furthermore, the optimized MPSSV-NPs dramatically enhanced the circulation time and tumor distribution of PSSV-NPs after single intravenous injection. The in vivo studies in malignant H-bearing mice revealed that MPSSV-NPs could effectively suppress tumor growth without causing obvious systemic toxicity. Altogether, these results suggested that MPSSV-NPs could offer a safe, multifunctional and viable nanoplatform for cardiac glycosides in cancer treatment.
杠柳毒苷(PPM)是一种强心苷,其治疗指数窄、肿瘤选择性差且具有严重的心血管毒性,这阻碍了它在癌症治疗中的广泛临床应用。在此,我们报道了一种新型的氧化还原响应前药纳米颗粒(MPSSV-NPs),它是由PPM-维生素E共轭物与亚油酸聚乙二醇衍生物(mPEG2000-LA)在水中共沉淀自组装而成。研究发现,通过与mPEG2000-LA的百分比增加进行共沉淀,PPM-维生素E纳米颗粒(PSSV-NPs)的特性得到了改善。此外,根据体外释放和细胞毒性研究对MPSSV-NPs进行了优化。此外,优化后的MPSSV-NPs在单次静脉注射后显著延长了PSSV-NPs的循环时间并增强了其在肿瘤中的分布。对荷恶性肿瘤小鼠的体内研究表明,MPSSV-NPs可以有效抑制肿瘤生长而不引起明显的全身毒性。总之,这些结果表明,MPSSV-NPs可以为强心苷在癌症治疗中提供一个安全、多功能且可行的纳米平台。