You Jia, Chen Yuyuan, Mohamed Alsayeh Zubaeda M, Shen Xingyu, Li Chun, Zhao Pengxuan, Chen Fei, Liu Yingqian, Xu Chuanrui
School of Pharmacy, Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430030, P. R. China.
Max Planck Institute for Polymer Research, 55128 Mainz, Germany.
Oncotarget. 2017 May 2;8(18):29808-29822. doi: 10.18632/oncotarget.16159.
WCN-21 is a new camptothecin derivative we synthesized and has desirable anti-tumor efficacy, but its aqueous solubility is very low and hurdles the further evaluation and development. In this study, we prepared nanocrystals of WCN-21 through a bottom-up approach to enhance its solubility and obtained WCN-21 nanorods (WND) and nanospheres (WNP). We investigated the crystallization of WND and WNP in different temperature and solvents and found that both temperature and solvents affect the crystal shapes and sizes. We prepared WND at 50°C and DMSO : H2O 1: 50 and WNP at 25°C and DMSO : H2O 1: 100 and found they were dispersed evenly in water with average hydrodynamic diameters 337 and 231 nm, respectively. WND and WNP increased the solubility of WCN-21 from extreme insolubility to more than 9 and 11 mM in H2O or PBS, respectively. In vitro studies showed that WND and WNP enhanced the uptake of WCN-21 in tumor cells by 3 and 9 folds, and increased cytotoxicity of WCN-21 in comparison with free WCN-21 by 5 and 6 folds, respectively. In xenograft tumor mice, intravenous injection of WND and WNP enhanced the accumulation of WCN-21 in tumor tissues and improved the anti-tumor efficacy. In addition, WND and WNP did not increase the toxicity of WCN-21 in mice. Therefore, nanocrystal is a robust tool to improve the solubility of insoluble drugs and holds a great potential in the application of drug development.
WCN-21是我们合成的一种新型喜树碱衍生物,具有良好的抗肿瘤疗效,但其水溶性非常低,阻碍了进一步的评估和开发。在本研究中,我们通过自下而上的方法制备了WCN-21纳米晶体以提高其溶解度,得到了WCN-21纳米棒(WND)和纳米球(WNP)。我们研究了WND和WNP在不同温度和溶剂中的结晶情况,发现温度和溶剂都会影响晶体的形状和大小。我们在50°C和二甲基亚砜:水1:50的条件下制备了WND,在25°C和二甲基亚砜:水1:100的条件下制备了WNP,发现它们分别以平均流体动力学直径337和231 nm均匀分散在水中。WND和WNP分别将WCN-21在水中或磷酸盐缓冲盐溶液中的溶解度从极难溶提高到了9 mM以上和11 mM以上。体外研究表明,WND和WNP使肿瘤细胞对WCN-21的摄取分别提高了3倍和9倍,并且与游离WCN-21相比,WCN-21的细胞毒性分别提高了5倍和6倍。在异种移植肿瘤小鼠中,静脉注射WND和WNP增强了WCN-21在肿瘤组织中的积累并提高了抗肿瘤疗效。此外,WND和WNP并未增加WCN-21在小鼠中的毒性。因此,纳米晶体是提高难溶性药物溶解度的有力工具,在药物开发应用中具有巨大潜力。