Hong Jingyi, Sun Zhonghao, Li Yijing, Guo Yifei, Liao Yonghong, Liu Meifeng, Wang Xiangtao
Key Laboratory of Bioactive Substances and Resources Utilization of Chinese Herbal Medicine, Institute of Medicinal Plant Development, Chinese Academy of Medical Sciences & Peking Union Medical College, Beijing.
Key Laboratory of Functional Molecular Engineering of Guangdong Province, School of Chemistry and Chemical Engineering, South China University of Technology, Guangzhou, China.
Int J Nanomedicine. 2017 Jul 14;12:5053-5067. doi: 10.2147/IJN.S134284. eCollection 2017.
Annonaceous acetogenins (ACGs) are a large family of fatty acid derived natural products that are exclusively isolated from the species. Many members of this diverse family have a broad spectrum of biological activities, the most impressive of which is anticancer activity. However, their poor solubility and severe toxicity restrict their clinical application, and their complicated composition hinders their formulation and drug delivery. In this study, β-cyclodextrin was modified with folic acid (FA) and then combined with soybean lecithin to prepare FA-modified ACGs nanosuspensions (FA-ACGs-NSps). The obtained FA-ACGs-NSps had a high drug payload of 57.59% and average particle size of 199.5 nm, and they exhibited sustained drug release within 142 hours. In comparison with ACGs-NSps, FA-ACGs-NSps showed significantly enhanced cytotoxicity and higher cell uptake toward folate receptor-positive 4T1 cell lines. An in vivo study demonstrated that FA-ACGs-NSps more effectively accumulated in tumors and enhanced the antitumor therapeutic efficacy with less toxicity in 4T1 tumor bearing mice. Therefore, FA-ACGs-NSps may be a promising drug delivery system for ACGs to improve their therapeutic window and may be suitable for clinical application to treat folate-positive tumors.
番荔枝科乙酰精宁(ACGs)是一类从该物种中分离得到的、由脂肪酸衍生而来的天然产物大家族。这个多样化家族的许多成员具有广泛的生物活性,其中最引人注目的是抗癌活性。然而,它们的低溶解度和严重毒性限制了其临床应用,并且其复杂的成分阻碍了它们的制剂和药物递送。在本研究中,用叶酸(FA)修饰β-环糊精,然后与大豆卵磷脂结合制备FA修饰的ACGs纳米混悬液(FA-ACGs-NSps)。所制备的FA-ACGs-NSps具有57.59%的高载药量和199.5nm的平均粒径,并且在142小时内呈现药物缓释。与ACGs-NSps相比,FA-ACGs-NSps对叶酸受体阳性的4T1细胞系显示出显著增强的细胞毒性和更高的细胞摄取。一项体内研究表明,FA-ACGs-NSps在4T1荷瘤小鼠中更有效地在肿瘤中蓄积,并增强了抗肿瘤治疗效果,同时毒性更小。因此,FA-ACGs-NSps可能是一种有前景的ACGs药物递送系统,可改善其治疗窗口,可能适用于临床治疗叶酸阳性肿瘤。