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一种用于提高溶解度、增强抗肿瘤效果并降低全身毒性的卡巴他赛脂质体。

A cabazitaxel liposome for increased solubility, enhanced antitumor effect and reduced systemic toxicity.

作者信息

Yin Xiaoyi, Luo Lihua, Li Wei, Yang Jie, Zhu Chunqi, Jiang Mengshi, Qin Bing, Yuan Xiaoling, Yin Hang, Lu Yichao, Du Yongzhong, Chen Dawei, You Jian

机构信息

College of Pharmacy, Shenyang Pharmaceutical University, Shenyang 110016, China.

College of Pharmaceutical Sciences, Zhejiang University, Hangzhou 310058, China.

出版信息

Asian J Pharm Sci. 2019 Nov;14(6):658-667. doi: 10.1016/j.ajps.2018.10.004. Epub 2018 Nov 20.

Abstract

The potential side effects of cabazitaxel (CBZ) in the field of cancer treatment have become a great limitation to its further clinical application. Liposomal delivery is a well-established approach to increase the therapeutic index of hydrophobic drugs. In this study, a PEG-modified liposome was developed for efficiently encapsulating CBZ, thus enhancing its specific tumor inhibition effect and reducing the systemic toxicity. It was found that the loading efficiency of CBZ into the liposome could be improved with the increase of lipophilic materials, as it could be over 80% under the weight ratio of 20:1 (total lipid: CBZ). The diameter of CBZ loaded liposome (CBZ@Lipo) was ∼100 nm. And the liposome suspending in aqueous medium was stable at 4 °C for at least one month, according to the change of its size distribution. The killing ability of CBZ@Lipo to cancer cells was significantly lower comparing to that of CBZ solution, which could be attributed to the slow release of CBZ from the liposomes. However, CBZ@Lipo could induce an obvious apoptosis of the cancer cells at low concentration. Furthermore, CBZ@Lipo exhibited an expressively enhanced tumor growth inhibition effect comparing to CBZ solution. More importantly, CBZ@Lipo showed an obviously higher biosafety proved by lower hemolysis probability, stable body weight of mice during the whole experiment and no obvious lesion in histology analysis. Our work provided a useful reference of the formulation of CBZ, which had potential for greater clinical application.

摘要

卡巴他赛(CBZ)在癌症治疗领域的潜在副作用已成为其进一步临床应用的重大限制。脂质体递送是一种成熟的提高疏水性药物治疗指数的方法。在本研究中,开发了一种聚乙二醇修饰的脂质体以有效包封CBZ,从而增强其特异性肿瘤抑制作用并降低全身毒性。发现随着亲脂性材料的增加,CBZ在脂质体中的装载效率可以提高,在20:1(总脂质:CBZ)的重量比下可以超过80%。负载CBZ的脂质体(CBZ@Lipo)的直径约为100 nm。根据其大小分布的变化,悬浮在水性介质中的脂质体在4℃下至少稳定一个月。与CBZ溶液相比,CBZ@Lipo对癌细胞的杀伤能力明显较低,这可能归因于CBZ从脂质体中的缓慢释放。然而,CBZ@Lipo在低浓度下可诱导癌细胞明显凋亡。此外,与CBZ溶液相比,CBZ@Lipo表现出明显增强的肿瘤生长抑制作用。更重要的是,较低的溶血概率、整个实验过程中小鼠体重稳定以及组织学分析中无明显病变证明CBZ@Lipo具有明显更高的生物安全性。我们的工作为CBZ的制剂提供了有用的参考,具有更大的临床应用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1432/7032206/0c6959bcb777/fx1.jpg

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