多西紫杉醇联合二甲双胍增强转移性乳腺癌模型的抗肿瘤疗效:基于聚乙二醇化脂质体的有希望的癌症靶向。

Roghayyeh Vakili-Ghartavol, Amin Mehrabian, Farshad Mirzavi, Seyed Mahdi Rezayat, Mohammad Mashreghi, Leila Farhoudi, Sharmin Kharrazi, Kayvan Sadri, Mahmoud Reza Jaafari
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引用次数: 0

摘要

目的:二甲双胍已被证明可以杀死各种类型乳腺癌的癌症干细胞。为了同时根除乳腺癌组织中大量肿瘤细胞和罕见的肿瘤干细胞样细胞,我们采用了多西紫杉醇(DTX)联合二甲双胍(MET)的化疗方案。此外,我们还介绍了一种基于250 mM硫酸铵(SA)的主动负载方法,用于将多西他赛包封到脂质体中。方法:多西他赛和二甲双胍分别采用远程或被动负载两种不同的方法包封聚乙二醇化脂质体。表征了脂质体的大小和表面电荷。采用高效液相色谱法测定纳米脂质体中DTX的含量。在pH为6.5和7.4的磷酸盐缓冲葡萄糖溶液中评估药物释放曲线。我们检测了taxoere (TAX)的抗肿瘤活性,以及DTX和MET作为单一疗法或联合疗法的脂质体制剂。采用99mTc六甲基丙烯胺肟法研究脂质体在4T1乳腺癌BALB/c小鼠体内的生物分布。主要发现:以最佳理化性质为HSPC/mPEG2000-DSPE/Chol (DTX脂质体)和HSPC/DPPG/mPEG2000-DSPE/Chol (MET脂质体),分别以85/5/10和(55/5/5/35)的摩尔比制备最终配方。体内实验表明,游离二甲双胍或脂质体与多西他赛脂质体联合使用时,可将中位生存时间(MST)从对照组的31天延长至46天,对4T1乳腺癌小鼠模型的生存有良好的影响。此外,与相同剂量的磷酸盐缓冲盐水(PBS)和泰索帝组相比,联合治疗可显着延长寿命。此外,在联合治疗研究中,单独使用硫酸铵250 mM缓冲液制备的DTX脂质体治疗与联合治疗的疗效相似。生物分布研究显示,由于增强的渗透性和滞留效应,DTX脂质体在肿瘤中有显著的积累。结论:本研究还表明,在相同剂量下,以二甲双胍为基础的联合化疗比相应的单药化疗具有更好的疗效。研究结果证实,基于250 mM硫酸铵的脂质体可能是一种有希望的高效DTX递送和癌症靶向制剂,因此值得进一步研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Docetaxel in combination with metformin enhances antitumour efficacy in metastatic breast carcinoma models: a promising cancer targeting based on PEGylated liposomes.

Objectives: Metformin has been shown to kill cancer stem-like cells in genetically various types of breast carcinoma. With the aim to simultaneously eradicate the bulk population of tumour cells and the rare population of cancer stem-like cells in breast cancer tissues, we used the combination chemotherapy of docetaxel (DTX) with metformin (MET). Furthermore, we introduce an active loading method based on ammonium sulphate 250 mM (SA) for encapsulating docetaxel into liposomes.

Methods: Docetaxel and metformin encapsulated into PEGylated liposomes with two different methods based on remote or passive loading methods, respectively. The size and surface charge of the liposomes were characterized. DTX content in the nanoliposomes was measured by the high-performance liquid chromatography method. The drug release profiles were evaluated in phosphate-buffered dextrose 5% with the pH of 6.5 and 7.4. We examined the antitumour activity of Taxotere (TAX), and liposomal formulation of DTX and MET as a monotherapy or combination therapy. The biodistribution of liposomes was also investigated using 99mTc hexamethyl propylene amine oxime method in BALB/c mice bearing 4T1 breast carcinoma tumours.

Key findings: The final formulations were prepared according to the best physicochemical characteristics which were HSPC/mPEG2000-DSPE/Chol (DTX liposomes) and HSPC/DPPG/mPEG2000-DSPE/Chol (MET liposomes), at molar ratios of 85/5/10 and (55/5/5/35), respectively. In vivo experiments showed that when free or liposomal metformin used in combination with liposomal docetaxel, they prolonged median survival time (MST) from 31 in the control group to 46 days, which demonstrates their promising effects on the survival of the 4T1 breast carcinoma mice models. Moreover, combination therapies could significantly increase life span in comparison with phosphate-buffered saline (PBS) and Taxotere groups at the same dose. Furthermore, in the combination therapy study, treatment with DTX liposomes prepared by ammonium sulphate 250 mM buffer alone resulted in similar therapeutic efficacy to combination therapy. The biodistribution study exhibited significant accumulation of DTX liposomes in the tumours due to the Enhanced Permeability and Retention effect.

Conclusions: This study also showed that metformin-based combinatorial chemotherapies have superior efficacy versus their corresponding monotherapy counterparts at same doses. The findings confirm that liposomes based on ammonium sulphate 250 mM could be as a promising formulation for efficient DTX delivering and cancer targeting and therefore merit further investigations.

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