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苯乙烯-马来酸共聚物共轭吡柔比星的合成及其治疗效果

Synthesis and therapeutic effect of styrene-maleic acid copolymer-conjugated pirarubicin.

作者信息

Tsukigawa Kenji, Liao Long, Nakamura Hideaki, Fang Jun, Greish Khaled, Otagiri Masaki, Maeda Hiroshi

机构信息

Institute for Drug Delivery Science, Sojo University, Kumamoto, Japan; Faculty of Pharmaceutical Sciences, Sojo University, Kumamoto, Japan.

出版信息

Cancer Sci. 2015 Mar;106(3):270-8. doi: 10.1111/cas.12592. Epub 2015 Feb 3.

Abstract

Previously, we prepared a pirarubicin (THP)-encapsulated micellar drug using styrene-maleic acid copolymer (SMA) as the drug carrier, in which active THP was non-covalently encapsulated. We have now developed covalently conjugated SMA-THP (SMA-THP conjugate) for further investigation toward clinical development, because covalently linked polymer-drug conjugates are known to be more stable in circulation than drug-encapsulated micelles. The SMA-THP conjugate also formed micelles and showed albumin binding capacity in aqueous solution, which suggested that this conjugate behaved as a macromolecule during blood circulation. Consequently, SMA-THP conjugate showed significantly prolonged circulation time compared to free THP and high tumor-targeting efficiency by the enhanced permeability and retention (EPR) effect. As a result, remarkable antitumor effect was achieved against two types of tumors in mice without apparent adverse effects. Significantly, metastatic lung tumor also showed the EPR effect, and this conjugate reduced metastatic tumor in the lung almost completely at 30 mg/kg once i.v. (less than one-fifth of the maximum tolerable dose). Although SMA-THP conjugate per se has little cytotoxicity in vitro (1/100 of free drug THP), tumor-targeted accumulation by the EPR effect ensures sufficient drug concentrations in tumor to produce an antitumor effect, whereas toxicity to normal tissues is much less. These findings suggest the potential of SMA-THP conjugate as a highly favorable candidate for anticancer nanomedicine with good stability and tumor-targeting properties in vivo.

摘要

此前,我们以苯乙烯 - 马来酸共聚物(SMA)作为药物载体,制备了一种包裹吡柔比星(THP)的胶束药物,其中活性THP通过非共价方式被包裹。我们现在已经开发出共价共轭的SMA - THP(SMA - THP共轭物),以便进一步朝着临床开发方向进行研究,因为已知共价连接的聚合物 - 药物共轭物在循环中比药物包裹的胶束更稳定。SMA - THP共轭物在水溶液中也形成胶束并表现出白蛋白结合能力,这表明该共轭物在血液循环过程中表现为大分子。因此,与游离THP相比,SMA - THP共轭物的循环时间显著延长,并且通过增强的渗透和滞留(EPR)效应具有高肿瘤靶向效率。结果,在小鼠体内对两种类型的肿瘤实现了显著的抗肿瘤效果,且无明显不良反应。值得注意的是,转移性肺肿瘤也表现出EPR效应,并且该共轭物在静脉注射一次30 mg/kg(小于最大耐受剂量的五分之一)时几乎完全减少了肺部的转移肿瘤。尽管SMA - THP共轭物本身在体外几乎没有细胞毒性(为游离药物THP的1/100),但通过EPR效应实现的肿瘤靶向积累确保了肿瘤中有足够的药物浓度以产生抗肿瘤作用,而对正常组织的毒性则小得多。这些发现表明SMA - THP共轭物作为一种在体内具有良好稳定性和肿瘤靶向特性的抗癌纳米药物的极具潜力的候选物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4718/4376435/d955f7c05245/cas0106-0270-f1.jpg

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