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一种用于小鼠抗肿瘤药物双(麦芽醇)氧钒的基于聚合物的药物递送系统。

A polymer-based drug delivery system for the antineoplastic agent bis(maltolato)oxovanadium in mice.

作者信息

Jackson J K, Min W, Cruz T F, Cindric S, Arsenault L, Von Hoff D D, Degan D, Hunter W L, Burt H M

机构信息

Faculty of Pharmaceutical Sciences, University of British Columbia, Vancouver, Canada.

出版信息

Br J Cancer. 1997;75(7):1014-20. doi: 10.1038/bjc.1997.174.

Abstract

Using vanadyl sulphate, sodium orthovanadate or bis(maltolato)oxovanadium (BMOV), Cruz TF, Morgan A, Min W (1995, Mol Cell Biochem 153: 161-166) have recently demonstrated the antineoplastic effects of vanadium in mice. In this study, the antineoplastic effects of BMOV against human tumour cell lines was confirmed, and this effect was shown to depend on the prolonged exposure of the cells to the drug. We have investigated a polymeric drug delivery system for the sustained delivery of BMOV as an antineoplastic agent in mice. The objective was to design and evaluate an injectable polymer-BMOV paste that would act as a drug implant for the slow but sustained release of BMOV in the mice. In vitro studies showed that the biodegradable polymer poly (Ghlr epsilon epsilon-caprolactone) (PCL) released BMOV in a sustained manner with rates of drug release increasing with increased loading of the drug in the polymer. In vivo studies showed that PCL-BMOV paste implants produced a concentration-dependent inhibition of MDAY-D2 tumour growth via systemic drug delivery. Further in vivo studies showed that 5% BMOV-loaded PCL (containing 20% methoxypolyethylene glycol) was effective in preventing tumour regrowth of resected RIF tumour masses in mice when the PCL-BMOV paste was applied to the resected site for localized drug delivery. The results confirm the potential of vanadium as an antineoplastic agent and show that the injectable PCL-BMOV formulation releases a chemotherapeutic dose of vanadium for the systemic treatment of whole tumours as well as the localized treatment of resected RIF tumours.

摘要

克鲁兹·TF、摩根·A、闵·W(1995年,《分子与细胞生物化学》153卷:161 - 166页)最近利用硫酸氧钒、原钒酸钠或双(麦芽醇)氧钒(BMOV)证实了钒对小鼠的抗肿瘤作用。在本研究中,BMOV对人肿瘤细胞系的抗肿瘤作用得到了证实,且该作用取决于细胞对药物的长时间暴露。我们研究了一种聚合物药物递送系统,用于在小鼠体内持续递送BMOV作为抗肿瘤剂。目的是设计并评估一种可注射的聚合物 - BMOV糊剂,它将作为药物植入物,在小鼠体内缓慢但持续地释放BMOV。体外研究表明,可生物降解的聚合物聚(ε - 己内酯)(PCL)以持续方式释放BMOV,药物释放速率随聚合物中药物负载量的增加而增加。体内研究表明,PCL - BMOV糊剂植入物通过全身给药对MDAY - D2肿瘤生长产生浓度依赖性抑制。进一步的体内研究表明,当将PCL - BMOV糊剂应用于切除部位进行局部给药时,含5% BMOV的PCL(含20%甲氧基聚乙二醇)可有效防止小鼠切除的RIF肿瘤块复发。结果证实了钒作为抗肿瘤剂的潜力,并表明可注射的PCL - BMOV制剂可释放化疗剂量的钒,用于全身治疗整个肿瘤以及局部治疗切除的RIF肿瘤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ed71/2222752/1d7117f558ba/brjcancer00184-0087-a.jpg

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