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合成抗癌基因药物利用阳离子载体的内在抗肿瘤活性来治疗已形成的肿瘤。

Synthetic anticancer gene medicine exploits intrinsic antitumor activity of cationic vector to cure established tumors.

作者信息

Dufès Christine, Keith W Nicol, Bilsland Alan, Proutski Irina, Uchegbu Ijeoma F, Schätzlein Andreas G

机构信息

Cancer Research UK Centre for Oncology and Applied Pharmacology, Beatson Laboratories, University of Glasgow, Glasgow, United Kingdom.

出版信息

Cancer Res. 2005 Sep 15;65(18):8079-84. doi: 10.1158/0008-5472.CAN-04-4402.

DOI:10.1158/0008-5472.CAN-04-4402
PMID:16166279
Abstract

The systemic delivery of genetic therapies required for the treatment of inaccessible tumors and metastases remains a challenge despite the development of various viral and synthetic vector systems. Here we show that a synthetic vector system based on polypropylenimine dendrimers has the desired properties of a systemic delivery vehicle and mediates efficient transgene expression in tumors after i.v. administration. The systemic tumor necrosis factor alpha (TNFalpha) gene therapy was efficacious in the experimental treatment of established A431 epidermoid carcinoma, C33a cervix carcinoma, and LS174T colorectal adenocarcinoma. Specifically, the systemic injection of dendrimer nanoparticles containing a TNFalpha expression plasmid regulated by telomerase gene promoters (hTR and hTERT) leads to transgene expression, regression of remote xenograft murine tumors, and long-term survival of up to 100% of the animals. Interestingly, these dendrimers and, to a lesser extent, other common polymeric transfection agents also exhibit plasmid-independent antitumor activity, ranging from pronounced growth retardation to complete tumor regression. The genetic therapy as well as treatment with dendrimer alone was well tolerated with no apparent signs of toxicity in the animals. The combination of intrinsic dendrimer activity and transcriptionally targeted TNFalpha when complexed was significantly more potent than either treatment alone or when both were administered in sequence. The combination of pharmacologically active synthetic transfection agent and transcriptionally targeted antitumor gene creates an efficacious gene medicine for the systemic treatment of experimental solid tumors.

摘要

尽管已经开发出各种病毒和合成载体系统,但对于治疗难以触及的肿瘤和转移瘤所需的基因疗法的全身递送仍然是一个挑战。在此,我们表明基于聚丙烯亚胺树枝状大分子的合成载体系统具有全身递送载体所需的特性,并在静脉内给药后介导肿瘤中的有效转基因表达。全身肿瘤坏死因子α(TNFα)基因疗法在已建立的A431表皮样癌、C33a宫颈癌和LS174T结肠腺癌的实验治疗中有效。具体而言,全身注射含有由端粒酶基因启动子(hTR和hTERT)调控的TNFα表达质粒的树枝状大分子纳米颗粒会导致转基因表达、远处异种移植小鼠肿瘤消退,并且高达100%的动物长期存活。有趣的是,这些树枝状大分子以及在较小程度上其他常见的聚合物转染剂也表现出与质粒无关的抗肿瘤活性,范围从明显的生长迟缓到完全肿瘤消退。基因疗法以及单独使用树枝状大分子治疗在动物中耐受性良好,没有明显的毒性迹象。当复合时,内在树枝状大分子活性和转录靶向的TNFα的组合比单独的任何一种治疗或依次给予两者时显著更有效。具有药理活性的合成转染剂和转录靶向抗肿瘤基因的组合为实验性实体瘤的全身治疗创造了一种有效的基因药物。

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