Cork Cancer Research Centre, Mercy University Hospital and Leslie C. Quick Jnr. Laboratory, University College Cork, Cork, Ireland.
Hum Gene Ther. 2010 Apr;21(4):405-16. doi: 10.1089/hum.2009.022.
Bacteria-mediated transfer of plasmid DNA to mammalian cells (bactofection) has been shown to have significant potential as an approach to express heterologous proteins in various cell types. This is achieved through entry of the entire bacterium into cells, followed by release of plasmid DNA. In a murine model, we show that Listeria monocytogenes can invade and spread in tumors, and establish the use of Listeria to deliver genes to tumors in vivo. A novel approach to vector lysis and release of plasmid DNA through antibiotic administration was developed. Ampicillin administration facilitated both plasmid transfer and safety control of vector. To further improve on the gene delivery system, we selected a Listeria monocytogenes derivative that is more sensitive to ampicillin, and less pathogenic than the wild-type strain. Incorporation of a eukaryotic-transcribed lysin cassette in the plasmid further increased bacterial lysis. Successful gene delivery of firefly luciferase to growing tumors in murine models and to patient breast tumor samples ex vivo was achieved. The model described encompasses a three-phase treatment regimen, involving (1) intratumoral administration of vector followed by a period of vector spread, (2) systemic ampicillin administration to induce vector lysis and plasmid transfer, and (3) systemic administration of combined moxifloxacin and ampicillin to eliminate systemic vector. For the first time, our results reveal the potential of Listeria monocytogenes for in vivo gene delivery.
细菌介导的质粒 DNA 向哺乳动物细胞的转移(细菌转染)已被证明具有很大的潜力,可用于在各种细胞类型中表达异源蛋白。这是通过整个细菌进入细胞,然后释放质粒 DNA 来实现的。在小鼠模型中,我们表明李斯特菌可以侵入和扩散到肿瘤中,并建立了利用李斯特菌将基因递送到体内肿瘤的方法。通过给予抗生素开发了一种新的载体裂解和释放质粒 DNA 的方法。氨苄青霉素的给予促进了质粒的转移和载体的安全性控制。为了进一步改进基因传递系统,我们选择了一种对氨苄青霉素更敏感、比野生型菌株致病性更低的李斯特菌衍生物。在质粒中整合一个真核转录的溶菌酶盒进一步增加了细菌的裂解。成功地将萤火虫荧光素酶基因递送到生长中的小鼠肿瘤模型和患者的乳腺癌肿瘤样本中。所描述的模型包括一个三阶段的治疗方案,涉及(1)肿瘤内给予载体,然后是载体扩散期,(2)全身给予氨苄青霉素以诱导载体裂解和质粒转移,(3)全身给予莫西沙星和氨苄青霉素联合以消除全身载体。我们的结果首次揭示了李斯特菌在体内基因传递中的潜力。