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首页> 外文期刊>Ultrasound in Medicine and Biology >Herpes simplex virus thymidine kinase-mediated suicide gene therapy using nano/microbubbles and ultrasound.
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Herpes simplex virus thymidine kinase-mediated suicide gene therapy using nano/microbubbles and ultrasound.

机译:单纯疱疹病毒胸苷激酶介导的自杀基因治疗,使用纳米/微泡和超声。

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A physical method using ultrasound (US) and nano/microbubbles (NBs) can deliver exogenous molecules noninvasively into a specific target site. In this study, we evaluated the application of this technology to cancer gene therapy using prodrug activation therapy. Low-intensity pulsed ultrasound (1 MHz; 1.3 W/cm(2)) and NBs were used to transduce the herpes simplex thymidine kinase (HSVtk) gene in vitro, leading to gene transfer. The addition of ganciclovir (GCV) to the transduced cells led to HSVtk/GCV-dependent cell death mediated by apoptosis. This technology was then assessed in vivo, using mice bearing subcutaneous tumors (1 MHz; 3.0 W/cm(2)). Gene transfer to the tumor, measured by luciferase activity, was transient, with a peak of expression 24 h after transduction, and decreased at 48 h, demonstrating the transient nature of US/NB-mediated gene transfer. The therapeutic potential of this approach was evaluated through repeated intratumoral gene delivery using US/NB-mediated transfer of the HSVtk gene, followed by recurrent administration of GCV, using two different experimental treatment protocols. In both cases, dramatic reductions of the tumor size by a factor of four were observed. Altogether, these data demonstrate the potential of US/NB as a new physical gene delivery method for cancer gene therapy. (E-mail: kodama@tubero.tohoku.ac.jp).
机译:使用超声(US)和纳米/微气泡(NB)的物理方法可以将外源分子无创地输送到特定目标部位。在这项研究中,我们评估了该技术在使用前药激活疗法的癌症基因疗法中的应用。低强度脉冲超声(1 MHz; 1.3 W / cm(2))和NB用于体外转导单纯疱疹胸苷激酶(HSVtk)基因,从而导致基因转移。更昔洛韦(GCV)添加到转导的细胞导致凋亡介导的HSVtk / GCV依赖性细胞死亡。然后使用带有皮下肿瘤(1 MHz; 3.0 W / cm(2))的小鼠在体内对该技术进行评估。通过萤光素酶活性测量的基因转移到肿瘤是瞬时的,在转导后24 h达到表达峰值,并在48 h下降,这证明了US / NB介导的基因转移的瞬时性质。通过使用US / NB介导的HSVtk基因转移重复肿瘤内基因递送,然后使用两种不同的实验治疗方案对GCV进行反复给药,评估了该方法的治疗潜力。在这两种情况下,均观察到肿瘤大小显着减小了四倍。总而言之,这些数据证明了US / NB作为癌症基因治疗的一种新的物理基因传递方法的潜力。 (电子邮件:kodama@tubero.tohoku.ac.jp)。

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