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Spatial and temporal control of transgene expression in vivo using a heat-sensitive promoter and MRI-guided focused ultrasound

机译:使用热敏启动子和MRI引导的聚焦超声在体内控制转基因表达的时空

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Background Among the techniques used to induced and control gene expression, a non-invasive, physical approach based on local heat in combination with a heat-sensitive promoter represents a promising alternative combination with a heat-sensitive promoter represents a promising alternative but requires accurate temperature control in vivo. MRI-guided focused ultrasound (MRI-FUS) with real-time feedback control allows automatic execution of a predefined temperature-time trajectory. The purpose of this study was to demonstrate temporal and spatial control of transgene expression based on a well-defined local hyperthermia generated by MRI-FUS. Methods Expression of the green fluorescent protein (GFP) marker gene was used. Two cell lines were derived from C6 glioma cells. The GFP expression of the first one is under the control of the CMV promoter, whereas it is under the control of the HSP70 promoter in the second one and thus inducible by heat. Subcutaneous tumours were generated by injection in immuno-deficient mice and rats. Tumours were subjected to temperatures varying from 42 to 50 ℃ for 3 to 25 min controlled by MRI-FUS and analyzed 24 h after the heat-shock. Endogenous HSP70 expression and C6 cell distribution were also analyzed. Results The results demonstrate strong expression at 50 ℃ applied during a short time period (3 min) without affecting cell viability. Induced expression was also clearly shown for temperature in the range 44-48 ℃ but not at 42 ℃. Conclusions Heating with MRI-FUS allows a tight and non-invasive control of transgene expression in a tumour.
机译:背景技术在用于诱导和控制基因表达的技术中,基于局部热量与热敏启动子结合的非侵入性物理方法代表了有前途的替代方案,与热敏启动子的结合代表了有前途的替代方案,但需要精确的温度控制体内。带有实时反馈控制的MRI引导聚焦超声(MRI-FUS)允许自动执行预定义的温度-时间轨迹。这项研究的目的是证明基于MRI-FUS产生的明确定义的局部热疗的转基因表达的时间和空间控制。方法使用绿色荧光蛋白(GFP)标记基因的表达。两种细胞系衍生自C6胶质瘤细胞。第一个的GFP表达在CMV启动子的控制下,而在第二个的HSP70启动子的控制下,因此可被热诱导。通过在免疫缺陷的小鼠和大鼠中注射产生皮下肿瘤。肿瘤在MRI-FUS的控制下于42至50℃的温度下变化3至25分钟,并在热冲击后24小时进行分析。还分析了内源性HSP70表达和C6细胞分布。结果结果表明,在短时间内(3分钟)在50℃施加强表达,而不影响细胞活力。诱导表达也清楚地显示在温度为44-48℃而不是42℃的情况下。结论MRI-FUS加热可紧密无创地控制肿瘤中的转基因表达。

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