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Regulation of transgene expression in muscles by ultrasound-mediated hyperthermia.

机译:超声介导的高温调节肌肉中转基因的表达。

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Heat-sensitive transgene expression systems have been proposed recently for use in gene therapy to enable both spatial and temporal control of the gene activity. The transgene was put under the control of HSP-related promoters and could be turned on by external heat treatment. While the 'heat activation' phenomenon of the HSP-related promoters in vitro had been well documented, the detailed time response and temporal regulation profile in vivo were not fully understood. We reported here the regulation of transgene luciferase expression in vivo in muscles using a custom-built ultrasound-mediated hyperthermia instrument. The effects of different heating parameters and treatment regimens were evaluated. Optimal activation of gene expression was found at 39 degrees C. Significant tissue damage was observed at 41 degrees C and above, which directly correlated with the greatly reduced gene expression. The gene constructs remained stable and silent in muscle cells, and could be turned on at a later time without losing much activity. Repeated activation was also possible, but required heat treatment at a higher temperature to overcome thermotolerance.
机译:最近已经提出了热敏转基因表达系统用于基因治疗,以实现基因活性的时空控制。转基因被置于HSP相关启动子的控制下,可以通过外部热处理将其打开。尽管已经充分证明了HSP相关启动子在体外的“热激活”现象,但尚未完全了解体内详细的时间响应和时间调节特性。我们在这里报道了使用定制的超声介导的高温仪器在体内肌肉中转基因荧光素酶表达的调节。评估了不同加热参数和处理方案的影响。发现基因表达的最佳活化在39℃。在41℃及以上观察到显着的组织损伤,这与大大降低的基因表达直接相关。该基因构建体在肌肉细胞中保持稳定和沉默,并且可以在以后打开而不会失去太多活性。重复激活也是可能的,但是需要在更高的温度下进行热处理以克服耐热性。

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