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Effective control of tumor growth through spatial and temporal control of theranostic sodium iodide symporter ( NIS ) gene expression using a heat-inducible gene promoter in engineered mesenchymal stem cells

机译:通过在工程间充质干细胞中使用热诱导基因启动子的治疗碘化钠交响者(NIS)基因表达的空间和时间控制肿瘤生长的有效控制

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Purpose: The tumor homing characteristics of mesenchymal stem cells (MSCs) make them attractive vehicles for the tumor-specific delivery of therapeutic agents, such as the sodium iodide symporter (NIS). NIS is a theranostic protein that allows non-invasive monitoring of the in vivo biodistribution of functional NIS expression by radioiodine imaging as well as the therapeutic application of 131 I. To gain local and temporal control of transgene expression, and thereby improve tumor selectivity, we engineered MSCs to express the NIS gene under control of a heat-inducible HSP70B promoter (HSP70B-NIS-MSCs). Experimental Design: NIS induction in heat-treated HSP70B-NIS-MSCs was verified by 125 I uptake assay, RT-PCR, Western blot and immunofluorescence staining. HSP70B-NIS-MSCs were then injected i.v. into mice carrying subcutaneous hepatocellular carcinoma HuH7 xenografts, and hyperthermia (1 h at 41°C) was locally applied to the tumor. 0 - 72 h later radioiodine uptake was assessed by 123 I-scintigraphy. The most effective uptake regime was then selected for 131 I therapy. Results: The HSP70B promoter showed low basal activity in vitro and was significantly induced in response to heat. In vivo, the highest tumoral iodine accumulation was seen 12 h after application of hyperthermia. HSP70B-NIS-MSC-mediated 131 I therapy combined with hyperthermia resulted in a significantly reduced tumor growth with prolonged survival as compared to control groups. Conclusions: The heat-inducible HSP70B promoter allows hyperthermia-induced spatial and temporal control of MSC-mediated theranostic NIS gene radiotherapy with efficient tumor-selective and temperature-dependent accumulation of radioiodine in heat-treated tumors.? The author(s).
机译:目的:间充质干细胞(MSCs)的肿瘤归巢特性使其具有肿瘤特异性递送治疗剂的有吸引力的载体,例如碘化钠交响者(NIS)。 NIS是一种治疗蛋白质,允许通过放射性碘成像的功能性NIS表达的体内生物分布的非侵入性监测,以及131中的治疗施加。获得局部和时间控制转基因表达,从而改善肿瘤选择性,我们工程化MSCS在热诱导的HSP70B启动子(HSP70B-NIS-MSCs)的控制下表达NIS基因。实验设计:通过125 I吸收测定,RT-PCR,Western印迹和免疫荧光染色,验证了热处理HSP70B-NIS-MSCs中的NIS诱导。然后注射HSP70B-NIS-MSCs I.v.进入携带皮下肝细胞癌的小鼠HUH7异种移植物,并在局部施加热疗(41°C时1小时)。 0 - 72 H以后的放射碘摄取由123 I-Scintigraphy评估。然后选择最有效的摄取制度131我治疗。结果:HSP70B启动子在体外显示出低基础活性,并响应于热而显着诱导。在体内,在施用热疗后12小时看到最高肿瘤碘积累。与对照组相比,HSP70B-NIS-MSC介导的131 I治疗联合热疗导致肿瘤生长显着降低,延长存活率延长。结论:热诱导的HSP70B启动子允许高温诱导的MSC介导的治疗性NIS基因放疗的空间和时间控制,具有高效的肿瘤选择性和温度依赖性放射性碘在热处理肿瘤中的积累。作者。
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