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首页> 外文期刊>Experimental and clinical endocrinology and diabetes: Official journal, German Society of Endocrinology [and] German Diabetes Association >Regulation of sodium-iodide-symporter gene expression in human thyrocytes measured by real-time polymerase chain reaction.
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Regulation of sodium-iodide-symporter gene expression in human thyrocytes measured by real-time polymerase chain reaction.

机译:实时聚合酶链反应测量人类甲状腺细胞中碘化钠-符号基因表达的调节。

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The sodium-iodide-symporter (NIS) plays a key role in iodination, the first step in the biosynthesis of the thyroid hormones, and is thought to be critically involved in several thyroid disorders associated with altered iodine up-take. To elucidate the pathogenic role of NIS in these diseases a sensitive technique is needed to measure human NIS gene expression. We established a real time RT-PCR for accurate quantification of hNIS mRNA levels based on fluorescence-labelled hybridisation probes in the LightCycler system. Human NIS expression was investigated in primary cultures of human thyrocytes. After optimisation of PCR conditions less than 10 molecules hNIS were detected with high sensitivity, specificity and reproducibility. Under basal conditions NIS expression varied from 83 to 593 copies per 10 6 GAPDH molecules. Stimulation of thyrocytes with TSH (0.1-10 U/ml) or forskolin (0.1-15 microM) results in a dose- and time-dependent up-regulation of NIS expression reaching a maximum at 10 mU/ml TSH (2211 +/- 761 copies) or 10 microM forskolin (1663 +/- 302 copies) after 24 h. In conclusion, we here established a real-time RT-PCR combining the advantages of rapid thermocycling and online detection of NIS mRNA amplification. The sensitive quantification of human NIS mRNA expression offered by this novel technique may improve analysis of hNIS regulation and measurement of NIS mRNA expression in small biopsies.
机译:碘化钠符号(NIS)在碘化中起着关键作用,碘化是甲状腺激素生物合成的第一步,被认为与碘摄取变化相关的几种甲状腺疾病至关重要。为了阐明NIS在这些疾病中的致病作用,需要一种敏感的技术来测量人NIS基因的表达。我们建立了实时RT-PCR,用于基于LightCycler系统中荧光标记的杂交探针准确定量hNIS mRNA水平。在人甲状腺细胞的原代培养物中研究了人NIS的表达。在优化PCR条件后,以高灵敏度,特异性和可重复性检测到少于10个分子的hNIS。在基础条件下,每10 6个GAPDH分子NIS表达从83拷贝到593拷贝。用TSH(0.1-10 U / ml)或毛喉素(0.1-15 microM)刺激甲状腺细胞会导致NIS表达的剂量和时间依赖性上调,在10 mU / ml TSH时达到最大值(2211 +/- 24小时后,取出761份)或10 microM毛喉素(1663 +/- 302份)。总之,我们在这里建立了一个实时RT-PCR,结合了快速热循环和NIS mRNA扩增在线检测的优势。这项新技术提供的人类NIS mRNA表达的灵敏定量可以改善小活检中hNIS调控的分析和NIS mRNA表达的测量。

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