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Application of restriction display PCR technique in the preparation of cDNA microarray probes.

机译:限制性展示PCR技术在cDNA微阵列探针制备中的应用。

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AIM: To develop a simplified and efficient method for the preparation of hepatitis C virus (HCV) cDNA microarray probes. METHODS: With the technique of restriction display PCR (RD-PCR), restriction enzyme Sau3A I was chosen to digest the full-length HCV cDNAs. The products were classified and re-amplified by RD-PCR. We separated the differential genes by polyacrylamide gel electrophoresis and silver staining. Single bands cut out from the polyacrylamide gel were isolated. The third-round PCR was performed using the single bands as PCR template. The RD-PCR fragments were purified and cloned into the pMD18-T vector. The recombinant plasmids were extracted from positive clones, and the target gene fragments were sequenced. The cDNA microarray was prepared by spotting RD-PCR products to the surface of amino-modified glass slides using a robot. We validated the detection of microarray by hybridization and sequence analysis. RESULTS: A total of 24 different cDNA fragments ranging from 200 to 800 bp were isolated and sequenced, which were the specific gene fragments of HCV. These fragments could be further used as probes in microarray preparation. The diagnostic capability of the microarray was evaluated after the washing and scanning steps. The results of hybridization and sequence analysis showed that the specificity, sensitivity, accuracy, reproducibility, and linearity in detecting HCV RNA were satisfactory. CONCLUSION: The RD-PCR technique is of great value in obtaining a large number of size-comparable gene probes, which provides a speedy protocol in generating probes for the preparation of microarrays. Microarray prepared as such could be further optimized and applied in the clinical diagnosis of HCV.
机译:目的:开发一种简单有效的方法来制备丙型肝炎病毒(HCV)cDNA微阵列探针。方法:采用限制性酶切PCR(RD-PCR)技术,选择限制性内切酶Sau3A I消化HCV全长cDNA。将产物分类并通过RD-PCR重新扩增。我们通过聚丙烯酰胺凝胶电泳和银染分离了差异基因。分离出从聚丙烯酰胺凝胶切出的单条带。使用单条带作为PCR模板进行第三轮PCR。纯化RD-PCR片段,并将其克隆到pMD18-T载体中。从阳性克隆中提取重组质粒,并对靶基因片段进行测序。通过使用机器人将RD-PCR产物点到氨基修饰的载玻片表面上来制备cDNA微阵列。我们通过杂交和序列分析验证了微阵列的检测。结果:共分离和测序了24个不同的cDNA片段,其范围为200至800 bp,它们是HCV的特异性基因片段。这些片段可以进一步用作微阵列制备中的探针。在洗涤和扫描步骤后评估微阵列的诊断能力。杂交和序列分析结果表明,检测HCV RNA的特异性,灵敏度,准确性,可重复性和线性良好。结论:RD-PCR技术在获得大量大小可比的基因探针方面具有重要价值,这为生成用于制备微阵列的探针提供了快速的方案。如此制备的微阵列可以进一步优化并应用于HCV的临床诊断。

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