Shomaker T Samuel, Ward Kenneth
John A. Burns School of Medicine, University of Hawai'i, Honolulu, HI 96813, USA.
Hawaii Med J. 2006 Sep;65(9):253-6.
Microarrays have dozens to millions of probes attached to an inert surface allowing high-throughput analyses of many biologic processes to be performed simultaneously on the same sample. Microarrays with nucleic acid probes are now widely used for gene expression analysis, DNA re-sequencing, single nucleotide polymorphism genotyping, and comparative genomic hybridization. This technology is accelerating research in many fields and now microarrays are moving into clinical application. This review discusses how the microarray facility at the new Kaka'ako campus of the John A. Burns School of Medicine will impact molecular diagnostics, pathogen detection, oncology, and pharmacogenomics.
微阵列在惰性表面附着有数十到数百万个探针,可在同一样本上同时对许多生物过程进行高通量分析。带有核酸探针的微阵列目前广泛用于基因表达分析、DNA重测序、单核苷酸多态性基因分型以及比较基因组杂交。这项技术正在加速许多领域的研究,现在微阵列正步入临床应用。本综述讨论了约翰·A·伯恩斯医学院新卡卡阿科校区的微阵列设施将如何影响分子诊断、病原体检测、肿瘤学和药物基因组学。