Gosselink John V, Hayashi Shizu, Chau Edmond, Cooper Joel, Elliott W M, Hogg James C
St. Paul's Hospital, The James Hogg iCAPTURE Centre for Cardiovascular and Pulmonary Research and University of British Columbia, Vancouver, British Columbia.
COPD. 2007 Jun;4(2):91-105. doi: 10.1080/15412550701246427.
Small airway obstruction and emphysematous destruction account for the airflow limitation that defines chronic obstructive pulmonary disease (COPD). While laser capture microdissection (LCM) allows gene expression studies in small airways separately from the surrounding parenchyma, tissue size limits the number of genes examined. The present study evaluates the Clontech SMART amplification to test the hypothesis that this amplification provides RNA in sufficient quantity and quality to evaluate large numbers of genes in airways < 2 mm diameter obtained by LCM. Commercial reference RNA was amplified 200-fold and the expression levels of 51 genes relative to the unamplified RNA had a correlation coefficient of 0.84. For two pairs of RNA preparations (commercial placenta versus commercial lung; lung sections prepared for LCM from GOLD 0 (at risk for COPD) versus GOLD 2 (moderate disease) patients linear regression of Delta Ct's (delta cycle thresholds) of unamplified versus amplified RNA gave correlation coefficients of R = 0.95. In RNA from microdissected small airways, expression patterns in all GOLD classes of COPD severity were very similar between unamplified and amplified RNA. We conclude that SMART amplification provides cDNA sufficient for studying large numbers of genes even in laser-captured small airways and this cDNA maintains the relative expression found in corresponding unamplified RNAs.
小气道阻塞和肺气肿性破坏导致了气流受限,这是慢性阻塞性肺疾病(COPD)的定义特征。虽然激光捕获显微切割(LCM)能够在小气道中单独于周围实质进行基因表达研究,但组织大小限制了所检测基因的数量。本研究评估了Clontech SMART扩增技术,以检验这一假设:该扩增技术能够提供数量和质量充足的RNA,用于评估通过LCM获得的直径<2 mm的气道中的大量基因。将商业参考RNA扩增200倍,51个基因相对于未扩增RNA的表达水平的相关系数为0.84。对于两对RNA样本(商业胎盘RNA与商业肺RNA;分别从GOLD 0(COPD风险患者)和GOLD 2(中度疾病)患者中为LCM制备的肺切片RNA),未扩增RNA与扩增RNA的ΔCt(Δ循环阈值)的线性回归给出的相关系数R = 0.95。在显微切割的小气道RNA中,未扩增RNA和扩增RNA之间,所有COPD严重程度GOLD分级中的表达模式都非常相似。我们得出结论,SMART扩增技术能够提供足够的cDNA用于研究大量基因,即使是在激光捕获的小气道中,并且这种cDNA能够维持相应未扩增RNA中的相对表达。