Castillo L, Milano G, Santini J, Demard F, Pierrefite V
Department of Head and Neck Surgery, Pasteur Hospital, 06002 Nice cedex 1, France.
Clin Cancer Res. 1997 Nov;3(11):2137-42.
Retinoic acid receptor beta (RAR-beta) seems to be a useful intermediate marker in trials of retinoids, and the aim of this work was to describe a fast, sensitive, and routine applicable method to measure RAR-beta expression in tumor biopsies. We developed a new technique combining reverse transcription-PCR with a colorimetric ELISA detection of amplification products. The principle of this nonradioactive method is based on digoxigenin labeling of PCR products during amplification. Amplified DNA is hybridized with a biotinylated capture probe. The generated hybrid is immobilized on a streptavidin-coated microtiter plate, and detection is performed with the use of an antidigoxigenin peroxidase conjugate. We applied this method to quantify the expression of RAR-beta and an internal control (beta2 microglobulin) in laryngeal tumors. We found a detection threshold at 50 pg of PCR products, which represents a 100-fold improvement when compared to the detection limit of ethidium bromide detection. The method was reproducible (intra- and interassay reproducibilities at 7 and 5%, respectively). We used this technique for determining RAR-beta expression in 20 patients with laryngeal carcinoma and in 20 patients without cancer. The data show that the value of the RAR-beta:beta2 microglobulin ratio is decreased in tumoral versus nontumoral specimens (P = 0.0012), which is consistent with previously published results.
维甲酸受体β(RAR-β)似乎是维甲酸类药物试验中一种有用的中间标志物,本研究的目的是描述一种快速、灵敏且适用于常规检测的方法,用于测定肿瘤活检组织中RAR-β的表达。我们开发了一种新技术,将逆转录聚合酶链反应(RT-PCR)与扩增产物的比色酶联免疫吸附测定(ELISA)检测相结合。这种非放射性方法的原理基于在扩增过程中对PCR产物进行地高辛配基标记。扩增的DNA与生物素化的捕获探针杂交。生成的杂交体固定在链霉亲和素包被的微量滴定板上,并使用抗地高辛配基过氧化物酶偶联物进行检测。我们应用该方法定量检测喉肿瘤中RAR-β和内参(β2微球蛋白)的表达。我们发现PCR产物的检测阈值为50 pg,与溴化乙锭检测的检测限相比提高了100倍。该方法具有可重复性(批内和批间重复性分别为7%和5%)。我们使用该技术测定了20例喉癌患者和20例非癌患者的RAR-β表达。数据显示,肿瘤标本与非肿瘤标本相比,RAR-β:β2微球蛋白比值降低(P = 0.0012),这与先前发表的结果一致。