Zhao Qi-ren, Li Mei-jia, Liu Jie, Song Na-ling, Chen Ai, Zhuang Xiang-lian, Liu Bing-chen
Department of Experimental Nuclear Medicine, Institute of Radiation Medicine, CAMS, PUMC, Tianjin 300192, China.
Zhongguo Yi Xue Ke Xue Yuan Xue Bao. 2002 Feb;24(1):84-8.
To develop a new nonisotopic detection method of enzyme-amplified time-resolved fluorescence (EATRF) or enzyme-amplified lanthanide luminescence (EALL) for nucleic acid hybridization assays, which can be applied extensively in clinical diagnosis.
The method combines the high affinity of biotin-streptavidin system, amplification of enzyme, and inherent advantage of lanthanide chelate with the background elimination of time-resolved fluorescence detection. The conversion of 5-fluorosalicyl phosphate to 5-fluorosalicylic acid (5-FSA) by alkaline phosphatase. The salicylic acid product forms a luminescent ternary chelate with Tb3+ and EDTA.
The dynamic range of the standard curve of EATRFA for nucleic acid hybridization assay was very wide, the range was more than third order of magnitude. The detection sensitivity was about 10 pg of target sequence. When the known target sequence was 20, 10 and 2 ng, the ratio of measured amount to known amount was 110%, 90% and 115% respectively. The main experimental conditions, for example, the irradiating time of ultraviolet rays, the concentrations of biotinylated probe, AP-SA, 5-FSAP and Tb-EDTA and the methods of washing in the related steps, have been optimized. A new stable technology of fluorescence has been developted.
EATRF detection for nucleic acid hybridization assays is a new sensitive simple method, which has a great prospect.
开发一种新的用于核酸杂交分析的酶放大时间分辨荧光(EATRF)或酶放大镧系元素发光(EALL)非同位素检测方法,该方法可广泛应用于临床诊断。
该方法将生物素-链霉亲和素系统的高亲和力、酶的放大作用以及镧系螯合物的固有优势与时间分辨荧光检测的背景消除相结合。碱性磷酸酶将5-氟水杨酸磷酸酯转化为5-氟水杨酸(5-FSA)。水杨酸产物与Tb3+和EDTA形成发光三元螯合物。
核酸杂交分析的EATRFA标准曲线动态范围非常宽,范围超过三个数量级。检测灵敏度约为10 pg目标序列。当已知目标序列为20、10和2 ng时,测量量与已知量的比值分别为110%、90%和115%。对紫外线照射时间、生物素化探针、AP-SA、5-FSAP和Tb-EDTA的浓度以及相关步骤中的洗涤方法等主要实验条件进行了优化。开发了一种新的稳定荧光技术。
用于核酸杂交分析的EATRF检测是一种新的灵敏、简单的方法,具有广阔的前景。