Ogine T, Kohsaka T, Taya K
Division of Animal Sciences, Ibaraki University School of Agriculture, Japan.
Exp Clin Endocrinol Diabetes. 1999;107(4):276-80. doi: 10.1055/s-0029-1212112.
We developed and validated a new assay system for porcine relaxin that overcame the drawbacks of RIA by adapting time-resolved fluoroimmunoassay (TR-FIA), which was recently introduced as a non-RIA format. The assay system was a solid-phase TR-FIA based on competition for a polyclonal anti-porcine relaxin antibody between europium (Eu)-labeled porcine relaxin and test samples. Antibody-relaxin complexes were then bound to the second antibody coated on the solid phase, achieving rapid and complete separation of bound and free antigen. A standard curve was produced over the range of 1 pg/well to 1000 pg/well. Serum and corpus luteum extracts from pigs in late pregnancy exhibited inhibition curves parallel to that of the relaxin standard, whereas male pig serum caused no displacement of the labeled hormone. No cross-reactivity was seen with other hormones, such as insulin, LH, and FSH, indicating a high specificity of the assay. The sensitivity was 4 pg/well (80 pg/ml), which was high and equivalent to that of the porcine relaxin RIA. The intra-assay and inter-assay coefficients of variation were less than 3.8% and 6.7%, respectively. Recovery of porcine relaxin added to male pig serum sample averaged 103%. The advantages of this TR-FIA were that addition of tyrosine was not necessary for labeling, unlike the RIA, Eu-labeled relaxin was stable enough to allow long-term storage for more than one year, the assay was completed in only 5 h versus two to seven days for the RIA, and no special safety precautions were needed. To validate this TR-FIA, the serum relaxin concentrations during late pregnancy, parturition and early lactation were investigated in pigs. Serum relaxin levels determined by this assay were similar to those obtained previously by RIA. In conclusion, this TR-FIA could replace RIA as the method of choice for assay of relaxin.
我们开发并验证了一种用于猪松弛素的新检测系统,该系统通过采用时间分辨荧光免疫分析(TR-FIA)克服了放射免疫分析(RIA)的缺点,TR-FIA是最近引入的一种非RIA形式。该检测系统是一种基于铕(Eu)标记的猪松弛素与测试样品在多克隆抗猪松弛素抗体上竞争的固相TR-FIA。然后将抗体-松弛素复合物与包被在固相上的第二抗体结合,实现结合抗原与游离抗原的快速、完全分离。在1 pg/孔至1000 pg/孔的范围内生成标准曲线。妊娠后期母猪的血清和黄体提取物呈现出与松弛素标准品平行的抑制曲线,而公猪血清未引起标记激素的位移。未观察到与其他激素(如胰岛素、促黄体生成素和促卵泡生成素)的交叉反应,表明该检测具有高度特异性。灵敏度为4 pg/孔(80 pg/ml),较高且与猪松弛素RIA相当。批内和批间变异系数分别小于3.8%和6.7%。添加到公猪血清样品中的猪松弛素回收率平均为103%。这种TR-FIA的优点是,与RIA不同,标记时无需添加酪氨酸,Eu标记的松弛素足够稳定,可长期保存一年以上,该检测仅需5小时即可完成,而RIA则需要两到七天,并且无需特殊的安全预防措施。为了验证这种TR-FIA,我们研究了猪妊娠后期、分娩期和泌乳早期血清中松弛素的浓度。通过该检测方法测定的血清松弛素水平与先前通过RIA获得的水平相似。总之,这种TR-FIA可以取代RIA作为检测松弛素的首选方法。