Xu Y Y, Hemmilä I, Mukkala V M, Holttinen S, Lövgren T
Institute of Atomic Energy of China, Analytical Chemistry Laboratory, Beijing, People's Republic of China.
Analyst. 1991 Nov;116(11):1155-8. doi: 10.1039/an9911601155.
In the presence of an excess of Y3+, the fluorescence intensities of Eu3+ and Sm3+, chelated with benzoyltrifluoroacetone (BTA) or thenoyltrifluoroacetone (TTA) in an aqueous solution containing 1,10-phenanthroline, were increased by factors ranging from 209- to 811-fold. This co-fluorescence phenomenon was used in a highly sensitive time-resolved fluorimetric detection of the lanthanides, Eu3+ and Sm3+. The detection limits of Eu3+ in the BTA- and TTA-based solutions were 4 and 15 fmol dm-3, respectively. The detection limits of Sm3+ were 0.11 and 0.12 pmol dm-3, respectively. The co-fluorescence enhancement systems were also applied in the double-label time-resolved fluorimetric immunoassay of luteinizing hormone and follicle stimulating hormone using specific antibodies labelled either with Eu3+ or Sm3+. The co-fluorescence enhancement solution was superior as compared with the commercial 'direct' fluorescence enhancement solution based on the acidic solution of beta-naphthoyltrifluoroacetone, trioctylphosphine oxide and Triton X-100, in respect to the signal level obtained and the sensitivity. It is suited to time-resolved fluorimetric immunoassays in which particularly high detection sensitivities are required, and it can also be used in double-label assays employing Eu3+ and Sm3+ chelate labels.
在Y3+过量存在的情况下,在含有1,10-菲咯啉的水溶液中,与苯甲酰三氟丙酮(BTA)或噻吩甲酰三氟丙酮(TTA)螯合的Eu3+和Sm3+的荧光强度增加了209至811倍。这种共荧光现象被用于镧系元素Eu3+和Sm3+的高灵敏度时间分辨荧光检测。基于BTA和TTA的溶液中Eu3+的检测限分别为4和15 fmol dm-3。Sm3+的检测限分别为0.11和0.12 pmol dm-3。共荧光增强系统还应用于使用用Eu3+或Sm3+标记的特异性抗体对促黄体生成素和促卵泡激素进行双标记时间分辨荧光免疫分析。与基于β-萘甲酰三氟丙酮、三辛基氧化膦和Triton X-100酸性溶液的市售“直接”荧光增强溶液相比,共荧光增强溶液在获得的信号水平和灵敏度方面更具优势。它适用于需要特别高检测灵敏度的时间分辨荧光免疫分析,也可用于采用Eu3+和Sm3+螯合物标记的双标记分析。