Laboratoire d'Ingénierie Moléculaire Appliquée à l'Analyse, IPHC, UMR 7178 CNRS/UdS, ECPM, 25 rue Becquerel, 67087 Strasbourg Cedex, France.
Org Biomol Chem. 2013 Oct 14;11(38):6493-501. doi: 10.1039/c3ob40898a. Epub 2013 Jul 12.
The first example of an activated phosphonated trifunctional chelate (TFC) is presented, which combines a non-macrocyclic coordination site for lanthanide coordination based on two aminobis-methylphosphonate coordinating arms, a central bispyrazolylpyridyl antenna and an N-hydroxysuccinimide ester in para position of the central pyridine as an activated function for the labeling of biomaterial. The synthesis of the TFC is presented together with photo-physical studies of the related Tb and Eu complexes. Excited state lifetime measurements in H2O and D2O confirmed an excellent shielding of the cation from water molecules with a hydration number of zero. The Tb complex provides a high photoluminescence (PL) quantum yield of 24% in aqueous solutions (0.01 M Tris-HCl, pH 7.4) and a very long luminescence lifetime of 2.6 ms. The activated ligand was conjugated to different biological compounds such as streptavidin, and a monoclonal antibody against total prostate specific antigen (TPSA). In combination with AlexaFluor647 (AF647) and crosslinked allophycocyanin (XL665) antibody (ABs) conjugates, homogeneous time-resolved Fluorescence Resonance Energy Transfer (FRET) immunoassays of TPSA were performed in serum samples. The Tb donor-dye acceptor FRET pairs provided large Förster distances of 5.3 nm (AF647) and 7.1 nm (XL665). A detailed time-resolved FRET analysis of Tb donor and dye acceptor PL decays revealed average donor-acceptor distances of 4.2 nm (AF647) and 6.3 nm (XL665) within the sandwich immunocomplex and FRET efficiencies of 0.79 and 0.68, respectively. Very low detection limits of 1.4 ng mL(-1) (43 pM) and 2.4 ng mL(-1) (74 pM) TPSA were determined using a KRYPTOR fluorescence immunoanalyzer. These results demonstrate the applicability of our novel Tb-bioconjugates for highly sensitive clinical diagnostics.
首次提出了一种活化的膦酸三功能螯合物(TFC),它结合了基于两个氨基双甲基膦酸配位臂的镧系元素配位的非大环配位位点、中央双吡唑基吡啶天线以及中央吡啶对位的 N-羟基琥珀酰亚胺酯作为活化功能,用于生物材料的标记。TFC 的合成以及相关 Tb 和 Eu 配合物的光物理研究均已完成。在 H2O 和 D2O 中的激发态寿命测量证实了阳离子与水分子的极好屏蔽作用,水合数为零。Tb 配合物在 0.01 M Tris-HCl(pH 7.4)的水溶液中提供了 24%的高光致发光(PL)量子产率和 2.6 ms 的非常长的发光寿命。活化配体与链霉亲和素和针对总前列腺特异性抗原(TPSA)的单克隆抗体等不同生物化合物进行缀合。结合 AlexaFluor647(AF647)和交联藻红蛋白(XL665)抗体(ABs)缀合物,在血清样品中进行了 TPSA 的均相时间分辨荧光共振能量转移(FRET)免疫测定。Tb 供体-染料受体 FRET 对提供了较大的Förster 距离,分别为 5.3nm(AF647)和 7.1nm(XL665)。Tb 供体和染料受体 PL 衰减的详细时间分辨 FRET 分析表明,夹心免疫复合物内的平均供体-受体距离分别为 4.2nm(AF647)和 6.3nm(XL665),FRET 效率分别为 0.79 和 0.68。使用 KRYPTOR 荧光免疫分析仪,分别确定了 TPSA 的非常低的检测限为 1.4ng mL(-1)(43pM)和 2.4ng mL(-1)(74pM)。这些结果表明,我们的新型 Tb 生物缀合物可用于高灵敏度的临床诊断。