Huhtinen Petri, Kivelä Mirja, Soukka Tero, Tenhu Heikki, Lövgren Timo, Härmä Harri
Department of Biotechnology, University of Turku, Turku, Finland.
Anal Chim Acta. 2008 Dec 23;630(2):211-6. doi: 10.1016/j.aca.2008.09.068. Epub 2008 Oct 17.
Preparation, characterisation and application of europium(III) chelate-incorporated polystyrene-acrylic acid (AAc) nanoparticle labels featuring diverse AAc proportions is described. Emulsion copolymerisation of styrene and AAc was used to synthesise uniform-sized nanoparticles, approximately 50 nm in diameter. The structural, fluorescence and functional properties of the nanoparticles were characterised to obtain the optimal polymer composition of particulate labels. The AAc content had only a delicate effect on the fluorescence of the chelate and structural characteristics of the particles. The fluorescence spectra or lifetime of the incorporated europium(III) chelate were not notably affected, and all the particles were analogous in size, had monomodal size distributions and good colloidal stability. However, the AAc content affected strongly on the stability of the incorporated dye and functionality of the labels. Nanoparticles having up to 5.4 mass% of AAc were stable and applicable in high-sensitivity assays, where low detection limit and variation were achieved. The nanoparticles possessing 7.2 or 11.5 mass% of AAc lost remarkably the dye content during storage influencing their usability as labels in assays. Overall, the characterisation and employment results achieved evidenced the importance of the structural composition of nanoparticles, moreover, the knowledge of the effects of structural changes is utilisable in the development of improved nanoparticle labels and assay applications.
描述了具有不同丙烯酸(AAc)比例的铕(III)螯合物掺入聚苯乙烯 - 丙烯酸(AAc)纳米颗粒标记物的制备、表征及应用。采用苯乙烯和AAc的乳液共聚合来合成直径约为50nm的尺寸均匀的纳米颗粒。对纳米颗粒的结构、荧光和功能特性进行表征,以获得颗粒标记物的最佳聚合物组成。AAc含量对螯合物的荧光和颗粒的结构特征仅有微妙的影响。掺入的铕(III)螯合物的荧光光谱或寿命没有受到显著影响,并且所有颗粒尺寸类似,具有单峰尺寸分布和良好的胶体稳定性。然而,AAc含量对掺入染料的稳定性和标记物的功能有强烈影响。AAc含量高达5.4质量%的纳米颗粒是稳定的,可用于高灵敏度分析,能实现低检测限和低变异。具有7.2或11.5质量% AAc的纳米颗粒在储存期间显著损失染料含量,影响了它们作为分析标记物的可用性。总体而言,所取得的表征和应用结果证明了纳米颗粒结构组成的重要性,此外,结构变化影响的知识可用于开发改进的纳米颗粒标记物和分析应用。