Tan Shih-Hua, Yougbaré Sibidou, Chu Hsueh-Liang, Kuo Tsung-Rong, Cheng Tsai-Mu
Graduate Institute of Nanomedicine and Medical Engineering, College of Biomedical Engineering, Taipei Medical University, Taipei 11031, Taiwan.
International PhD Program in Biomedical Engineering, College of Biomedical Engineering, Taipei Medical University, Taipei 11031, Taiwan.
Polymers (Basel). 2020 Sep 29;12(10):2242. doi: 10.3390/polym12102242.
Designing a facile and rapid detection method for haptoglobin (Hp) phenotypes in human blood plasma is urgently needed to meet clinic requirements in hemolysis theranostics. In this work, a novel approach to qualitatively analyze Hp phenotypes was developed using a fluorescent probe of gold nanoclusters (AuNCs). Hemoglobin-conjugated (Hb)-AuNCs were successfully synthesized with blue-green fluorescence and high biocompatibility via one-pot synthesis. The fluorescence of Hb-AuNCs comes from the ligand-metal charge transfer between surface ligands of Hb and the gold cores with high oxidation states. The biocompatibility assays including cell viability and fluorescence imaging, demonstrated high biocompatibility of Hb-AuNCs. For the qualitative analysis, three Hp phenotypes in plasma, Hp 1-1, Hp 2-1, and Hp 2-2, were successfully discriminated according to changes in the fluorescence intensity and peak position of the maximum intensity of Hb-AuNCs. Our work provides a practical method with facile and rapid properties for the qualitative analysis of three Hp phenotypes in human blood plasma.
为满足溶血诊疗中的临床需求,迫切需要设计一种简便快速的人血浆中触珠蛋白(Hp)表型检测方法。在这项工作中,开发了一种使用金纳米簇(AuNCs)荧光探针定性分析Hp表型的新方法。通过一锅法成功合成了具有蓝绿色荧光和高生物相容性的血红蛋白共轭(Hb)-AuNCs。Hb-AuNCs的荧光来自于高氧化态的Hb表面配体与金核之间的配体-金属电荷转移。包括细胞活力和荧光成像在内的生物相容性测定表明Hb-AuNCs具有高生物相容性。对于定性分析,根据Hb-AuNCs荧光强度和最大强度峰位置的变化,成功区分了血浆中的三种Hp表型,即Hp 1-1、Hp 2-1和Hp 2-2。我们的工作为定性分析人血浆中的三种Hp表型提供了一种简便快速的实用方法。