Department of Applied Chemistry, National Chiao Tung University, Hsinchu 300, Taiwan.
Department of Applied Chemistry, National Chiao Tung University, Hsinchu 300, Taiwan.
Biosens Bioelectron. 2014 Nov 15;61:88-94. doi: 10.1016/j.bios.2014.04.055. Epub 2014 May 10.
In this study, we generated gold nanoclusters (AuNCs) using inexpensive chicken egg white proteins (AuNCs@ew) as reagents. AuNCs@ew were generated by reacting aqueous tetrachloroauric acid with diluted chicken egg white under microwave heating (90W) through subsequent heating cycles (5 min/cycle). Within 10 cycles, red photoluminescent AuNCs@ew with maximum emission wavelength at ~640 nm (λex=370 nm) were obtained. The quantum yield of the as-generated AuNCs was ~6.6%. The intact and the tryptic digest of AuNCs@ew were characterized by mass spectrometry. The results showed that the AuNCs@ew were mainly derived from ovalbumin, i.e., the major protein in egg white, encapsulated AuNCs. The AuNCs@ew also has the common features found in AuNCs@protein, which is sensitive to the presence of heavy metal ions such as Cu(2+). The photoluminescence of the AuNCs@ew was quenched with the addition of Cu(2+). Furthermore, the photoluminescence of the quenched AuNCs@ew can be restored in the presence of the molecules containing phosphate functional groups because of the strong binding affinity between Cu(2+) and phosphates. We used the AuNCs@ew-Cu(2+) conjugates as switch-on sensing probes for the detection of phosphate containing metabolites such as adenosine-5'-triphosphate (ATP) and pyrophosphate (PPi). The results showed that the photoluminescence of the sensing probes increased as the concentration of the phosphate-containing molecules in the sample solution increased. The limits of detection achieved using the AuNCs@ew-Cu(2+) for ATP and PPi were ~19 and ~5 μM, respectively. Additionally, we also demonstrated the feasibility of using the AuNCs@ew as the sensing probes for lectins such as concanavalin A (Con A) based on the molecular recognitions between the glycan ligands on the AuNCs@ew and glycan binding sites on Con A.
在这项研究中,我们使用廉价的鸡蛋白作为试剂生成了金纳米簇(AuNCs)(AuNCs@ew)。通过在微波加热(90W)下用稀鸡蛋白与四氯金酸反应,随后进行加热循环(5 分钟/循环),生成 AuNCs@ew。在 10 个循环内,获得了最大发射波长在640nm(λex=370nm)的红色光致发光 AuNCs@ew。生成的 AuNCs 的量子产率约为 6.6%。通过质谱对 AuNCs@ew 的完整和胰蛋白酶消化物进行了表征。结果表明,AuNCs@ew 主要来源于卵清蛋白,即蛋清中的主要蛋白质,包裹的 AuNCs。AuNCs@ew 还具有在 AuNCs@protein 中发现的共同特征,即对重金属离子(如 Cu(2+))的存在敏感。加入 Cu(2+)后,AuNCs@ew 的光致发光被猝灭。此外,由于 Cu(2+)与磷酸盐之间的强结合亲和力,在存在含有磷酸盐官能团的分子的情况下,猝灭的 AuNCs@ew 的光致发光可以恢复。我们使用 AuNCs@ew-Cu(2+) 缀合物作为开关感应探针,用于检测含有磷酸盐的代谢物,如腺苷-5'-三磷酸(ATP)和焦磷酸盐(PPi)。结果表明,随着样品溶液中含磷酸盐分子浓度的增加,感应探针的光致发光强度增加。使用 AuNCs@ew-Cu(2+) 对 ATP 和 PPi 的检测限分别约为19 和~5μM。此外,我们还基于 AuNCs@ew 上的糖配体与 Con A 上的糖结合位点之间的分子识别,证明了使用 AuNCs@ew 作为 Con A 等凝集素的感应探针的可行性。