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利用蛋白包裹的金纳米团簇作为用于生物分子的光致发光传感探针。

Using protein-encapsulated gold nanoclusters as photoluminescent sensing probes for biomolecules.

机构信息

Department of Applied Chemistry, National Chiao Tung University, Hsinchu 300, Taiwan.

Department of Applied Chemistry, National Chiao Tung University, Hsinchu 300, Taiwan.

出版信息

Biosens Bioelectron. 2014 Nov 15;61:88-94. doi: 10.1016/j.bios.2014.04.055. Epub 2014 May 10.

Abstract

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.

摘要

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。

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