Department of Chemistry, National Sun Yat-sen University, Taiwan, ROC.
Department of Chemistry, National Sun Yat-sen University, Taiwan, ROC; School of Pharmacy, College of Pharmacy, Kaohsiung Medical University, Taiwan, ROC; Center for Nanoscience and Nanotechnology, National Sun Yat-sen University, Taiwan, ROC.
Anal Chim Acta. 2019 Oct 31;1078:101-111. doi: 10.1016/j.aca.2019.05.069. Epub 2019 May 31.
A series of polymers and metal ions have been observed to be useful in triggering aggregation-induced emission (AIE) and AIE enhancement (AIEE) of thiolated gold nanoclusters (AuNCs). However, peptide-induced AIEE of thiolated AuNCs and their applications in biosensors have rarely been investigated. In this study, we showed that positively charged peptides induced efficient AIEE of negatively charged glutathione-capped AuNCs (GSH-AuNCs) through electrostatic attraction. In contrast to GSH-AuNCs, polyarginine (polyArg), a cationic peptide, stimulated the AIEE of the GSH-AuNCs, resulting in a 3.5-fold luminescence enhancement, 10-fold enhancement in quantum yield, 8-nm blueshift in the luminescence maximum, and a 2.1-fold increase in the mean luminescence lifetime. Four different AIEE-based biosensors with excellent selectivity and acceptable sensitivity were fabricated using cationic peptides as an AIEE-active trigger and as a biorecognition element. A heparin biosensor with a limit of detection (LOD) of 3 nM was constructed by combining AG73 peptide-mediated AIEE of the GSH-AuNCs and the specific interaction of AG73 peptides with heparin macromolecules. The concentration of human trypsin was selectively detected at a concentration as low as 1 nM using an arginine-glycine repeat peptide as an enzymatic substrate and as an AIEE-active trigger. Alkaline phosphatase (ALP)-catalyzed dephosphorylation of phosphopeptides paired with the corresponding product-mediated AIEE of the GSH-AuNCs was used for ALP sensing with an LOD of 0.3 U L. A peptide consisting of a cyclic RGD unit and an AIEE-active unit was designed to synthesize RGD-modified GSH-AuNC aggregates that can target αvβ3 integrin receptors. These AIEE-based sensors were practically applied for the quantitative determination of heparin in human plasma, trypsin in human urine, and ALP in human plasma as well as for luminescent imaging of αvβ3 integrin-overexpressing HeLa cells.
一系列聚合物和金属离子已被观察到可用于触发硫醇化金纳米簇(AuNCs)的聚集诱导发光(AIE)和 AIE 增强(AIEE)。然而,肽诱导的硫醇化 AuNCs 的 AIEE 及其在生物传感器中的应用很少被研究。在这项研究中,我们表明带正电荷的肽通过静电吸引诱导带负电荷的谷胱甘肽包裹的 AuNCs(GSH-AuNCs)的有效 AIEE。与 GSH-AuNCs 相比,带正电荷的多肽聚精氨酸(polyArg)刺激 GSH-AuNCs 的 AIEE,导致发光增强 3.5 倍,量子产率提高 10 倍,发光最大值蓝移 8nm,平均发光寿命增加 2.1 倍。使用阳离子肽作为 AIEE 活性触发剂和作为生物识别元件,制备了四种具有优异选择性和可接受灵敏度的基于 AIEE 的生物传感器。通过结合 AG73 肽介导的 GSH-AuNCs 的 AIEE 和 AG73 肽与肝素大分子的特异性相互作用,构建了具有检测限(LOD)为 3 nM 的肝素生物传感器。使用精氨酸-甘氨酸重复肽作为酶底物和 AIEE 活性触发剂,选择性检测人胰蛋白酶的浓度低至 1 nM。碱性磷酸酶(ALP)催化磷酸肽的去磷酸化,与相应产物介导的 GSH-AuNCs 的 AIEE 一起用于 ALP 传感,LOD 为 0.3 U L。设计了一种由环状 RGD 单元和 AIEE 活性单元组成的肽,用于合成可靶向 αvβ3 整合素受体的 RGD 修饰的 GSH-AuNC 聚集体。这些基于 AIEE 的传感器实际应用于人血浆中肝素的定量测定、人尿中胰蛋白酶的测定以及人血浆中 ALP 的测定,以及过表达 αvβ3 整合素的 HeLa 细胞的发光成像。