Wang Aozhou, Yao Kaisheng, Wang Qi, Han Tianhang, Lu Weiwei, Xia Yumin
School of Chemistry and Chemical Engineering, Henan University of Science and Technology, Luoyang, Henan, 471023, PR China.
School of Chemistry and Chemical Engineering, Henan University of Science and Technology, Luoyang, Henan, 471023, PR China.
Talanta. 2025 May 1;286:127503. doi: 10.1016/j.talanta.2024.127503. Epub 2025 Jan 1.
Here, a green poly(ionic liquid)-regulated one-pot method is developed for the synthesis of Au@Pt core-shell nanospheres (PNSs) under mild reaction conditions in water. It is found that the poly(ionic liquid) poly[1-methyl-3-butyl (3-hydroxy) imidazole] chloride (PIL-Cl) is very vital to guide the construction of Au@Pt PNSs. The as-obtained Au@Pt-1 PNSs have perfect spherical outlines, porous core-shell structures and large specific surface area by which they exhibit excellent peroxidase-like activity in acidic media and can be used to develop a simple and reliable colorimetric sensing platform. It is shown that the colorimetric sensing platform constructed with Au@Pt-1 PNSs nanozyme can effectively evaluate ACP activity, achieving a wide linear detection range of 0.1-3.0 U/L and having a low limit of detection (LOD) of 0.047 U/L (S/N = 3). Based on the cascade reaction, the Au@Pt-1 PNSs nanozyme and ACP are integrated to develop a biosensor, which can detect organophosphate inhibitor of malathion with a wide linear detection range of 5-80 nM and low LOD of 1.96 nM (S/N = 3). More importantly, this detection method is also practically applied to detect both ACP activity in fetal bovine serum and malathion concentration in cucumber juice with satisfied results. This work presents a simple and green feature for the synthesis of nanozyme with high performance and establishes a biosensing platform based on Au@Pt-1 PNSs nanozyme to effectively monitor the ACP activity and the concentration of its organophosphate inhibitor malathion with high sensitivity, anti-interference capability and good recovery capability.
在此,开发了一种绿色聚离子液体调控的一锅法,用于在水相中温和反应条件下合成金@铂核壳纳米球(PNSs)。发现聚离子液体聚[1-甲基-3-丁基(3-羟基)咪唑]氯化物(PIL-Cl)对引导金@铂PNSs的构建至关重要。所制备的金@铂-1 PNSs具有完美的球形轮廓、多孔核壳结构和大比表面积,使其在酸性介质中表现出优异的过氧化物酶样活性,并可用于开发简单可靠的比色传感平台。结果表明,基于金@铂-1 PNSs纳米酶构建的比色传感平台能够有效评估酸性磷酸酶(ACP)活性,实现0.1 - 3.0 U/L的宽线性检测范围,检测限低至0.047 U/L(信噪比S/N = 3)。基于级联反应,将金@铂-1 PNSs纳米酶与ACP整合开发出一种生物传感器,该生物传感器能够检测马拉硫磷有机磷抑制剂,线性检测范围宽达5 - 80 nM,检测限低至1.96 nM(信噪比S/N = 3)。更重要的是,该检测方法还实际应用于检测胎牛血清中的ACP活性和黄瓜汁中的马拉硫磷浓度,结果令人满意。这项工作为高性能纳米酶的合成提供了简单绿色的特性,并基于金@铂-1 PNSs纳米酶建立了生物传感平台,以高灵敏度、抗干扰能力和良好的回收率有效监测ACP活性及其有机磷抑制剂马拉硫磷的浓度。