Xing Xing, Wu Luyan, Zhang Yuchen, Pan Jiahao, Ishigaki Yusuke, Xie Huaqing, Suzuki Takanori, Ye Deju, Zhang Jianhua, Zhang Weihua, Lu Zhenda
College of Engineering and Applied Sciences, Jiangsu Key Laboratory of Artificial Functional Materials, Nanjing University, Nanjing, China.
School of Energy and Materials, Shanghai Thermophysical Properties Big Data Professional Technical Service Platform, Shanghai Engineering Research Center of Advanced Thermal Functional Materials, Shanghai Polytechnic University, Shanghai, China.
Nat Commun. 2024 Dec 30;15(1):10831. doi: 10.1038/s41467-024-55123-y.
Early disease diagnosis hinges on the sensitive detection of signaling molecules. Among these, hydrogen sulfide (HS) has emerged as a critical player in cardiovascular and nervous system signaling. On-chip immunoassays, particularly nanoarray-based interfacial detection, offer promising avenues for ultra-sensitive analysis due to their confined reaction volumes and precise signal localization. Beyond the DNA or protein biomolecules array, this work presents a promising hybrid small molecule nano-array for HS detection, using the power of dual molecules: a dye for fluorescence emission and a quencher with specific HS reactivity. Upon HS interaction, the quenched fluorescence reignites, creating an easily detectable array of bright spots. The molecule nano-array sensor shows exceptional responses to HS over 8 magnitudes of dynamic range from 1 fM to 0.1 μM, with a remarkable detection limit of 1 fM, just using a 10 μL solution. This HS detection method has the potential to significantly improve bioassay platforms, and the hybrid small-molecule nano-arrays we developed could be a valuable tool for advancing signaling molecule detection.
早期疾病诊断取决于信号分子的灵敏检测。其中,硫化氢(HS)已成为心血管和神经系统信号传导中的关键参与者。芯片上的免疫测定,特别是基于纳米阵列的界面检测,由于其受限的反应体积和精确的信号定位,为超灵敏分析提供了有前景的途径。除了DNA或蛋白质生物分子阵列外,这项工作展示了一种用于HS检测的有前景的混合小分子纳米阵列,利用了双分子的力量:一种用于荧光发射的染料和一种对HS具有特异性反应性的猝灭剂。HS相互作用时,猝灭的荧光重新点燃,形成易于检测的亮点阵列。该分子纳米阵列传感器在1 fM至0.1 μM的8个数量级动态范围内对HS表现出异常响应,仅使用10 μL溶液时检测限低至1 fM。这种HS检测方法有可能显著改善生物测定平台,我们开发的混合小分子纳米阵列可能是推进信号分子检测的有价值工具。