Department of Chemistry, National Sun Yat-sen University, Taiwan.
Nanoscale. 2016 Jun 7;8(21):11210-6. doi: 10.1039/c6nr02341j. Epub 2016 May 16.
Metal nanocluster-based nanomaterials for the simultaneous determination of temperature and pH variations in micro-environments are still a challenge. In this study, we develop a dual-emission fluorescent probe consisting of bovine serum albumin-stabilized gold nanoclusters (BSA-AuNCs) and fluorescein-5-isothiocyanate (FITC) as temperature- and pH-responsive fluorescence signals. Under single wavelength excitation the FITC/BSA-AuNCs exhibited well-separated dual emission bands at 525 and 670 nm. When FITC was used as a reference fluorophore, FITC/BSA-AuNCs showed a good linear response over the temperature range 1-71 °C and offered temperature-independent spectral shifts, temperature accuracy, activation energy, and reusability. The possible mechanism for high temperature-induced fluorescence quenching of FITC/BSA-AuNCs could be attributed to a weakening of the Au-S bond, thereby lowering the charge transfer from BSA to AuNCs. Additionally, the pH- and temperature-responsive properties of FITC/BSA-AuNCs allow simultaneous temperature sensing from 21 to 41 °C (at intervals of 5 °C) and pH from 6.0 to 8.0 (at intervals of 0.5 pH unit), facilitating the construction of two-input AND logic gates. Three-input AND logic gates were also designed using temperature, pH, and trypsin as inputs. The practicality of using FITC/BSA-AuNCs to determine the temperature and pH changes in HeLa cells is also validated.
用于微环境中温度和 pH 值变化的同时测定的基于金属纳米团簇的纳米材料仍然是一个挑战。在本研究中,我们开发了一种由牛血清白蛋白稳定的金纳米团簇(BSA-AuNCs)和荧光素 5-异硫氰酸酯(FITC)组成的双发射荧光探针,作为温度和 pH 响应的荧光信号。在单波长激发下,FITC/BSA-AuNCs 在 525nm 和 670nm 处表现出良好分离的双发射带。当 FITC 用作参考荧光团时,FITC/BSA-AuNCs 在 1-71°C 的温度范围内表现出良好的线性响应,并提供与温度无关的光谱位移、温度精度、活化能和可重复性。FITC/BSA-AuNCs 中由于高温引起的荧光猝灭的可能机制可以归因于 Au-S 键的减弱,从而降低了从 BSA 到 AuNCs 的电荷转移。此外,FITC/BSA-AuNCs 的 pH 值和温度响应特性允许同时从 21 到 41°C(每隔 5°C)和 pH 值从 6.0 到 8.0(每隔 0.5 pH 单位)进行温度感应,从而便于构建两个输入的 AND 逻辑门。还使用温度、pH 值和胰蛋白酶作为输入设计了三输入 AND 逻辑门。使用 FITC/BSA-AuNCs 来确定 HeLa 细胞中温度和 pH 值变化的实用性也得到了验证。