Shahrashoob Mahsa, Hosseinkhani Saman, Jafary Hanieh, Hosseini Morteza, Molaabasi Fatemeh
Department of Biology, Science and Research Branch, Islamic Azad University Tehran Iran.
Department of Biochemistry, Faculty of Biological Sciences, Tarbiat Modares University Tehran Iran
RSC Adv. 2023 Jul 19;13(31):21655-21666. doi: 10.1039/d3ra03179a. eCollection 2023 Jul 12.
Phenylalanine dehydrogenase (PheDH) has been proposed as an ideal protein scaffold for the one-step and green synthesis of highly efficient multifunctional gold nanoclusters. The PheDH-stabilized fluorescent gold nanoclusters (PheDH-AuNCs) with dual emission/single excitation exhibited excellent and long-term stability, high water solubility, large Stokes shift and intense photoluminescence. Selectivity studies demonstrated that the red fluorescence emission intensity of PheDH-AuNCs was obviously decreased in less than 10 min by the addition of mercury, copper, cysteine or glutathione under the single excitation at 360 nm, without significant change in the blue emission of the PheDH-AuNCs. Therefore, the as-prepared PheDH-AuNCs as a new excellent fluorescent probe were successfully employed to develop a simple, rapid, low cost, label- and surface modification-free nanoplatform for the ultrasensitive and selective detection of Hg, Cu, Cys and GSH through a ratiometric fluorescence system with wide linear ranges and detection limits of 1.6, 2.4, 160 and 350 nM, respectively which were lower than previous reports. In addition, the results showed that PheDH-AuNCs can be used for the detection of toxic heavy metal ions and small biomarker thiols in biological and aqueous samples with acceptable recoveries. Interestingly, PheDH-AuNCs also displayed a promising potential for live-cell imaging due to their low toxicity and great chemical- and photo-stability.
苯丙氨酸脱氢酶(PheDH)已被提议作为一种理想的蛋白质支架,用于一步法绿色合成高效多功能金纳米团簇。具有双发射/单激发特性的PheDH稳定荧光金纳米团簇(PheDH-AuNCs)表现出优异的长期稳定性、高水溶性、大斯托克斯位移和强荧光发射。选择性研究表明,在360 nm单激发下,加入汞、铜、半胱氨酸或谷胱甘肽后,PheDH-AuNCs的红色荧光发射强度在不到10分钟内明显降低,而PheDH-AuNCs的蓝色发射没有明显变化。因此,所制备的PheDH-AuNCs作为一种新型的优异荧光探针,通过比率荧光系统成功地用于开发一种简单、快速、低成本、无需标记和表面修饰的纳米平台,用于超灵敏和选择性检测汞、铜、半胱氨酸和谷胱甘肽,其线性范围宽,检测限分别为1.6、2.4、160和350 nM,低于先前报道。此外,结果表明PheDH-AuNCs可用于检测生物和水样中的有毒重金属离子和小生物标志物硫醇,回收率良好。有趣的是,PheDH-AuNCs由于其低毒性和良好的化学及光稳定性,在活细胞成像方面也显示出有前景的潜力。