Department of Applied Chemistry, National Yang Ming Chiao Tung University, Hsinchu 300, Taiwan.
Biosensors (Basel). 2023 Mar 2;13(3):335. doi: 10.3390/bios13030335.
Biothiols, such as cysteine (Cys), homocysteine (Hcy), and glutathione (GSH), play a vital role in gene expression, maintaining redox homeostasis, reducing damages caused by free radicals/toxins, etc. Likewise, abnormal levels of biothiols can lead to severe diseases, such as Alzheimer's disease (AD), neurotoxicity, hair depigmentation, liver/skin damage, etc. To quantify the biothiols in a biological system, numerous low-toxic probes, such as fluorescent quantum dots, emissive organic probes, composited nanomaterials, etc., have been reported with real-time applications. Among these fluorescent probes, carbon-dots (CDs) have become attractive for biothiols quantification because of advantages of easy synthesis, nano-size, crystalline properties, low-toxicity, and real-time applicability. A CDs-based biothiols assay can be achieved by fluorescent "Turn-On" and "Turn-Off" responses via direct binding, metal complex-mediated detection, composite enhanced interaction, reaction-based reports, and so forth. To date, the availability of a review focused on fluorescent CDs-based biothiols detection with information on recent trends, mechanistic aspects, linear ranges, LODs, and real applications is lacking, which allows us to deliver this comprehensive review. This review delivers valuable information on reported carbon-dots-based biothiols assays, the underlying mechanism, their applications, probe/CDs selection, sensory requirement, merits, limitations, and future scopes.
生物硫醇,如半胱氨酸 (Cys)、同型半胱氨酸 (Hcy) 和谷胱甘肽 (GSH),在基因表达、维持氧化还原平衡、减少自由基/毒素造成的损伤等方面发挥着重要作用。同样,生物硫醇水平异常可导致严重疾病,如阿尔茨海默病 (AD)、神经毒性、毛发脱色、肝/皮肤损伤等。为了定量生物体系中的生物硫醇,已经报道了许多低毒性探针,如荧光量子点、发光有机探针、复合纳米材料等,具有实时应用。在这些荧光探针中,由于易于合成、纳米尺寸、结晶特性、低毒性和实时适用性,碳点 (CD) 已成为生物硫醇定量的有吸引力的探针。基于 CD 的生物硫醇测定可以通过直接结合、金属配合物介导的检测、复合增强相互作用、基于反应的报告等荧光“开启”和“关闭”响应来实现。迄今为止,缺乏针对基于荧光 CD 的生物硫醇检测的综述,其中包含有关最新趋势、机制方面、线性范围、LOD 和实际应用的信息,这使得我们能够提供全面的综述。本综述提供了有关基于报道的碳点的生物硫醇测定的有价值的信息,包括基础机制、应用、探针/CD 选择、感官要求、优点、局限性和未来范围。