Photosciences and Photonics Section, Chemical Sciences and Technology Division, CSIR-National Institute for Interdisciplinary Science and Technology, Thiruvananthapuram 695 019, India; Academy of Scientific and Innovative Research (AcSIR), Ghaziabad 201002, India.
Photosciences and Photonics Section, Chemical Sciences and Technology Division, CSIR-National Institute for Interdisciplinary Science and Technology, Thiruvananthapuram 695 019, India; Academy of Scientific and Innovative Research (AcSIR), Ghaziabad 201002, India.
J Photochem Photobiol B. 2024 Oct;259:113006. doi: 10.1016/j.jphotobiol.2024.113006. Epub 2024 Aug 8.
Molecular probes for sensing and imaging of various analytes and biological specimens are of great importance in clinical diagnostics, therapy, and disease management. Since the cellular concentration of free Zn varies from nanomolar to micromolar range during cellular processes and the high affinity Zn imaging probes tend to saturate at lower concentrations of free Zn, fluorescence based probes with moderate binding affinity are desirable in distinguishing the occurrence of higher zinc concentrations in the cells. Herein, we report a new, pentacyclic pyridinium based probe, PYD-PA, having a pendant N,N-di(pyridin-2-ylmethyl)amine (DPA) for Zn detection in the cellular environment. The designed probe is soluble in water and serves as a mitochondria targeting unit, whereas the pendent DPA acts as the coordination site for Zn. PYD-PA displayed a threefold enhancement in fluorescence intensity upon Zn binding with a 1:1 binding stoichiometry. Further, the probe showed a selective response to Zn over other biologically relevant metal ions with a moderate binding affinity (K = 6.29 × 10 M), good photostability, pH insensitivity, and low cytotoxicity. The demonstration of bioimaging in SK-BR-3 breast cancer cell lines confirmed the intracellular Zn ion sensing ability of the probe. The probe was successfully applied for real time monitoring of the fluctuation of intracellular free zinc ions during autophagy conditions, demonstrating its potential for cellular imaging of Zn at higher intracellular concentrations.
用于检测和成像各种分析物和生物样本的分子探针在临床诊断、治疗和疾病管理中非常重要。由于在细胞过程中游离 Zn 的细胞浓度从纳摩尔变化到微摩尔范围,并且高亲和力 Zn 成像探针往往在较低的游离 Zn 浓度下饱和,因此在细胞中区分更高锌浓度的发生时,具有中等结合亲和力的荧光探针是理想的。在此,我们报告了一种新的基于五元环吡啶鎓的探针 PYD-PA,它具有一个连接的 N,N-二(吡啶-2-基甲基)胺(DPA),用于在细胞环境中检测 Zn。设计的探针可溶于水,用作线粒体靶向单元,而悬垂的 DPA 则用作 Zn 的配位位点。PYD-PA 与 Zn 结合后,荧光强度增强了三倍,具有 1:1 的结合化学计量比。此外,该探针对 Zn 具有选择性响应,对其他生物相关金属离子的亲和力适中(K=6.29×10^M),具有良好的光稳定性、pH 不敏感性和低细胞毒性。在 SK-BR-3 乳腺癌细胞系中的生物成像证明了探针对细胞内 Zn 离子的感应能力。该探针成功应用于自噬条件下细胞内游离锌离子波动的实时监测,证明了其在较高细胞内浓度下对 Zn 进行细胞成像的潜力。