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Calix[4]arene Based Redox Sensitive Molecular Probe for SERS Guided Recognition of Labile Iron Pool in Tumor Cells

机译:基于Calix [4]基于芳烃的氧化还原敏感分子探针,用于肿瘤细胞稳定性钢池的稳定识别

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Targeting the intracellular "labile" iron pool is turned as a key modulator for cancer progression since the former is responsible for several pathological processes in tumor cells. Herein, we report a nonfluorescent calix[4]arene based triazole appended molecular probe (PTBC) for redox-specific detection of Fe3+ under physiological condition by UV-vis, FT-IR, H-1 NMR, HR-MS spectroscopies, ITC, and the binding strategy between Calix[4]arene and Fe3+ was modeled by DFT calculations. As a new insight PTBC probe showed significant Raman fingerprint through surface enhanced Raman scattering (SERS) modality revealing the ultrasensitive detection of Fe3+ with a LOD of 2 nM. Interestingly, intracellular "iron pool" has been recognized in human lung adenocarcinoma cells (A549) by the PTBC illustrating the distinct Raman mapping. Finally, PTBC imparted cytotoxicity via reactive oxygen species (ROS) generation in cellular milieu signifies its capability as a theranostic molecular probe.
机译:靶向细胞内的“不稳定”铁池被转向癌症进展的关键调节剂,因为前者对肿瘤细胞的几种病理过程负责。 在此,我们通过UV-VI,FT-IR,H-1 NMR,HR-MS光谱法,HR-MS光谱法,HR-M MS光谱,ITC,报告用于在生理病症下进行Fe3 +的Fe3 +的氧化还原特异性检测的非荧光Calix [4]芳烃基三唑。 并且Calix [4] arene和Fe3 +之间的结合策略由DFT计算建模。 由于新的Insight PTBC探针通过表面增强的拉曼散射(SERS)模态显示出显着的拉曼指纹,显示出Fe3 +的超细敏感性检测为2nm。 有趣的是,通过PTBC在人肺腺癌细胞(A549)中已经认识到细胞内的“铁池”,该PTBC示出了不同的拉曼测绘。 最后,PTBC通过细胞Milieu中的活性氧物质(ROS)产生的细胞毒性使其作为治疗分子探针的能力表示。

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