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A ratiometric lysosomal pH chemosensor based on fluorescence resonance energy transfer

机译:基于荧光共振能量转移的比例溶酶体pH化学传感器

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In this work, we presented a naphthalimide-rhodamine based fluorescence resonance energy transfer system (FRET) NR1 as a ratiometric and intracellular pH probe, in which 1,2,3-triazole was identified as an ideal bridge and biocompatibility. It could selectively monitor pH variations in methanol/HEPES solution at room temperature. When the pH changed from 6.20 to 2.00, both the fluorescence intensities at 580 nm and the intensity ratios, R (I_(580 nm)/I_(538 nm)) increased, which allowed the detection of pH changes by both normal fluorescence and ratiometric fluorescence methods. The observation is consistent with the increased FRET from the 1,8-naphthalimide (donor) to the ring-opened, colored form of rhodamine (acceptor). Moreover, as NR1 is lysosomal with low cytotoxicity, it will be helpful for investigating the pivotal role of H~+ in a biological context, especially in lysosomes through direct intracellular imaging.
机译:在这项工作中,我们提出了一种基于萘二甲亚胺-罗丹明的荧光共振能量转移系统(FRET)NR1,作为比率式和细胞内pH探针,其中1,2,3-三唑被确定为理想的桥梁和生物相容性。它可以在室温下选择性监测甲醇/ HEPES溶液中的pH变化。当pH从6.20变为2.00时,580 nm处的荧光强度和强度比R(I_(580 nm)/ I_(538 nm))均增加,从而可以通过正常荧光和比率法检测pH的变化荧光方法。观察结果与从1,8-萘二甲酰亚胺(供体)到开环的有色罗丹明(受体)的FRET增加一致。此外,由于NR1是溶酶体,具有低细胞毒性,因此将有助于通过生物学上的直接细胞内显像研究H〜+在生物学环境中的关键作用,尤其是在溶酶体中。

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