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新型苯并噻唑取代 BODIPY 基 AIE 荧光转子用于成像溶酶体粘度和监测自噬。

Novel -Benzothiazole-Substituted BODIPY-Based AIE Fluorescent Rotor for Imaging Lysosomal Viscosity and Monitoring Autophagy.

机构信息

Center for Advanced Analytical Science, School of Chemistry and Chemical Engineering, Guangzhou University, Guangzhou 510006, P. R. China.

School of Biology and Biological Engineering, South China University of Technology, Guangzhou 510006, P. R. China.

出版信息

Anal Chem. 2022 Oct 25;94(42):14707-14715. doi: 10.1021/acs.analchem.2c03094. Epub 2022 Oct 12.

Abstract

Meso-substituted boron dipyrromethenes (BODIPYs) provide a potential and innovative strategy for the synergistic construction of aggregation-induced emission (AIE) probes and fluorescent rotors for monitoring cellular viscosity changes, which play critical roles in understanding the function of viscosity in its closely associated diseases. Therefore, for the first time, a BODIPY-based fluorescent probe () with a rotatable benzothiazole group was rationally designed and synthesized, showing both good viscosity-responsive and AIE properties. Probe through direct linkage with the thiazole group, showed nearly no emission in low viscous solvents; however, a strong emission at 534 nm appeared and increased gradually with the increase in viscosity, attributing to the efficient restriction of the rotatable -benzothiazole group. The intensity (log ) displayed a good linear relationship with viscosity (log η) in the viscous range of 0.59-945 cP in methanol/glycerol mixtures. Interestingly, showed enhanced emission at 534 nm in 70% water compared to pure acetonitrile due to the aggregation-induced inhibited rotations. Cellular imaging suggested that could successfully sense lysosomal viscosity changes induced by lipopolysaccharide, nystatin, low temperature, and dexamethasone in living cells, which could be further applied in autophagy monitoring by tracing viscosity changes. As a comparison, its analogue directly linking with the phenyl group showed no viscosity-responsive or AIE properties. Therefore, for the first time, we reported a -benzothiazole-BODIPY-based fluorescent rotor with AIE and lysosomal viscosity-responsive properties in nervous cells, which was further applied in monitoring autophagy, and this work thus could provide an innovative strategy for the design of potential AIE and viscosity-responsive probes.

摘要

介孔取代的硼二吡咯亚甲基(BODIPY)为协同构建聚集诱导发射(AIE)探针和荧光转子提供了一种有潜力的创新策略,用于监测细胞粘度变化,这在理解粘度在与其密切相关的疾病中的功能方面起着至关重要的作用。因此,我们首次合理设计并合成了一种基于 BODIPY 的荧光探针(),它具有可旋转的苯并噻唑基团,具有良好的粘度响应和 AIE 特性。探针通过噻唑基团的直接连接,在低粘性溶剂中几乎没有发射;然而,在粘性范围内(甲醇/甘油混合物中的 0.59-945 cP),在粘度增加时,534nm 处出现并逐渐增强的强发射归因于可旋转的 -苯并噻唑基团的有效限制。强度(log )与粘度(log η)在粘性范围内显示出良好的线性关系。有趣的是,与纯乙腈相比,在 70%的水中,探针显示出 534nm 处的增强发射,这是由于聚集诱导的旋转抑制。细胞成像表明,探针可以成功感应脂多糖、制霉菌素、低温和地塞米松诱导的溶酶体粘度变化,可进一步通过追踪粘度变化应用于自噬监测。作为比较,其直接与苯基连接的类似物则不具有粘度响应或 AIE 特性。因此,我们首次报道了一种具有 AIE 和溶酶体粘度响应特性的基于 -苯并噻唑-BODIPY 的荧光转子,可进一步应用于自噬监测,这项工作为设计潜在的 AIE 和粘度响应探针提供了一种创新策略。

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