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Active Probes for Imaging Membrane Dynamics of Live Cells with High Spatial and Temporal Resolution over Extended Timescales and Areas

机译:用于在扩展的时间尺度和区域内以高时空分辨率成像活细胞膜动力学的有源探针

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摘要

Despite the advancement of molecular imaging techniques, there is an unmet need of probes for directly imaging membrane dynamics of live cells. Here we report a novel type of active (or enzyme responsive) probes to directly image membrane dynamics of live cells with high spatial and temporal resolution over extended timescales and areas. Because lipid rafts enrich cholesterols and GPI-anchored enzymes (e.g., ectophosphatases), we design probes that consist of an enzymatic trigger, a fluorophore, and a cholesterol that are affinitive to cell membrane. Being water soluble and as the substrate of ectophosphatase, these cell compatible probes preferentially and rapidly assemble in plasma membrane, exhibit strong fluorescence, work at micromolar concentrations, and easily achieve high resolution monitoring of nanoscale heterogeneity in membranes of live cells, the release of exosomes, and the membrane dynamics of live cells. This work provides a facile means to link membrane dynamics and heterogeneity to cellular processes for understanding the interactions between membranes and proteins.
机译:尽管分子成像技术取得了进步,但仍未满足对直接成像活细胞膜动力学的探针的需求。在这里,我们报告了一种新型的活性(或酶响应)探针,可以直接在延长的时标和区域内以高时空分辨率对活细胞的膜动力学进行成像。由于脂质筏可丰富胆固醇和GPI锚定的酶(例如,外部磷酸酶),因此我们设计的探针由酶促触发物,荧光团和与细胞膜结合的胆固醇组成。这些与细胞相容的探针具有水溶性并作为外磷酸酶的底物,可优先且快速地在质膜中组装,显示强荧光,以微摩尔浓度工作,并易于实现高分辨率监测活细胞膜中纳米级异质性,外泌体的释放,以及活细胞的膜动力学。这项工作提供了一种简便的方法来将膜动力学和异质性与细胞过程联系起来,以了解膜与蛋白质之间的相互作用。

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