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Two photon fluorescence imaging of lipid membrane domains and potentials using advanced fluorescent probes

机译:使用高级荧光探针对脂质膜结构域和电位进行两次光子荧光成像

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Biomembranes are ordered and dynamic nanoscale structures critical for cell functions. The biological functions of the membranes strongly depend on their physicochemical properties, such as electrostatics, phase state, viscosity, polarity and hydration. These properties are essential for the membrane structure and the proper folding and function of membrane proteins. To monitor these properties, fluorescence techniques and notably, two-photon microscopy appear highly suited due to their exquisite sensitivity and their capability to operate in complex biological systems, such as living cells and tissues. In this context, we have developed multiparametric environment-sensitive fluorescent probes tailored for precise location in the membrane bilayer. We notably developed probes of the 3-hydroxychromone family, characterized by an excited state intramolecular proton transfer reaction, which generates two tautomeric emissive species with well-separated emission bands. As a consequence, the response of these probes to changes in their environment could be monitored through changes in the ratios of the two bands, as well as through changes in the fluorescence lifetimes. Using two-photon ratiometric imaging and FLIM, these probes were used to monitor the surface membrane potential, and were applied to detect apoptotic cells and image membrane domains.
机译:生物膜是有序的,动态的纳米结构对于细胞功能至关重要。膜的生物学功能在很大程度上取决于其物理化学性质,例如静电,相态,粘度,极性和水合作用。这些特性对于膜结构以及膜蛋白的正确折叠和功能至关重要。为了监测这些特性,荧光技术尤其是双光子显微镜由于其精湛的灵敏度和在复杂的生物系统(例如活细胞和组织)中运行的能力而显得非常合适。在这种情况下,我们开发了多参数环境敏感型荧光探针,专为在膜双层中精确定位而设计。我们特别开发了3-羟基色酮家族的探针,其特征在于激发态的分子内质子转移反应,该反应产生两个互变异构的发射物种,发射光谱良好。结果,可以通过两个条带的比率的变化以及荧光寿命的变化来监测这些探针对其环境变化的响应。使用双光子比例成像和FLIM,这些探针用于监测表面膜电位,并用于检测凋亡细胞和图像膜结构域。

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