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FRET-Based Nanobiosensors for Imaging Intracellular Ca2+ and H+ Microdomains

机译:基于FRET的纳米生物传感器用于成像细胞内Ca2 +和H +微区

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摘要

Semiconductor nanocrystals (NCs) or quantum dots (QDs) are luminous point emitters increasingly being used to tag and track biomolecules in biological/biomedical imaging. However, their intracellular use as highlighters of single-molecule localization and nanobiosensors reporting ion microdomains changes has remained a major challenge. Here, we report the design, generation and validation of FRET-based nanobiosensors for detection of intracellular Ca2+ and H+ transients. Our sensors combine a commercially available CANdot®565QD as an energy donor with, as an acceptor, our custom-synthesized red-emitting Ca2+ or H+ probes. These ‘Rubies’ are based on an extended rhodamine as a fluorophore and a phenol or BAPTA (1,2-bis(o-aminophenoxy)ethane-N,N,N′,N′-tetra-acetic acid) for H+ or Ca2+ sensing, respectively, and additionally bear a linker arm for conjugation. QDs were stably functionalized using the same SH/maleimide crosslink chemistry for all desired reactants. Mixing ion sensor and cell-penetrating peptides (that facilitate cytoplasmic delivery) at the desired stoichiometric ratio produced controlled multi-conjugated assemblies. Multiple acceptors on the same central donor allow up-concentrating the ion sensor on the QD surface to concentrations higher than those that could be achieved in free solution, increasing FRET efficiency and improving the signal. We validate these nanosensors for the detection of intracellular Ca2+ and pH transients using live-cell fluorescence imaging.
机译:半导体纳米晶体(NC)或量子点(QD)是发光点发射器,越来越多地用于标记和跟踪生物/生物医学成像中的生物分子。然而,它们在细胞内用作单分子定位的荧光笔和报告离子微区变化的纳米生物传感器仍然是一个重大挑战。在这里,我们报告基于FRET的纳米生物传感器的设计,生成和验证,用于检测细胞内Ca 2 + 和H + 瞬态。我们的传感器将市售的CANdot ® 565QD作为能量供体与我们定制合成的红色发射Ca 2 + 或H + < / sup>探针。这些“ Rubies”基于扩展的罗丹明(作为荧光团)和苯酚或BAPTA(1,2-双(邻氨基苯氧基)乙烷-N,N,N',N'-四乙酸)H + 或Ca 2 + 感应,并另外带有一个连接臂用于偶联。对于所有所需的反应物,使用相同的SH /马来酰亚胺交联化学将QD稳定地官能化。以所需的化学计量比混合离子传感器和穿透细胞的肽(有助于细胞质递送)可产生受控的多结合组件。同一中央供体上的多个受体可使QD表面上的离子传感器向上浓缩,使其浓度高于自由溶液中可达到的浓度,从而提高了FRET效率并改善了信号。我们验证了这些纳米传感器用于使用活细胞荧光成像技术检测细胞内Ca 2 + 和pH瞬变的能力。

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