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Ultrafast Near-Infrared Light-triggered Intracellular Uncaging to Probe Cell Signaling

机译:超快近红外光触发细胞内成笼探测探针细胞信号。

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摘要

The possibility of regulating cell signaling with high spatial and temporal resolution within individual cells and complex cellular networks has important implications in biomedicine. In this report, we demonstrate a general strategy that uses near-infrared tissue-penetrating laser pulses to uncage biomolecules from plasmonic gold-coated liposomes, i.e. plasmonic liposomes, to activate cell signaling in a non-thermal, ultrafast and highly controllable fashion. Near-infrared picosecond laser pulse induces transient nanobubbles around plasmonic liposomes. The mechanical force generated from the collapse of nanobubbles rapidly ejects encapsulated compound within 0.1 ms. We showed that single pulse irradiation triggers the rapid intracellular uncaging of calcein from plasmonic liposomes inside endo-lysosomes. The uncaged calcein then evenly distributes over the entire cytosol and nucleus. Furthermore, we demonstrated the ability to trigger calcium signaling in both an immortalized cell line and primary dorsal root ganglion (DRG) neurons by intracellular uncaging of inositol triphosphate (IP3), an endogenous cell calcium signaling second messenger. Compared with other uncaging techniques, this ultrafast near-infrared light-driven molecular uncaging method is easily adaptable to deliver a wide range of bioactive molecules with an ultrafast optical switch, enabling new possibilities to investigate signaling pathways within individual cells and cellular networks.
机译:在单个细胞和复杂的细胞网络中以高时空分辨率调节细胞信号的可能性在生物医学中具有重要意义。在本报告中,我们展示了一种通用策略,该策略使用近红外穿透组织的激光脉冲从等离子镀金脂质体(即等离子脂质体)中解开生物分子,以非热,超快和高度可控的方式激活细胞信号传导。近红外皮秒激光脉冲在等离子体脂质体周围诱导瞬态纳米气泡。由纳米气泡崩溃产生的机械力在0.1毫秒内迅速弹出封装的化合物。我们表明单脉冲辐射触发内溶酶体中的血浆脂质体从钙黄绿素的快速细胞内解开。然后,未老化的钙黄绿素均匀地分布在整个细胞质和细胞核中。此外,我们证明了通过胞内三糖肌醇三磷酸肌醇(IP3)(内源性细胞钙信号传导的第二信使)的细胞释放来触发永生细胞系和初级背根神经节(DRG)神经元中钙信号的能力。与其他解包技术相比,这种超快的近红外光驱动分子解包方法很容易通过超快的光学开关来传递各种生物活性分子,从而为研究单个细胞和细胞网络内的信号通路提供了新的可能性。

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