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Arrays of microscopic organic LEDs for high-resolution optogenetics

机译:用于高分辨率光遗传学的微观有机LED阵列

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Optogenetics is a paradigm-changing new method to study and manipulate the behavior of cells with light. Following major advances of the used genetic constructs over the last decade, the light sources required for optogenetic control are now receiving increased attention. We report a novel optogenetic illumination platform based on high-density arrays of microscopic organic light-emitting diodes (OLEDs). Because of the small dimensions of each array element (6 × 9 μm2) and the use of ultrathin device encapsulation, these arrays enable illumination of cells with unprecedented spatiotemporal resolution. We show that adherent eukaryotic cells readily proliferate on these arrays, and we demonstrate specific light-induced control of the ionic current across the membrane of individual live cells expressing different optogenetic constructs. Our work paves the way for the use of OLEDs for cell-specific optogenetic control in cultured neuronal networks and for acute brain slices, or as implants in vivo.
机译:光遗传学是一种改变范式的新方法,用于研究和操纵光细胞的行为。在过去的十年中,随着使用的遗传构建体的重大进步,光遗传学控制所需的光源现在正受到越来越多的关注。我们报告了一种新型的光遗传学照明平台,它基于高密度的微观有机发光二极管(OLED)阵列。由于每个阵列元件的尺寸较小(6×9μm 2 ),并且使用超薄器件封装,因此这些阵列可以以前所未有的时空分辨率照亮细胞。我们表明粘附的真核细胞很容易在这些阵列上增殖,并且我们证明了表达不同光遗传学构建体的单个活细胞的膜上离子电流的特异性光诱导控制。我们的工作为将OLED用于培养的神经元网络中的细胞特异性光遗传学控制和急性脑切片或体内植入铺平了道路。

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