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CLARITY-compatible lipophilic dyes for electrode marking and neuronal tracing

机译:CLARITY兼容的亲脂性染料,用于电极标记和神经元示踪

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摘要

Fluorescent lipophilic dyes, such as DiI, stain cellular membranes and are used extensively for retrograde/anterograde labeling of neurons as well as for marking the position of extracellular electrodes after electrophysiology. Convenient histological clearing techniques, such as CLARITY, enable immunostaining and imaging of large volumes for 3D-reconstruction. However, such clearing works by removing lipids and, as an unintended consequence, also removes lipophilic dyes. To remedy this wash-out, the molecular structure of the dye can be altered to adhere to both membranes and proteins so the dye remains in the tissue after lipid–clearing. Nevertheless, the capacity of such modified dyes to remain in tissue has not yet been tested. Here, we test dyes with molecular modifications that make them aldehyde-fixable to proteins. We use three Dil–analogue dyes, CM-DiI, SP-DiI and FM 1–43FX that are modified to be CLARITY-compatible candidates. We use the challenging adult, myelin-rich spinal cord tissue, which requires prolonged lipid–clearing, of rats and mice. All three dyes remained in the tissue after lipid–clearing, but CM-DiI had the sharpest and FM 1–43FX the strongest fluorescent signal.
机译:荧光亲脂性染料(例如DiI)会染色细胞膜,并广泛用于神经元的逆行/顺行标记以及电生理后标记细胞外电极的位置。方便的组织学清除技术(例如CLARITY)可进行免疫染色和大量成像,以进行3D重建。然而,这种清除通过去除脂质而起作用,并且作为意想不到的结果,还去除了亲脂性染料。为了纠正这种冲洗,可以改变染料的分子结构,使其粘附在膜和蛋白质上,因此在清除脂质后,染料仍保留在组织中。然而,尚未测试这种修饰的染料保留在组织中的能力。在这里,我们测试具有分子修饰的染料,这些修饰使它们可以醛固定在蛋白质上。我们使用三种Dil类比染料CM-DiI,SP-DiI和FM 1–43FX,它们被修改为与CLARITY兼容的候选物。我们使用具有挑战性的富含髓磷脂的成人脊髓组织,该组织需要长时间清除大鼠和小鼠的脂质。清除脂质后,所有三种染料都保留在组织中,但是CM-DiI具有最清晰的荧光,而FM 1–43FX具有最强的荧光信号。

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    Jensen, K; Berg, RW;

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  • 年度 2016
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