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Brief freezing steps lead to robust immunofluorescence in the Drosophila nervous system

机译:短暂的冷冻步骤会导致果蝇神经系统产生强大的免疫荧光

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摘要

possesses a complex nervous system, regulating sophisticated behavioral outputs, that serves as a powerful model for dissecting molecular mechanisms underlying neuronal function and neurodegenerative disease. Immunofluorescence techniques provide a way to visualize the spatiotemporal organization of these networks, permitting observation of their development, functional location, remodeling and, eventually, degradation. However, basic immunostaining techniques do not always result in efficient antibody penetration through the brain, and supplemental techniques to enhance permeability can compromise structural integrity, altering spatial organization. Here, slow freezing of brains is shown to facilitate antibody permeability without loss of antibody specificity or brain integrity. To demonstrate the advantages of this freezing technique, the results of two commonly used permeation methods – detergent-based and partial proteolytic digestion – are compared.
机译:拥有复杂的神经系统,调节复杂的行为输出,可作为分析神经元功能和神经退行性疾病的分子机制的强大模型。免疫荧光技术提供了一种可视化这些网络的时空组织的方法,从而可以观察它们的发育,功能位置,重塑以及最终降解。但是,基本的免疫染色技术并不总是能使抗体有效地穿过大脑,而增强通透性的补充技术可能会损害结构完整性,从而改变空间组织。在此,显示出大脑的缓慢冷冻有助于抗体的渗透性而不会丧失抗体特异性或大脑完整性。为了证明这种冷冻技术的优势,比较了两种常用的渗透方法-基于洗涤剂的消化法和部分蛋白水解法-的结果。

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