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Continuous tracking of startled Drosophila as an alternative to the negative geotaxis climbing assay

机译:连续跟踪令人惊讶的果蝇作为负土耳其攀爬测定的替代方案

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The fruit fly, Drosophila, is commonly used to study late-onset neurodegenerative diseases due to the combination of powerful genetic tools, cheap and simple husbandry and short lifespan. One widely-used measure of disease progression is the age-dependent decline in motor performance that manifests in most Drosophila neurodegeneration models. This is usually quantified using a simple climbing assay. However, the standard climbing assay lacks sensitivity and suffers from high variability meaning large numbers of flies are needed or bespoke apparatus and software solutions. Here, we present a modification of the open-source, MATLAB-based, DART software to measure the decline in "startle response" with age. We demonstrate that the DART setup is more sensitive to the motor performance decline induced by adult-onset neuronal expression of amyloid beta (Abeta) peptides than a traditional climbing assay despite using smaller cohorts of flies. DART also has the potential to generate multiple metrics of motor behaviour during the startle response. The software requires no coding skills to operate and the required apparatus can be purchased commercially. Therefore, DART is a more useful method than the climbing assay for longitudinal assays of motor performance and will enable higher-throughput screen for genetic and pharmacological modifiers of neurodegeneration. In our proof-of-concept screen for modifiers of Abeta-dependent phenotypes, we identified that in vivo knock-down of p53 in adult neurons is neuroprotective. This supports recent work targeting p53 in vitro and demonstrates the potential for DART to be used to screen for targets that ameliorate neurodegeneration.
机译:果蝇果蝇,常常用于研究晚期神经退行性疾病,因为强大的遗传工具,便宜和简单的饲养和短暂的寿命。一种广泛使用的疾病进展量是在大多数果蝇神经变性模型中表现出的运动性能的年龄依赖性下降。通常使用简单的攀爬测定来量化。然而,标准攀爬测定缺乏敏感性,并且遭受高可变性,意味着需要大量的苍蝇或定制设备和软件解决方案。在这里,我们展示了开放源,基于MATLAB的DART软件的修改,以测量随着年龄的增长的“惊吓响应”的下降。我们证明,尽管使用较小的苍蝇,但由于使用较小的苍蝇而不是传统的攀爬试验,Dart设置对成人发作神经元表达比传统攀爬试验诱导的电动机性能下降更敏感。 Dart还有可能在Sightle响应期间产生多个电机行为的度量标准。该软件不需要编码技巧来操作,并且可以商业地购买所需的设备。因此,DART是一种更有用的方法,比电动机性能的纵向测定爬爬测定,并将为神经变性的遗传和药理学改性剂实现较高通量的筛选。在我们的依赖于Abeta依赖表型的调节剂的概念证据筛选中,我们发现在成人神经元中P53的体内敲低是神经保护性的。这支持最近在体外靶向P53的工作,并证明了镖的潜力用于筛选改善神经变性的靶标。

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