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扫描激光光学层析成像技术可解决对先驱神经元的发育神经毒性作用。

Scanning laser optical tomography resolves developmental neurotoxic effects on pioneer neurons.

机构信息

University of Veterinary Medicine Hannover, Institute of Physiology and Cell Biology, Bischofsholer Damm 15/102, 30173, Hannover, Germany.

Laser Zentrum Hannover e.V., Industrial and Biomedical Optics Department, D-30419, Hannover, Germany.

出版信息

Sci Rep. 2020 Feb 14;10(1):2641. doi: 10.1038/s41598-020-59562-7.

Abstract

Developmental neurotoxic compounds impair the developing human nervous system at lower doses than those affecting adults. Standardized test methods for assessing developmental neurotoxicity (DNT) require the use of high numbers of laboratory animals. Here, we use a novel assay that is based on the development of an intact insect embryo in serum-free culture. Neural pathways in the leg of embryonic locusts are established by a pair of afferent pioneer neurons, extending axons along a well-defined pathway to the central nervous system. After exposure to test chemicals, we analyze pioneer neuron shape with conventional fluorescence microscopy and compare it to 3D images, obtained by scanning laser optical tomography (SLOT) and processed by a segmentation algorithm. The segmented SLOT images resolve the 3D structure of the pioneers, recognize pathfinding defects and are thus advantageous for detecting DNT-positive compounds. The defects in axon elongation and pathfinding of pioneer axons caused by two DNT-positive reference compounds (methylmercury chloride; sodium(meta)arsenite) are compared to the biochemically measured general viability of the embryo. Using conventional fluorescence microscopy to establish concentration-response curves of axon elongation, we show that this assay identifies methylmercury chloride and the pro-apoptotic compound staurosporine as developmental neurotoxicants.

摘要

发育神经毒性化合物在影响成人的剂量更低的情况下损害人类发育中的神经系统。评估发育神经毒性 (DNT) 的标准化测试方法需要使用大量实验室动物。在这里,我们使用一种新颖的基于无血清培养中完整昆虫胚胎发育的测定方法。在腿中,昆虫胚胎的神经通路是由一对传入先驱神经元建立的,先驱神经元的轴突沿着明确的途径延伸到中枢神经系统。在接触测试化学品后,我们用传统荧光显微镜分析先驱神经元的形状,并将其与通过扫描激光光学断层扫描 (SLOT) 获得的 3D 图像进行比较,并通过分割算法进行处理。分割后的 SLOT 图像解析了先驱神经元的 3D 结构,识别出了寻路缺陷,因此有利于检测 DNT 阳性化合物。两个 DNT 阳性参考化合物(氯化甲基汞;亚砷酸钠)引起的先驱轴突伸长和寻路缺陷与胚胎的生化测量的总体活力进行了比较。我们使用传统荧光显微镜建立了轴突伸长的浓度反应曲线,结果表明该测定法可将氯化甲基汞和促凋亡化合物 staurosporine 鉴定为发育神经毒物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0abc/7021824/399ffa768ea1/41598_2020_59562_Fig1_HTML.jpg

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