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An open-type microdevice to improve the quality of fluorescence labeling for axonal transport analysis in neurons

机译:一种开放式微型设备可提高神经元轴突转运分析的荧光标记的质量

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摘要

Abnormal axonal transport of vesicles as well as organelles in a particular set of neurons is implicated in the pathogenesis of many neurodegenerative diseases such as amyotrophic lateral sclerosis, Alzheimer's disease, and Parkinson's disease. Although various types of microfluidic multicompartmental devices with closed microchannels have been recently developed and widely used for axonal transport analysis, most of the existing devices are troublesome and time-consuming to handle, such as culture maintenances, sample collections, and immunocytochemistry. In this study, we overcome such inherent shortcomings by developing a novel open-type device that enables easy cell maintenance and sample collections. In our device, microgrooves instead of microchannels were directly fabricated on a glass substrate, thereby making possible a high-resolution optical observation. Compared with the conventional closed-type devices, our newly designed device allowed us to efficiently and precisely label the axonal acidic vesicles by fluorescent dyes, facilitating a high-throughput analysis of axonal vesicular transport. The present novel device, as a user-friendly and powerful tool, can be implemented in molecular and cellular pathogenesis studies on neurological diseases.
机译:在一组特定神经元中,囊泡和细胞器的轴突运输异常与许多神经退行性疾病(如肌萎缩性侧索硬化,阿尔茨海默氏病和帕金森氏病)的发病机制有关。尽管近来已开发出各种类型的具有封闭微通道的微流体多室设备,并广泛用于轴突运输分析,但大多数现有设备操作麻烦且耗时,例如培养物维护,样品收集和免疫细胞化学。在这项研究中,我们通过开发一种新型的开放式设备克服了这些固有的缺点,该设备能够轻松进行细胞维护和样品收集。在我们的设备中,可以在玻璃基板上直接制造微沟槽而不是微通道,从而可以进行高分辨率的光学观察。与传统的封闭型设备相比,我们新设计的设备使我们能够通过荧光染料高效,精确地标记轴突酸性囊泡,从而有助于对轴突囊泡转运进行高通量分析。作为一种用户友好且功能强大的工具,本新型装置可以在神经疾病的分子和细胞发病机制研究中实现。

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