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A 3-D Microfluidic/Electronic Scaffold for Increased Viability and Analysis of Thick in Vitro Brain Slices

机译:3-D微流控/电子支架,以提高生存能力和体外脑片厚实分析

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This paper presents a novel 3-D scaffold for culturing thick in vitro brain slices. The microscaffold consists of a 12x12 array of spiked SU-8 microtowers with integrated fluidic properties for nutrient delivery and electrodes for stimulation/recording to the thick in vitro brain slice cultured on the system. Design, fabrication, and packaging of the brain slice scaffold are presented. Additionally, increased cell viability data from thick ( 400pm) in vitro brain slices cultured on a PDMS and glass capillary microperfusion system is presented. The nutrient/fluid delivery properties of both the glass capillary microperfusion system and the presented brain slice scaffold allow for increased integrity and viability of thick brain slices.
机译:本文提出了一种新型的3-D支架,用于培养厚的体外脑片。微支架由12x12阵列的尖刺SU-8微型塔组成,这些塔具有集成的流体特性以输送营养,并具有电极,用于刺激/记录到在系统上培养的厚厚的体外脑切片。介绍了脑切片支架的设计,制造和包装。此外,还显示了来自在PDMS和玻璃毛细管微灌流系统上培养的厚厚(> 400pm)体外脑切片的细胞活力数据。玻璃毛细管微灌注系统和提出的脑片支架的营养/流体输送特性使厚脑片的完整性和生存能力得以提高。

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