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Collection, storage, and electrophoretic analysis of nanoliter microdialysis samples collected from awake animals in vivo

机译:从清醒的动物体内收集的纳升微透析样品的收集,存储和电泳分析

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Microdialysis sampling is an important tool for chemical monitoring in living systems. Temporal resolution is an important figure of merit that is determined by sampling frequency, assay sensitivity, and dispersion of chemical zones during transport from sampling device to fraction collector or analytical system. Temporal resolution has recently been improved by segmenting flow into plugs, so that nanoliter fractions are collected at intervals of 0.1–2 s, thus eliminating temporal distortion associated with dispersion in continuous flow. Such systems, however, have yet to be used with behaving subjects. Furthermore, long-term storage of nanoliter samples created by segmented flow has not been reported. In this work, we have addressed these challenges. A microdialysis probe was integrated to a plug generator that could be stably mounted onto behaving animals. Long-term storage of dialysate plugs was achieved by collecting plugs into high-purity perfluoroalkoxy tubes, placing the tube into hexane and then freezing at −80°C. Slow warming with even temperatures prevented plug coalescence during sample thawing. As a demonstration of the system, plugs were collected from the striatum of behaving rats using a 0.5-mm-long microdialysis probe. Resulting plugs were analyzed 1–4 days later by chip-based electrophoresis. To improve throughput of plug analysis over previous work, the speed of electrophoretic separation was increased by using forced air cooling and 1-butyl-2,3-dimethylimidazolium tetrafluoroborate as a separation buffer additive, allowing resolution of six neuroactive amino acids in 30 s. Concentration changes induced by K+ microinjections were monitored with 10 s temporal resolution. The improvements reported in this work make it possible to apply segmented flow microdialysis to the study of behaving animals and enable experiments where the analytical system cannot be placed close to the animal.
机译:微透析采样是生命系统中化学监测的重要工具。时间分辨率是重要的品质因数,它由采样频率,化验灵敏度和从采样装置到馏分收集器或分析系统的运输过程中化学区的分散度决定。最近,通过将流量分成多个塞子,提高了时间分辨率,以便以0.1–2 s的间隔收集纳升级分,从而消除了与连续流量分散相关的时间扭曲。但是,此类系统尚未与行为主体一起使用。此外,尚未报告通过分段流动产生的纳升样品的长期存储。在这项工作中,我们已经解决了这些挑战。将微透析探针集成到可稳定安装在行为动物上的塞子发生器上。将透析液塞收集到高纯度的全氟烷氧基管中,然后将其放入己烷中,然后在-80°C下冷冻,即可实现透析液塞的长期存储。在均匀温度下缓慢升温,防止了样品解冻期间的堵塞。作为该系统的演示,使用0.5毫米长的微透析探针从行为大鼠纹状体收集栓塞。 1-4天后通过基于芯片的电泳分析所得的塞子。为了提高塞子分析的通量,与以前的工作相比,通过使用强制空气冷却和1-丁基-2,3-二甲基咪唑四氟硼酸盐作为分离缓冲液添加剂可以提高电泳分离的速度,从而在30 s内拆分出六个神经活性氨基酸。以10 s的时间分辨率监测由K + 微量注射引起的浓度变化。这项工作中报道的改进使得有可能将分段流动微透析应用于行为动物的研究,并能够进行无法将分析系统放置在动物附近的实验。

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