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Adaptation of Microelectrode Array Technology for the Study of Anesthesia-induced Neurotoxicity in the Intact Piglet Brain

机译:微电极阵列技术在完整的仔猪脑中麻醉诱导的神经毒性研究中的应用

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摘要

Every year, millions of children undergo anesthesia for a multitude of procedures. However, studies in both animals and humans have called into question the safety of anesthesia in children, implicating anesthetics as potentially toxic to the brain in development. To date, no studies have successfully elucidated the mechanism(s) by which anesthesia may be neurotoxic. Animal studies allow investigation of such mechanisms, and neonatal piglets represent an excellent model to study these effects due to their striking developmental similarities to the human brain.This protocol adapts the use of enzyme-based microelectrode array (MEA) technology as a novel way to study the mechanism(s) of anesthesia-induced neurotoxicity (AIN). MEAs enable real-time monitoring of in vivo neurotransmitter activity and offer exceptional temporal and spatial resolution. It is hypothesized that anesthetic neurotoxicity is caused in part by glutamate dysregulation and MEAs offer a method to measure glutamate. The novel implementation of MEA technology in a piglet model presents a unique opportunity for the study of AIN.
机译:每年,成千上万的儿童接受多种手术麻醉。然而,对动物和人类的研究都对儿童麻醉的安全性提出了质疑,这暗示麻醉药对发育中的大脑可能具有毒性。迄今为止,尚无研究成功阐明麻醉可能具有神经毒性的机制。动物研究允许对这种机制进行研究,并且由于新生仔猪与人脑有着惊人的相似性,因此新生仔猪是研究这些效应的绝佳模型。该方案将基于酶的微电极阵列(MEA)技术的应用作为一种新颖的方法来进行。研究麻醉诱导的神经毒性(AIN)的机制。 MEAs可以实时监测体内神经递质的活性,并提供出色的时间和空间分辨率。据推测,麻醉性神经毒性部分是由谷氨酸失调引起的,而MEAs提供了一种测量谷氨酸的方法。仔猪模型中MEA技术的新颖实施为AIN的研究提供了独特的机会。

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