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亚致死性体外葡萄糖 - 氧剥夺可保护培养的海马神经元免受随后的严重损伤。

Sublethal in vitro glucose-oxygen deprivation protects cultured hippocampal neurons against a subsequent severe insult.

作者信息

Khaspekov L, Shamloo M, Victorov I, Wieloch T

机构信息

Laboratory for Experimental Brain Research, Wallenberg Neuroscience Center, Lund University Hospital, Sweden.

出版信息

Neuroreport. 1998 May 11;9(7):1273-6. doi: 10.1097/00001756-199805110-00003.

Abstract

Rat and gerbil hippocampus exposed to a sublethal period of ischemia becomes resistant to a subsequent period of lethal ischemia induced several days later, a phenomenon referred to as ischemic preconditioning. Here we describe ischemic preconditioning induced in vitro in cultured hippocampal neurons. Mixed neuroglial hippocampal cell cultures of 14-17 DIV were exposed to a combined glucose and oxygen deprivation (GOD). Cultures subjected to 90 min, but not 60 min, of GOD showed extensive degeneration after a 1 day recovery period. An episode of 60 min of preconditioning GOD followed 1 and 2 days later by 90 min of GOD resulted in 40-60% protection. The data demonstrate that ischemic preconditioning can be mimicked in an in vitro hippocampal cell culture system.

摘要

暴露于亚致死性缺血期的大鼠和沙鼠海马,对几天后诱导的后续致死性缺血期产生抗性,这一现象被称为缺血预处理。在此,我们描述在体外培养的海马神经元中诱导的缺血预处理。将14 - 17天龄的混合神经胶质海马细胞培养物暴露于葡萄糖和氧气联合剥夺(GOD)环境。经历90分钟(而非60分钟)GOD处理的培养物在1天恢复期后显示出广泛退化。在预处理60分钟的GOD处理后1天和2天,再进行90分钟的GOD处理,可产生40 - 60%的保护作用。数据表明,缺血预处理可在体外海马细胞培养系统中模拟。

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