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A Lifetime’s Adventure in Extracellular K+ Regulation: The Scottish Connection

机译:一生的细胞外K +调节历险记:苏格兰联系

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摘要

In a career that has spanned 45 years and shows no signs of slowing down, Dr Bruce Ransom has devoted considerable time and energy to studying regulation of interstitial K+. When Bruce commenced his studies in 1969 virtually nothing was known of the functions of glial cells, but Bruce’s research contributed to the physiological assignation of function to mammalian astrocytes, namely interstitial K+ buffering. The experiments that I describe in this review concern the response of the membrane potential (Em) of in vivo cat cortical astrocytes to changes in [K+]o, an experimental manoeuvre that was achieved in two different ways. The first involved recording the Em of an astrocyte while the initial aCSF was switched to one with different K+, whereas in the second series of experiments the cortex was stimulated and the response of the astrocyte Em to the K+ released from neighbouring neurons was recorded. The astrocytes responded in a qualitatively predictable manner, but quantitatively the changes were not as predicted by the Nernst equation. Elevations in interstitial K+ are not sustained and K+ returns to baseline rapidly due to the buffering capacity of astrocytes, a phenomenon studied by Bruce, and his son Chris, published 27 years after Bruce’s initial publications. Thus, a lifetime spent investigating K+ buffering has seen enormous advances in glial research, from the time cells were identified as ‘presumed’ glial cells or ‘silent cells’, to the present day, where glial cells are recognised as contributing to every important physiological brain function.
机译:在长达45年的职业生涯中,布鲁斯·兰瑟姆(Bruce Ransom)博士花了很多时间和精力研究间隙K + 的调节。当Bruce在1969年开始研究时,对神经胶质细胞的功能几乎一无所知,但是Bruce的研究促进了哺乳动物星形胶质细胞的生理功能分配,即间质性K + 缓冲。我在这篇综述中描述的实验涉及体内猫皮层星形胶质细胞的膜电位(Em)对[K + ] o变化的响应,该实验通过两种不同的方式实现。第一个涉及记录星形胶质细胞的Em,而初始aCSF切换为具有不同K + 的星形胶质细胞,而在第二系列实验中,皮层受到刺激,星形胶质细胞Em对K的反应记录从邻近神经元释放的 + 。星形胶质细胞以定性的方式反应,但定量上的变化与能斯特方程所预测的不同。由于星形胶质细胞的缓冲能力,间质K + 的升高并没有持续,K + 迅速返回基线,这是布鲁斯及其儿子克里斯研究的现象,发表于27在布鲁斯的最初出版物发表多年之后因此,从研究细胞被鉴定为“假定的”神经胶质细胞或“沉默细胞”到今天的胶质细胞研究,一生用于研究K + 缓冲的研究已在神经胶质研究中取得了巨大进展。被认为对每个重要的生理性脑功能都有贡献。

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