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在暴露于常压高氧和高压氧的脑干切片中进行氧测量。

Oxygen measurements in brain stem slices exposed to normobaric hyperoxia and hyperbaric oxygen.

作者信息

Mulkey D K, Henderson R A, Olson J E, Putnam R W, Dean J B

机构信息

Department of Physiology and Biophysics, Environmental and Hyperbaric Cell Biology Facility, College of Science and Mathematics, Wright State University School of Medicine, Dayton, Ohio 45435, USA.

出版信息

J Appl Physiol (1985). 2001 May;90(5):1887-99. doi: 10.1152/jappl.2001.90.5.1887.

Abstract

We previously reported (J Appl Physiol 89: 807-822, 2000) that < or =10 min of hyperbaric oxygen (HBO(2); < or = 2,468 Torr) stimulates solitary complex neurons. To better define the hyperoxic stimulus, we measured PO(2) in the solitary complex of 300-microm-thick rat medullary slices, using polarographic carbon fiber microelectrodes, during perfusion with media having PO(2) values ranging from 156 to 2,468 Torr. Under control conditions, slices equilibrated with 95% O(2) at barometric pressure of 1 atmospheres absolute had minimum PO(2) values at their centers (291 +/- 20 Torr) that were approximately 10-fold greater than PO(2) values measured in the intact central nervous system (10-34 Torr). During HBO(2), PO(2) increased at the center of the slice from 616 +/- 16 to 1,517 +/- 15 Torr. Tissue oxygen consumption tended to decrease at medium PO(2) or = 1,675 Torr to levels not different from values measured at PO(2) found in all media in metabolically poisoned slices (2-deoxy-D-glucose and antimycin A). We conclude that control medium used in most brain slice studies is hyperoxic at normobaric pressure. During HBO(2), slice PO(2) increases to levels that appear to reduce metabolism.

摘要

我们之前报道过(《应用生理学杂志》89: 807 - 822, 2000),≤10分钟的高压氧(HBO₂;≤2,468托)可刺激孤束核复合体神经元。为了更好地界定高氧刺激,我们在灌注PO₂值范围为156至2,468托的培养基时,使用极谱碳纤维微电极测量了300微米厚大鼠延髓切片孤束核复合体中的PO₂。在对照条件下,在绝对气压1个大气压下用95% O₂平衡的切片,其中心的最低PO₂值(291±20托)比在完整中枢神经系统中测得的PO₂值(10 - 34托)大约高10倍。在HBO₂期间,切片中心的PO₂从616±16托增加到1,517±15托。在中等PO₂≥1,675托时,组织氧消耗趋于降低至与在代谢中毒切片(2 - 脱氧 - D - 葡萄糖和抗霉素A)所有培养基中测得的PO₂值无差异的水平。我们得出结论,大多数脑片研究中使用的对照培养基在常压下是高氧的。在HBO₂期间,切片PO₂增加到似乎会降低代谢的水平。

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