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猫颈动脉体化学感受对氧压依赖性的光学测量。

Optical measurements of the dependence of chemoreception on oxygen pressure in the cat carotid body.

作者信息

Rumsey W L, Iturriaga R, Spergel D, Lahiri S, Wilson D F

机构信息

Department of Biochemistry and Biophysics, University of Pennsylvania School of Medicine, Philadelphia 19104.

出版信息

Am J Physiol. 1991 Oct;261(4 Pt 1):C614-22. doi: 10.1152/ajpcell.1991.261.4.C614.

Abstract

The relationship between oxygen pressure (PO2) in the carotid body and carotid sinus nerve discharge was evaluated in the isolated perfused/superfused cat carotid body using the oxygen-dependent quenching of phosphorescence. Images of phosphorescence intensity arising from Pd-coproporphyrin within the microcirculation of the carotid body provided measurements of intravascular PO2. These measurements were substantiated by determining phosphorescence life-time. The carotid body was perfused in the isolated state via the common carotid artery with N-2-hydroxyethylpiperazine-N'-2-ethanesulfonic acid-buffered Tyrode solution, pH 7.4, at a constant pressure of 80 mmHg. Superfusion was maintained with similar media equilibrated with 100% argon. PO2 in the exchange vessels was markedly less than that in the perfusate entering the carotid artery, 23 +/- 3 and 45 +/- 3 Torr for normoxic (111 +/- 15 Torr) and hyperoxic (345 +/- 72 Torr) perfusates, respectively. Chemosensory discharge rose slowly in response to a brief interruption of perfusate flow as PO2 steadily declined from either of these capillary PO2 values to approximately 10 Torr. Between approximately 10 and 3 Torr, chemosensory discharge increased strikingly, concomitant with an enhanced rate of oxygen disappearance, from -36 +/- 4 to -69 +/- 13 (92% change) and -28 +/- 3 to -48 +/- 3 (71% change) Torr/s for normoxic and hyperoxic perfusates, respectively. As PO2 fell below approximately 3 Torr, oxygen disappearance slowed and neural activity decayed. Thus the relationships between microvascular PO2 and chemosensory discharge and between oxygen disappearance and neural discharge suggest that oxygen metabolism in the carotid body determines the expression of oxygen chemoreception.

摘要

利用磷光的氧依赖性猝灭,在分离灌注/超灌注的猫颈动脉体中评估了颈动脉体中的氧分压(PO2)与颈动脉窦神经放电之间的关系。颈动脉体微循环内源自钯-粪卟啉的磷光强度图像提供了血管内PO2的测量值。通过测定磷光寿命证实了这些测量结果。在离体状态下,通过颈总动脉用pH 7.4的N-2-羟乙基哌嗪-N'-2-乙烷磺酸缓冲的台氏液以80 mmHg的恒定压力灌注颈动脉体。用与100%氩气平衡的类似培养基进行超灌注。交换血管中的PO2明显低于进入颈动脉的灌注液中的PO2,常氧(111±15 Torr)和高氧(345±72 Torr)灌注液的PO2分别为23±3和45±3 Torr。当PO2从这些毛细血管PO2值中的任何一个稳定下降至约10 Torr时,化学感受性放电随着灌注液流的短暂中断而缓慢上升。在约10至3 Torr之间,化学感受性放电显著增加,同时氧消失速率加快,常氧和高氧灌注液的氧消失速率分别从-36±4变为-69±13(变化92%)和从-28±3变为-48±3(变化71%)Torr/s。当PO2降至约3 Torr以下时,氧消失减缓,神经活动衰减。因此,微血管PO2与化学感受性放电之间以及氧消失与神经放电之间的关系表明,颈动脉体中的氧代谢决定了氧化学感受的表达。

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