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反复脑缺血后全身葡萄糖浓度对脑代谢的影响。

The effects of systemic glucose concentration on brain metabolism following repeated brain ischemia.

作者信息

Laptook A R, Corbett R J, Arencibia-Mireles O, Ruley J, Garcia D

机构信息

Department of Pediatrics, University of Texas, Southwestern Medical Center at Dallas 75235-9063.

出版信息

Brain Res. 1994 Feb 28;638(1-2):78-84. doi: 10.1016/0006-8993(94)90635-1.

Abstract

Since systemic glucose concentration is an important determinant of ischemic brain metabolism in neonates, we sought to determine if the systemic glucose concentration influences brain metabolic alterations following repeated partial ischemia. A group of hyperglycemic piglets (n = 12) were compared to a group of modestly hypoglycemic piglets (n = 12) using in vivo 2H and 31P magnetic resonance spectroscopy to simultaneously measure cerebral blood flow and phosphorylated metabolites before, during and 30 min after two 10-min episodes of ischemia (i.e. Recovery 1 and 2). For both groups, beta-ATP levels at Recovery 1 and 2 were lower than Control (91 +/- 11 and 83 +/- 15% of Control, respectively for both groups combined, P = 0.002 vs Control). Inorganic phosphorus was elevated in hyperglycemic piglets at Recovery 1 and 2 (117 +/- 15 and 118 +/- 10% of Control). In contrast, in modestly hypoglycemic piglets inorganic phosphorus progressively rose from Recovery 1 (131 +/- 24% of Control) to Recovery 2 (149 +/- 37% of Control), and differed from the hyperglycemic group (P = 0.02). These changes did not correlate with post-ischemic cerebral blood flow, cerebral O2 delivery or cerebral glucose delivery. In both groups phosphocreatine and intracellular pH returned to Control values during Recovery 1 and 2. The progressive increase in inorganic phosphorus post-ischemia in hypoglycemic piglets suggests that modest hypoglycemia during and following repeated partial ischemia adversely affects immediate brain metabolic recovery.

摘要

由于全身葡萄糖浓度是新生儿缺血性脑代谢的重要决定因素,我们试图确定全身葡萄糖浓度是否会影响反复部分缺血后的脑代谢改变。使用体内2H和31P磁共振波谱法,比较了一组高血糖仔猪(n = 12)和一组轻度低血糖仔猪(n = 12),在两次10分钟缺血发作(即恢复1和恢复2)之前、期间和之后,同时测量脑血流量和磷酸化代谢物。对于两组,恢复1和恢复2时的β-ATP水平均低于对照组(两组合并后分别为对照组的91±11%和83±15%,与对照组相比P = 0.002)。高血糖仔猪在恢复1和恢复2时无机磷升高(分别为对照组的117±15%和118±10%)。相比之下,轻度低血糖仔猪的无机磷从恢复1(为对照组的131±24%)逐渐升至恢复2(为对照组的149±37%),且与高血糖组不同(P = 0.02)。这些变化与缺血后脑血流量、脑氧输送或脑葡萄糖输送无关。在两组中,磷酸肌酸和细胞内pH在恢复1和恢复2期间均恢复至对照值。低血糖仔猪缺血后无机磷的逐渐增加表明,反复部分缺血期间及之后的轻度低血糖会对脑代谢的即时恢复产生不利影响。

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