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体内和体外31P核磁共振测量揭示衰老对大鼠脑磷酸盐代谢物的影响

Effect of aging on phosphate metabolites of rat brain as revealed by the in vivo and in vitro 31P NMR measurements.

作者信息

Liu H C, Chi C W, Liu T Y, Liu L H, Luh W M, Hsieh C H, Wu W G

机构信息

Neurological Center, Veterans General Hospital, Taipei, Taiwan, Republic of China.

出版信息

Life Sci. 1991;48(21):2057-63. doi: 10.1016/0024-3205(91)90162-5.

Abstract

Changes of phosphate metabolism in brains of neonate, weaning and adult rats were compared using both in vivo and in vitro nuclear magnetic resonance spectra. Ratios of phosphocreatine/nucleoside triphosphate (PCr/NTP) were the same in neonatal brain in both in vivo and in vitro studies, but not in weaning and adult brains. This discrepancy may have resulted from extended cerebral hypoxia due to slowed freezing of the brain by the increased skull thickness and brain mass in the weaning and adult rats. Variations in in vitro extraction condition for this age-related study may lead to systematic errors in the adult rats. Nevertheless, the phosphomonoester/nucleoside triphosphate (PME/NTP) ratios in extracts of brain from neonatal rats were higher than those obtained in vivo. In addition, the glycerophosphorylethanolamine plus glycerophosphorylcholine/nucleoside triphosphate (GPE+GPC/NTP) ratios, which were not measurable in vivo, showed age-dependent increase in extracts of rat brain. Some of the phosphomonoester and phosphodiester molecules in rat brain may be undetectable in in vivo NMR analysis because of their interaction with cellular components. The total in vitro GPE and GPC concentration in brain from neonatal rat was estimated to be 0.34 mmole/g wet tissue.

摘要

使用体内和体外核磁共振光谱比较了新生、断奶和成年大鼠大脑中磷酸盐代谢的变化。在体内和体外研究中,新生大鼠大脑中的磷酸肌酸/三磷酸核苷(PCr/NTP)比值相同,但断奶和成年大鼠大脑中的该比值不同。这种差异可能是由于断奶和成年大鼠颅骨厚度和脑质量增加导致大脑冷冻速度减慢,从而延长了脑缺氧时间所致。在这项与年龄相关的研究中,体外提取条件的变化可能会导致成年大鼠出现系统性误差。然而,新生大鼠脑提取物中的磷酸单酯/三磷酸核苷(PME/NTP)比值高于体内获得的比值。此外,体内无法测量的甘油磷酸乙醇胺加甘油磷酸胆碱/三磷酸核苷(GPE+GPC/NTP)比值在大鼠脑提取物中呈现出随年龄增长的增加。由于大鼠脑中的一些磷酸单酯和磷酸二酯分子与细胞成分相互作用,在体内核磁共振分析中可能无法检测到。新生大鼠脑的体外总GPE和GPC浓度估计为0.34毫摩尔/克湿组织。

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