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Metabolic fate of glucose in rats with traumatic brain injury and pyruvate or glucose treatments: A NMR spectroscopy study

机译:颅脑外伤和丙酮酸或葡萄糖治疗对大鼠葡萄糖的代谢命运:NMR光谱研究

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摘要

Administration of sodium pyruvate (SP; 9.08 μmol/kg, i.p.), ethyl pyruvate (EP; 0.34 μmol/kg, i.p.) or glucose (GLC; 11.1 μmol/kg, i.p.) to rats after unilateral controlled cortical impact (CCI) injury has been reported to reduce neuronal loss and improve cerebral metabolism. In the present study these doses of each fuel or 8% saline (SAL; 5.47 nmoles/kg) were administered immediately and at 1, 3, 6 and 23 h post-CCI. At 24 h all CCI groups and non-treated Sham injury controls were infused with [1,2 13C] glucose for 68 min 13C nuclear magnetic resonance (NMR) spectra were obtained from cortex + hippocampus tissues from left (injured) and right (contralateral) hemispheres. All three fuels increased lactate labeling to a similar degree in the injured hemisphere. The amount of lactate labeled via the pentose phosphate and pyruvate recycling (PPP + PR) pathway increased in CCI-SAL and was not improved by SP, EP, and GLC treatments. Oxidative metabolism, as assessed by glutamate labeling, was reduced in CCI-SAL animals. The greatest improvement in oxidative metabolism was observed in animals treated with SP and fewer improvements after EP or GLC treatments. Compared to SAL, all three fuels restored glutamate and glutamine labeling via pyruvate carboxylase (PC), suggesting improved astrocyte metabolism following fuel treatment. Only SP treatments restored the amount of [4 13C] glutamate labeled by the PPP + PR pathway to sham levels. Milder injury effects in the contralateral hemisphere appear normalized by either SP or EP treatments, as increases in the total pool of 13C lactate and labeling of lactate in glycolysis, or decreases in the ratio of PC/PDH labeling of glutamine, were found only for CCI-SAL and CCI-GLC groups compared to Sham. The doses of SP, EP and GLC examined in this study all enhanced lactate labeling and restored astrocyte-specific PC activity but differentially affected neuronal metabolism after CCI injury. The restoration of astrocyte metabolism by all three fuel treatments may partially underlie their abilities to improve cerebral glucose utilization and to reduce neuronal loss following CCI injury.
机译:单侧控制性皮质撞击(CCI)损伤后向大鼠给药丙酮酸钠(SP; 9.08μmol/ kg,ip),丙酮酸乙酯(EP; 0.34μmol/ kg,ip)或葡萄糖(GLC; 11.1μmol/ kg,ip)据报道减少神经元丢失并改善脑代谢。在本研究中,这些剂量的每种燃料或8%的盐水(SAL; 5.47 nmoles / kg)在CCI后1、3、6和23小时立即给药。在第24小时,所有CCI组和未经治疗的Sham损伤对照组均注入[1,2 13 C]葡萄糖,持续68 min 13 C核磁共振波谱从左(受伤)半球和右(对侧)半球的皮质+海马组织获得。在受伤的半球中,所有三种燃料均增加了乳酸标记的程度。在CCI-SAL中,通过戊糖磷酸和丙酮酸循环(PPP + PR)途径标记的乳酸量增加,而SP,EP和GLC处理则没有改善。通过谷氨酸标记评估的氧化代谢在CCI-SAL动物中减少。在用SP处理的动物中观察到氧化代谢的最大改善,而在EP或GLC处理后的改善较小。与SAL相比,所有三种燃料均通过丙酮酸羧化酶(PC)恢复了谷氨酸和谷氨酰胺标记,表明燃料处理后星形胶质细胞代谢得到改善。只有SP处理才能将PPP + PR途径标记的[4 13 C]谷氨酸的量恢复到假水平。通过SP或EP治疗,对侧半球的轻度损伤作用似乎已正常化,因为 13 C乳酸的总库增加和糖酵解中的乳酸标记,或PC / PDH标记比例降低与Sham组相比,仅CCI-SAL组和CCI-GLC组发现了谷氨酰胺含量的降低。在这项研究中检查的SP,EP和GLC剂量均增强了乳酸标记并恢复了星形胶质细胞特异性PC活性,但对CCI损伤后的神经元代谢产生了不同的影响。通过所有三种燃料处理恢复星形胶质细胞代谢可能部分地是其改善CCI损伤后脑葡萄糖利用和减少神经元丢失的能力的基础。

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