首页> 外文期刊>Journal of neurotrauma >Ketogenic diet prevents alterations in brain metabolism in young but not adult rats after traumatic brain injury.
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Ketogenic diet prevents alterations in brain metabolism in young but not adult rats after traumatic brain injury.

机译:生酮饮食可防止年轻但成年大鼠脑外伤后脑代谢发生变化。

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Previous studies have shown that the change of cerebral metabolic rate of glucose (CMRglc) in response to traumatic brain injury (TBI) is different in young (PND35) and adult rats (PND70), and that prolonged ketogenic diet treatment results in histological and behavioral neuroprotection only in younger rat brains. However, the mechanism(s) through which ketones act in the injured brain and the biochemical markers of their action remain unknown. Therefore, the current study was initiated to: 1) determine the effect of injury on the neurochemical profile in PND35 compared to PND70 rats; and 2) test the effect of early post-injury administration of ketogenic diet on brain metabolism in PND35 versus PND70 rats. The data show that alterations in energy metabolites, amino acid, and membrane metabolites were not evident in PND35 rats on standard diet until 24 h after injury, when the concentration of most metabolites was reduced from sham-injured values. In contrast, acute, but transient deficits in energy metabolism were measured at 6 h in PND70 rats, together with deficits in N-acetylaspartate that endured until 24 h. Administration of a ketogenic diet resulted in significant increases in plasma beta-hydroxybutyrate (betaOHB) levels. Similarly, brain betaOHB levels were significantly elevated in all injured rats, but were elevated by 43% more in PND35 rats compared to PND70 rats. As a result, ATP, creatine, and phosphocreatine levels at 24 h after injury were significantly improved in the ketogenic PND35 rats, but not in the PND70 group. The improvement in energy metabolism in the PND35 brains was accompanied by the recovery of NAA and reduction of lactate levels, as well as amelioration of the deficits of other amino acids and membrane metabolites. These results indicate that the PND35 brains are more resistant to the injury, indicated by a delayed deficit in energy metabolism. Moreover, the younger brains revert to ketones metabolism more quickly than do the adult brains, resulting in better neurochemical and cerebral metabolic recovery after injury.
机译:先前的研究表明,在年轻的(PND35)和成年大鼠(PND70)中,对创伤性脑损伤(TBI)的脑葡萄糖代谢率(CMRglc)的变化是不同的,并且长期的生酮饮食治疗会导致组织学和行为学上的变化。仅在较年轻的大鼠大脑中具有神经保护作用。但是,酮在受伤的大脑中发挥作用的机制及其作用的生化标志物仍然未知。因此,目前的研究开始于:1)确定与PND70大鼠相比,损伤对PND35神经化学谱的影响;和2)在PND35和PND70大鼠中测试早期生酮饮食对脑代谢的影响。数据显示,在标准饮食下,PND35大鼠直到损伤后24 h能量代谢产物,氨基酸和膜代谢产物的变化才明显,此时大多数代谢产物的浓度均从假损伤值降低。相比之下,PND70大鼠在6 h时测量了能量代谢的急性但短暂的缺陷,以及持续到24 h的N-乙酰天门冬氨酸的缺陷。生酮饮食的施用导致血浆β-羟基丁酸酯(betaOHB)水平显着增加。同样,在所有受伤的大鼠中,脑βOHB水平均显着升高,但与PND70大鼠相比,PND35大鼠中的大脑βOHB水平升高了43%。结果,在生酮的PND35大鼠中,损伤后24小时的ATP,肌酸和磷酸肌酸水平显着提高,而在PND70组中则没有。 PND35脑中能量代谢的改善伴随着NAA的恢复和乳酸水平的降低,以及其他氨基酸和膜代谢产物缺乏症的缓解。这些结果表明,PND35大脑对损伤的抵抗力更高,这是能量代谢的延迟缺陷所致。而且,年轻的大脑比成年的大脑更快地恢复为酮的代谢,从而在受伤后能更好地恢复神经化学和大脑的新陈代谢。

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