Division of Neurology, Children's Hospital of Philadelphia, Philadelphia, PA 19104, USA.
Proc Natl Acad Sci U S A. 2010 Jan 5;107(1):366-71. doi: 10.1073/pnas.0910280107. Epub 2009 Dec 7.
Neurological dysfunction caused by traumatic brain injury results in profound changes in net synaptic efficacy, leading to impaired cognition. Because excitability is directly controlled by the balance of excitatory and inhibitory activity, underlying mechanisms causing these changes were investigated using lateral fluid percussion brain injury in mice. Although injury-induced shifts in net synaptic efficacy were not accompanied by changes in hippocampal glutamate and GABA levels, significant reductions were seen in the concentration of branched chain amino acids (BCAAs), which are key precursors to de novo glutamate synthesis. Dietary consumption of BCAAs restored hippocampal BCAA concentrations to normal, reversed injury-induced shifts in net synaptic efficacy, and led to reinstatement of cognitive performance after concussive brain injury. All brain-injured mice that consumed BCAAs demonstrated cognitive improvement with a simultaneous restoration in net synaptic efficacy. Posttraumatic changes in the expression of cytosolic branched chain aminotransferase, branched chain ketoacid dehydrogenase, glutamate dehydrogenase, and glutamic acid decarboxylase support a perturbation of BCAA and neurotransmitter metabolism. Ex vivo application of BCAAs to hippocampal slices from injured animals restored posttraumatic regional shifts in net synaptic efficacy as measured by field excitatory postsynaptic potentials. These results suggest that dietary BCAA intervention could promote cognitive improvement by restoring hippocampal function after a traumatic brain injury.
创伤性脑损伤导致的神经功能障碍导致净突触效能发生深刻变化,从而导致认知障碍。由于兴奋性直接受兴奋性和抑制性活动平衡的控制,因此使用小鼠外侧液动脑损伤研究了导致这些变化的潜在机制。尽管损伤引起的净突触效能变化不伴有海马谷氨酸和 GABA 水平的变化,但支链氨基酸(BCAA)的浓度显著降低,BCAA 是从头合成谷氨酸的关键前体。BCAA 的饮食消耗将海马 BCAA 浓度恢复正常,逆转损伤引起的净突触效能变化,并在脑震荡后恢复认知表现。所有消耗 BCAA 的脑损伤小鼠均表现出认知改善,同时净突触效能恢复正常。创伤后细胞质支链氨基转移酶、支链酮酸脱氢酶、谷氨酸脱氢酶和谷氨酸脱羧酶的表达变化支持 BCAA 和神经递质代谢的紊乱。将 BCAA 应用于损伤动物的海马切片的离体应用恢复了通过场兴奋性突触后电位测量的创伤后净突触效能的区域变化。这些结果表明,膳食 BCAA 干预可能通过在创伤性脑损伤后恢复海马功能来促进认知改善。