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代谢与炎症:对创伤性脑损伤治疗的启示。

Metabolism and inflammation: implications for traumatic brain injury therapeutics.

机构信息

a Division of Neurosurgery, Department of Clinical Neurosciences , University of Cambridge , Cambridge , UK.

b Wolfson Brain Imaging Centre, Department of Clinical Neurosciences , University of Cambridge , Cambridge , UK.

出版信息

Expert Rev Neurother. 2019 Mar;19(3):227-242. doi: 10.1080/14737175.2019.1582332. Epub 2019 Mar 8.

DOI:10.1080/14737175.2019.1582332
PMID:30848963
Abstract

Traumatic Brain Injury (TBI) is a leading cause of death and disability in young people, affecting 69 million people annually, worldwide. The initial trauma disrupts brain homeostasis resulting in metabolic dysfunction and an inflammatory cascade, which can then promote further neurodegenerative effects for months or years, as a 'secondary' injury. Effective targeting of the cerebral inflammatory system is challenging due to its complex, pleiotropic nature. Cell metabolism plays a key role in many diseases, and increased disturbance in the TBI metabolic state is associated with poorer patient outcomes. Investigating critical metabolic pathways, and their links to inflammation, can potentially identify supplements which alter the brain's long-term response to TBI and improve recovery. Areas covered: The authors provide an overview of literature on metabolism and inflammation following TBI, and from relevant pre-clinical and clinical studies, propose therapeutic strategies. Expert opinion: There is still no specific active drug treatment for TBI. Changes in metabolic and inflammatory states have been reported after TBI and appear linked. Understanding more about abnormal cerebral metabolism following TBI, and its relationship with cerebral inflammation, will provide essential information for designing therapies, with implications for neurocritical care and for alleviating long-term disability and neurodegeneration in post-TBI patients.

摘要

创伤性脑损伤(TBI)是全球年轻人死亡和残疾的主要原因,每年影响 6900 万人。最初的创伤会破坏大脑的内稳态,导致代谢功能障碍和炎症级联反应,从而在数月或数年内引发进一步的神经退行性效应,即“继发性”损伤。由于其复杂的多效性,有效靶向大脑炎症系统具有挑战性。细胞代谢在许多疾病中起着关键作用,TBI 代谢状态的紊乱与患者预后较差有关。研究关键代谢途径及其与炎症的联系,可能有助于确定改变大脑对 TBI 长期反应并改善恢复的补充剂。涵盖领域:作者提供了关于 TBI 后代谢和炎症的文献综述,并从相关的临床前和临床研究中提出了治疗策略。专家意见:目前仍没有针对 TBI 的特定有效药物治疗方法。TBI 后报道了代谢和炎症状态的变化,且似乎存在关联。更多地了解 TBI 后异常的大脑代谢及其与大脑炎症的关系,将为治疗方案的设计提供重要信息,对神经危重病学以及减轻 TBI 后患者的长期残疾和神经退行性变具有重要意义。

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