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犬尿氨酸:从主要精神疾病的角度来看。

Kynurenines: from the perspective of major psychiatric disorders.

机构信息

Psychiatric Hospital, Ludwig-Maximilian University, Munich, Germany.

出版信息

FEBS J. 2012 Apr;279(8):1375-85. doi: 10.1111/j.1742-4658.2012.08551.x. Epub 2012 Mar 27.

Abstract

Psychiatric disorders are documented to be associated with a mild pro-inflammatory state. Pro-inflammatory mediators could activate the tryptophan breakdown and kynurenine pathway with a shift toward the neurotoxic arm where excitotoxic N-methyl-D-aspartate receptor agonist quinolinic acid is formed. An unbalanced metabolism in terms of neuroprotective and neurotoxic effects, such as reduced kynurenic acid to kynurenine ratio, has been demonstrated in the major psychiatric disorders such as unipolar depression, bipolar manic-depressive disorder and schizophrenia, and in drug-induced neuropsychiatric side effects such as interferon-α treated patients. The changes in serum or plasma are shown to be associated with central changes such as in the cerebrospinal fluid and certain brain areas. While currently available antidepressants and mood stabilizers could not efficiently improve these neurochemical changes within the same period that could induce clinical improvement, some antipsychotic treatments could reverse certain metabolic imbalances. Some of these changes were tested also in animal models. In this review the role of this unbalanced kynurenine metabolism through interactions with other neurochemicals is discussed as a major contributing pathophysiological mechanism in psychiatric disorders. Moreover, the biomarker role of kynurenine metabolites and future therapeutic opportunities are also discussed.

摘要

精神障碍被记录为与轻度促炎状态有关。促炎介质可激活色氨酸分解和犬尿氨酸途径,导致向神经毒性臂转移,形成兴奋性 N-甲基-D-天冬氨酸受体激动剂喹啉酸。在主要精神障碍(如单相抑郁、双相躁狂抑郁障碍和精神分裂症)和药物引起的神经精神副作用(如干扰素-α治疗的患者)中,已经证明存在神经保护和神经毒性作用的不平衡代谢,例如减少犬尿氨酸与犬尿氨酸的比值。血清或血浆中的变化与中枢变化(如脑脊液和某些大脑区域)相关。虽然目前可用的抗抑郁药和心境稳定剂在能够诱导临床改善的同一时期内不能有效地改善这些神经化学变化,但某些抗精神病药物治疗可以逆转某些代谢失衡。这些变化中的一些也在动物模型中进行了测试。在这篇综述中,通过与其他神经化学物质的相互作用,讨论了这种不平衡的犬尿氨酸代谢在精神障碍中的主要病理生理机制中的作用。此外,还讨论了犬尿氨酸代谢物的生物标志物作用和未来的治疗机会。

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