IBAM GbR Dr. Rainer Knörle Dr. Peter Schnierle, Ferdinand-Porsche-Str. 5, 79211, Denzlingen, Germany.
Neurotox Res. 2018 Feb;33(2):515-522. doi: 10.1007/s12640-017-9804-z. Epub 2017 Sep 6.
Neuromelanin is supposed to play a key role in the pathogenesis of Parkinson's disease. A common theory is the formation of reactive oxygen species through the Fenton reaction catalyzed by neuromelanin-bound iron ions and subsequent death of the dopaminergic cells in the substantia nigra. From a physicochemical point of view, this pathway is rather implausible: a highly reactive radical built within a powerful radical scavenger would more promptly be inactivated before it might diffuse within the cell to reach a target to exert its deleterious potential. This review of the literature provides evidence for an interaction of neuromelanin with the calcium signaling pathway in Parkinson's disease and expands the view of the pathophysiological contribution of neuromelanin towards a cytoprotective involvement of this macromolecule in the calcium signaling system. More probably than being directly involved in the production of reactive oxygen species, neuromelanin may act as a calcium reservoir and thus protect dopaminergic cells from cell death. A loss of neuromelanin, as observed in the substantia nigra of Parkinson patients, would lead to enhanced calcium messaging through the loss of an important calcium reservoir and thus finally via the formation of reactive oxygen species to cell death within the substantia nigra.
神经黑色素被认为在帕金森病的发病机制中起关键作用。一种常见的理论是,通过神经黑色素结合的铁离子催化的芬顿反应形成活性氧,随后导致黑质中多巴胺能细胞死亡。从物理化学的角度来看,这种途径是不太可能的:在自由基清除剂内形成的高反应性自由基会在其扩散到细胞内到达靶标发挥其有害潜能之前更快地失活。对文献的回顾为神经黑色素与帕金森病钙信号通路之间的相互作用提供了证据,并扩展了神经黑色素对钙信号系统的病理生理贡献的观点,认为这种大分子在钙信号系统中具有细胞保护作用。神经黑色素可能更像是作为钙库,而不是直接参与活性氧的产生,从而保护多巴胺能细胞免于死亡。帕金森病患者黑质中观察到的神经黑色素丧失会导致钙信号传递增强,这是由于重要钙库的丧失,最终通过形成活性氧导致黑质内细胞死亡。