Sensi Stefano L, Paoletti Pierre, Bush Ashley I, Sekler Israel
Department of Basic and Applied Medical Science, Molecular Neurology Unit, CeSI-Center for Excellence on Aging, University G. dAnnunzio, Chieti, 66013, Italy.
Nat Rev Neurosci. 2009 Nov;10(11):780-91. doi: 10.1038/nrn2734. Epub 2009 Oct 14.
The past few years have witnessed dramatic progress on all frontiers of zinc neurobiology. The recent development of powerful tools, including zinc-sensitive fluorescent probes, selective chelators and genetically modified animal models, has brought a deeper understanding of the roles of this cation as a crucial intra- and intercellular signalling ion of the CNS, and hence of the neurophysiological importance of zinc-dependent pathways and the injurious effects of zinc dyshomeostasis. The development of some innovative therapeutic strategies is aimed at controlling and preventing the damaging effects of this cation in neurological conditions such as stroke and Alzheimer's disease.
在锌神经生物学的各个领域,过去几年都取得了显著进展。包括锌敏感荧光探针、选择性螯合剂和基因改造动物模型在内的强大工具的最新发展,使人们对这种阳离子作为中枢神经系统关键的细胞内和细胞间信号离子的作用有了更深入的理解,从而也了解了锌依赖途径的神经生理重要性以及锌稳态失衡的有害影响。一些创新治疗策略的开发旨在控制和预防这种阳离子在中风和阿尔茨海默病等神经疾病中的破坏作用。