Novel anti-Alzheimer’s dimer bis(7)-Cognitin: Cellular and molecular mechanisms of neuroprotection through multiple targets

被引:0
作者
Wenming Li
Marvin Mak
Hualiang Jiang
Qinwen Wang
Yuanping Pang
Kaixian Chen
Yifan Han
机构
[1] the Hong Kong Polytechnic University,Department of Applied Biology & Chemical Technology, Institute of Modern Chinese Medicine
[2] Shanghai Institute of Materia Media,Center for Drug Discovery and Design, State Key Laboratory of Drug Research
[3] Ningbo University,Department of Physiology, Medical School
[4] Mayo Foundation for Medical Education and Research,undefined
来源
Neurotherapeutics | 2009年 / 6卷
关键词
Bis(7)-Cognitin; multiple targets; neuroprotection; AChE; NMDA receptor;
D O I
暂无
中图分类号
学科分类号
摘要
Alzheimer’s disease (AD) is a progressive and degenerative brain disorder that has emerged as one of the major public health problems in adults. Unfortunately, its molecular pathology and therapeutic strategies remain elusive. Because there are multiple factors closely indicated in the pathogenesis of AD, multiple drug therapy will be required to address the varied pathological aspects of this disease. Existing pharmacological approaches with one-molecule-one-target are limited in their ability to modify the pathology of AD. Novel therapeutics strategies comprise multifunctional compounds specifically designed to target concurrently on different sites at multifactorial etiopathogenesis of AD, thereby providing greater therapeutic efficacy. Over the past decade, our group has developed several series of dimeric acetylcholinesterase (AChE) inhibitors derived from tacrine and huperzine A, a unique anti-Alzheimer’s drug originally discovered from a traditional Chinese medicinal plant. Bis(7)-Cognitin, one of our novel dimers, through inhibition of AChE, N-methyl-D-aspartate receptor, nitric oxide synthase, and amyloid precursor protein/β-amyloid cascade concurrently, possesses remarkable neuroprotective activities. More importantly, the synergism between these targets might serve as one of the most effective therapeutic strategies to arrest/modify pathological process of AD in addition to improving the cognitive functions for AD.
引用
收藏
页码:187 / 201
页数:14
相关论文
共 175 条
[31]  
Gao ZZ(2001)Interleukin-10 prevents glutamate-mediated cerebellar granule cell death by blocking caspase-3-like activity J Neurosci 21 3104-3112
[32]  
Weng Z(2000)Protection against ischemic injury in primary cultured mouse astrocytes by bis(7)-tacrine, a novel acetylcholinesterase inhibitor Neurosci Lett 288 95-98
[33]  
Du ZM(2000)Bis(7)-tacrine, a promising anti-Alzheimer’s agent, reduces hydrogen peroxide-induced injury in rat pheochromocytoma cellsxomparison with tacrine Neurosci Lett 290 197-200
[34]  
Xu W(2005)Novel dimeric acetylcholinesterase inhibitor bis7-tacrine, but not donepezil, prevents glutamate-induced neuronal apoptosis by blocking N-methyl-D-aspartate receptors J Biol Chem 280 18179-18188
[35]  
Xu SS(2006)Bis(7)-tacrine attenuates beta amyloid-induced neuronal apoptosis by regulating L-type calcium channels J Neurochem 98 1400-1410
[36]  
Gao ZZ(2008)Bis(7)-tacrine, a promising anti-Alzheimer’s dimer, affords dose- and time-dependent neuroprotection against transient focal cerebral ischemia Neurosci Lett 439 160-164
[37]  
Weng Z(2004)Pathways towards and away from Alzheimer’s disease Nature 430 631-639
[38]  
Du ZM(2004)Mitochondrial dysfunction and glutamate excitotoxicity studied in primary neuronal cultures Curr Mol Med 4 149-177
[39]  
Xu W(2007)Mitochondrial proteomic analysis and characterization of the intracellular mechanisms of bis(7)-tacrine in protecting against glutamate-induced excitotoxicity in primary cultured neurons J Proteome Res 6 2435-2446
[40]  
Sonkusare SK(2001)Alzheimer’s disease:genes, proteins, and therapy Physiol Rev 81 741-766