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Biogen's aducanumab raises hope that Alzheimer's can be treated at its source.百健公司的阿杜卡那单抗让人们燃起了从根源上治疗阿尔茨海默病的希望。
Manag Care. 2015 Jun;24(6):19.
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The case for rejecting the amyloid cascade hypothesis.反对淀粉样蛋白级联假说。
Nat Neurosci. 2015 Jun;18(6):794-9. doi: 10.1038/nn.4017.
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Rodent models for Alzheimer's disease drug discovery.用于阿尔茨海默病药物研发的啮齿动物模型。
Expert Opin Drug Discov. 2015 Jul;10(7):703-11. doi: 10.1517/17460441.2015.1041913. Epub 2015 Apr 30.
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Presenilin-1 knockin mice reveal loss-of-function mechanism for familial Alzheimer's disease.早老素-1基因敲入小鼠揭示了家族性阿尔茨海默病的功能丧失机制。
Neuron. 2015 Mar 4;85(5):967-81. doi: 10.1016/j.neuron.2015.02.010.
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Acute function of secreted amyloid precursor protein fragment APPsα in synaptic plasticity.分泌型淀粉样前体蛋白片段 APPsα 在突触可塑性中的急性功能。
Acta Neuropathol. 2015 Jan;129(1):21-37. doi: 10.1007/s00401-014-1368-x. Epub 2014 Nov 29.
6
Regulation of presynaptic Ca2+, synaptic plasticity and contextual fear conditioning by a N-terminal β-amyloid fragment.N 端β淀粉样蛋白片段对突触前钙离子、突触可塑性及情境恐惧条件反射的调节作用
J Neurosci. 2014 Oct 22;34(43):14210-8. doi: 10.1523/JNEUROSCI.0326-14.2014.
7
Intracellular accumulation of amyloid-β (Aβ) protein plays a major role in Aβ-induced alterations of glutamatergic synaptic transmission and plasticity.细胞内淀粉样蛋白-β(Aβ)的积累在 Aβ 诱导的谷氨酸能突触传递和可塑性改变中起主要作用。
J Neurosci. 2014 Sep 17;34(38):12893-903. doi: 10.1523/JNEUROSCI.1201-14.2014.
8
Moving beyond anti-amyloid therapy for the prevention and treatment of Alzheimer's disease.超越抗淀粉样蛋白疗法用于阿尔茨海默病的预防和治疗。
BMC Neurol. 2014 Sep 2;14:169. doi: 10.1186/s12883-014-0169-0.
9
Intracellular Aβ pathology and early cognitive impairments in a transgenic rat overexpressing human amyloid precursor protein: a multidimensional study.转基因大鼠过度表达人淀粉样前体蛋白引起的细胞内 Aβ病理学和早期认知障碍:一项多维研究。
Acta Neuropathol Commun. 2014 Jun 5;2:61. doi: 10.1186/2051-5960-2-61.
10
Nicotinic ACh receptors in the hippocampal circuit; functional expression and role in synaptic plasticity.海马回路中的烟碱型乙酰胆碱受体;功能表达及其在突触可塑性中的作用。
J Physiol. 2014 Oct 1;592(19):4147-53. doi: 10.1113/jphysiol.2014.273896. Epub 2014 May 23.

阿尔茨海默病发病机制的关键可能在于β-淀粉样蛋白(Aβ)的生理特性。

The keystone of Alzheimer pathogenesis might be sought in Aβ physiology.

作者信息

Puzzo D, Gulisano W, Arancio O, Palmeri A

机构信息

Department of Biomedical and Biotechnological Sciences, Section of Physiology, Viale A. Doria 6 (ed. 2), University of Catania, Catania 95125, Italy.

Department of Biomedical and Biotechnological Sciences, Section of Physiology, Viale A. Doria 6 (ed. 2), University of Catania, Catania 95125, Italy.

出版信息

Neuroscience. 2015 Oct 29;307:26-36. doi: 10.1016/j.neuroscience.2015.08.039. Epub 2015 Aug 24.

DOI:10.1016/j.neuroscience.2015.08.039
PMID:26314631
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4591241/
Abstract

For several years Amyloid-beta peptide (Aβ) has been considered the main pathogenetic factor of Alzheimer's disease (AD). According to the so called Amyloid Cascade Hypothesis the increase of Aβ triggers a series of events leading to synaptic dysfunction and memory loss as well as to the structural brain damage in the later stage of the disease. However, several evidences suggest that this hypothesis is not sufficient to explain AD pathogenesis, especially considering that most of the clinical trials aimed to decrease Aβ levels have been unsuccessful. Moreover, Aβ is physiologically produced in the healthy brain during neuronal activity and it is needed for synaptic plasticity and memory. Here we propose a model interpreting AD pathogenesis as an alteration of the negative feedback loop between Aβ and its physiological receptors, focusing on alpha7 nicotinic acetylcholine receptors (α7-nAchRs). According to this vision, when Aβ cannot exert its physiological function a negative feedback mechanism would induce a compensatory increase of its production leading to an abnormal accumulation that reduces α7-nAchR function, leading to synaptic dysfunction and memory loss. In this perspective, the indiscriminate Aβ removal might worsen neuronal homeostasis, causing a further impoverishment of learning and memory. Even if further studies are needed to better understand and validate these mechanisms, we believe that to deepen the role of Aβ in physiological conditions might represent the keystone to elucidate important aspects of AD pathogenesis.

摘要

数年来,β淀粉样肽(Aβ)一直被视为阿尔茨海默病(AD)的主要致病因素。根据所谓的淀粉样蛋白级联假说,Aβ的增加引发了一系列事件,导致突触功能障碍和记忆丧失,以及在疾病后期出现脑部结构损伤。然而,一些证据表明,这一假说不足以解释AD的发病机制,尤其是考虑到大多数旨在降低Aβ水平的临床试验都未成功。此外,在健康大脑中,神经元活动期间会生理性产生Aβ,而突触可塑性和记忆需要Aβ。在此,我们提出一个模型,将AD发病机制解释为Aβ与其生理受体之间负反馈回路的改变,重点关注α7烟碱型乙酰胆碱受体(α7-nAchRs)。根据这一观点,当Aβ无法发挥其生理功能时,负反馈机制会诱导其产生代偿性增加,导致异常积累,从而降低α7-nAchR功能,进而导致突触功能障碍和记忆丧失。从这个角度来看,不加区分地清除Aβ可能会恶化神经元内环境稳定,导致学习和记忆进一步受损。即使需要进一步研究以更好地理解和验证这些机制,我们认为深入了解Aβ在生理条件下的作用可能是阐明AD发病机制重要方面的关键。