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Rapid, concurrent alterations in pre- and postsynaptic structure induced by naturally-secreted amyloid-beta protein.

机译:天然分泌的淀粉样蛋白引起的突触前和突触结构快速同时改变。

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In Alzheimer's disease increasing evidence attributes synaptic and cognitive deficits to soluble oligomers of amyloid beta protein (Abeta), even prior to the accumulation of amyloid plaques, neurofibrillary tangles, and neuronal cell death. Here we show that within 1-2 h picomolar concentrations of cell-derived, soluble Abeta induce specific alterations in pre- and postsynaptic morphology and connectivity in cultured hippocampal neurons. Clusters of presynaptic vesicle markers decreased in size and number at glutamatergic but not GABAergic terminals. Dendritic spines also decreased in number and became dysmorphic, as spine heads collapsed and/or extended long protrusions. Simultaneous time-lapse imaging of axon-dendrite pairs revealed that shrinking spines sometimes became disconnected from their presynaptic varicosity. Concomitantly, miniature synaptic potentials decreased in amplitude and frequency. Spine changes were prevented by blockers of nAChRs and NMDARs. Washout of Abeta within the first day reversed these spine changes. Further, spine changes reversed spontaneously by 2 days, because neurons acutely developed resistance to continuous Abeta exposure. Thus, rapid Abeta-induced synapse destabilization may underlie transient behavioral impairments in animal models, and early cognitive deficits in Alzheimer's patients.
机译:在阿尔茨海默氏病中,越来越多的证据将突触和认知缺陷归因于淀粉样蛋白β(Abeta)的可溶性寡聚体,甚至在淀粉样蛋白斑块,神经原纤维缠结和神经元细胞死亡之前。在这里,我们显示了在1-2小时皮摩尔浓度的细胞衍生的可溶性Abe​​ta中,在培养的海马神经元中,突触前和突触后的形态和连通性发生了特定的变化。突触前囊泡标志物的簇在谷氨酸能末梢的大小和数量减少,但在GABA能末梢没有下降。树突棘的数量也减少,并变得畸形,因为脊柱头塌陷和/或延长了长的突起。轴突-树突对的同时延时成像显示,收缩的脊椎有时会脱离突触前静脉曲张。伴随地,微型突触电位在幅度和频率上降低。 nAChR和NMDAR的阻滞剂可预防脊柱改变。在第一天冲洗掉Abeta可逆转这些脊柱变化。此外,由于神经元急性发展出对连续Abeta暴露的抵抗力,因此脊柱变化自发地逆转了2天。因此,快速的Abeta诱导的突触不稳定可能是动物模型中短暂的行为受损和阿尔茨海默氏病患者早期认知缺陷的基础。

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