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NPC1-deficient neurons are selectively vulnerable for statin treatment

机译:NPC1缺陷的神经元是选择性易受他汀类药物治疗的影响

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Niemann Pick C (NPC) is a fatal hereditary neurovisceral disorder associated with a progressive loss of neurons of unknown mechanism. The disease is caused by mutation in either of two genes, termed npc1 and npc2, accounting for similar to 95% and similar to 5% of patients, respectively. Recent data suggest a cell-autonomous cause for neuronal cell death. In a former study we could demonstrate that cultured NPC1-deficient (NPC1 - / -) neurons are more susceptible to autophagic stress than NPC1-wildtype (wt) neurons. In the present study we tested other stressors for a selective effect on the survival of NPC1 - / - neurons. To that end we challenged cultured primary cortical neurons from a NPC mouse model and from wild type littermate mice by a variety of different stressors: glutamate, hydrogen superoxide, osmotic shock and inhibition of HMG-CoA reductase. In all paradigms neurons behave virtually identical with one exception: NPC1 deficient neurons are more vulnerable against a challenge with lovastatin. The analysis of the molecular background provides evidence that statin endangers survival of neurons by interfering in the autophagy of cells.
机译:Niemann Pick C(NPC)是一种致命的遗传性神经疫苗病症,其与未知机制的神经元进行渐进性。该疾病是由两种基因中任一基因的突变引起的,称为NPC1和NPC2,核算类似于95%且患者的5%。最近的数据表明神经细胞死亡的细胞自主原因。在前几项研究中,我们可以证明培养的NPC1缺陷(NPC1 - / - )神经元比NPC1-野生型(WT)神经元更容易自噬应力。在本研究中,我们测试了对N​​PC1 / - 神经元的存活作用的选择性作用。为此,我们通过各种不同的压力源从NPC小鼠模型和野生型凋落物小鼠中挑战培养的原发性皮质神经元:谷氨酸,过氧化物,渗透休克和HMG-COA还原酶的抑制。在所有范式中,神经元的行为几乎与一个例外类似:NPC1缺乏神经元更容易受洛伐他汀挑战的影响。分子背景的分析提供了他汀类药物通过干扰细胞的自噬危害神经元的存活。

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