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首页> 外文期刊>Food and Chemical Toxicology: An International Journal Published for the British Industrial Biological Research >Manganese modifies Neurotrophin-3 (NT3) and its tropomyosin receptor kinase C (TrkC) in the cortex: Implications for manganese-induced neurotoxicity
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Manganese modifies Neurotrophin-3 (NT3) and its tropomyosin receptor kinase C (TrkC) in the cortex: Implications for manganese-induced neurotoxicity

机译:锰在皮质中改变神经滋养素-3(NT3)及其对吡喃素受体激酶C(TRKC):对锰诱导的神经毒性的影响

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摘要

Manganese (Mn), an essential micronutrient, has the potential to induce apoptosis. The NT3/TrkC ligand/receptor pair known as part of the classic neurotrophic theory plays a critical role in neuronal survival. However, whether the NT3/TrkC-mediated signaling pathways are involved in Mn-induced apoptosis of cortical neurons remains unknown. The present study was designed to investigate the interactions between NT3/TrkC-mediated signaling pathways and Mn-induced apoptosis in cortical neurons. This study showed that subacute Mn exposure significantly increased the levels of pro-apoptotic Bax while decreasing the levels of anti-apoptotic Bcl 2 in the cortex compared with the corresponding control. Markedly reduced NT3 and TrkC levels along with decreased Ras/MAPK and PI3/Akt signaling in the cortex were observed following subacute Mn exposure. We further found increased levels of Bax, cleaved caspase-3, and the total apoptosis rate, and decreased levels of Bcl 2, NT3, TrkC, and Ras/MAPK and PI3/Akt signaling in Mn-treated primary cortical neurons. Pretreatment with hNT3 or Z-VAD-FAM ameliorated Mn-induced apoptosis by increasing the levels of NT3 and TrkC and its Ras/MAPK and PI3/Akt signaling pathways. Taken together, our findings clearly indicate that NT3/TrkC and mediated Ras/MAPK and PI3/Akt signaling pathways play a crucial role in Mn-induced neurotoxicity.
机译:锰(Mn)是必需的微量营养素,具有诱导细胞凋亡的可能性。作为经典神经营养理论的一部分的NT3 / TRKC配体/受体对在神经元生存期起着关键作用。然而,NT3 / TRKC介导的信号传导途径是否参与MN诱导的皮质神经元的凋亡仍然未知。本研究旨在研究NT3 / TRKC介导的信号传导途径与皮质神经元中的MN诱导的细胞凋亡的相互作用。该研究表明,与相应的对照相比,亚急性Mn暴露在促凋亡瘤的水平上显着增加了促凋亡障碍的水平,同时降低了皮质中的抗凋亡Bcl 2的水平。在亚急性Mn暴露之后,观察到显着降低的NT3和TRKC水平以及皮质中的降低的RAS / MAPK和PI3 / AKT信号传导。我们进一步发现,在Mn处理的原发性皮质神经元中,BCA 2,NT3,TRKC和RAS / MAPK和PI3 / AKT信号传导的BAX,切割的CASPase-3和总凋亡率和PI3 / AKT信号传导的总凋亡率和降低水平。通过增加NT3和TRKC及其RAS / MAPK和PI3 / AKT信号传导途径来预处理HNT3或Z-VAD-FAM改善的MN诱导的细胞凋亡。我们的研究结果清楚地表明NT3 / TRKC和介导的RAS / MAPK和PI3 / AKT信号传导途径在MN诱导的神经毒性中起着至关重要的作用。

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