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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Delayed NGF infusion fails to reverse axotomy-induced degeneration of basal forebrain cholinergic neurons in adult p75(LNTR)-deficient mice.
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Delayed NGF infusion fails to reverse axotomy-induced degeneration of basal forebrain cholinergic neurons in adult p75(LNTR)-deficient mice.

机译:延迟NGF输注无法逆转成年p75(LNTR)缺陷小鼠的轴突切开术引起的基础前脑胆碱能神经元变性。

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The p75 low-affinity neurotrophin receptor (p75(LNTR)) appears to have various functions that include enhancing nerve growth factor (NGF)-mediated survival by increasing TrkA (high-affinity NGF receptor) efficiency, and mediating apoptosis by acting as a ligand-regulated pro-apoptotic receptor. Here, we investigated the role of p75(LNTR) for adult cholinergic basal forebrain neurons by comparing neuronal responses to injury in control and p75(LNTR)-deficient mice. In both types of mice, approximately 70% of the cholinergic neurons in the ipsilateral medial septum had lost their markers choline acetyltransferase and tyrosine kinase A by 28 days following unilateral transection of the dorsal septohippocampal pathway (fimbria fornix). A 7-day delayed infusion of NGF that started 28 days after the injury resulted in reversal of choline acetyltransferase expression and cell atrophy in control, but not in p75(LNTR)-deficient, mice. This lack of response to delayed NGF treatment in p75(LNTR)-deficient mice was most likely not due to cell death, as all of the septohippocampal neurons, labeled with Fluorogold before the lesion, were present at 28 days post-lesion, similar to control mice. p75(LNTR)-deficient cholinergic neurons can respond to NGF as they were protected by NGF infusions that started immediately after the injury. These observations, the fact that lesioned p75(LNTR)-deficient neurons atrophy faster, and that non-lesioned neurons hypertrophy in response to NGF in control but not in p75(LNTR)-deficient mice, suggest that p75(LNTR) is needed for tyrosine kinase A and NGF signaling efficiency.In conclusion, during adulthood p75(LNTR) appears to play a beneficial role in the response of cholinergic neurons to injury, consistent with the proposed role of p75(LNTR) in the enhancement of TrkA signaling and the transport of neurotrophins by these neurons.
机译:p75低亲和力神经营养蛋白受体(p75(LNTR))似乎具有多种功能,包括通过提高TrkA(高亲和力NGF受体)效率来增强神经生长因子(NGF)介导的存活,并通过充当配体来介导凋亡调节的促凋亡受体。在这里,我们通过比较对照和p75(LNTR)缺陷小鼠对损伤的神经元反应,研究了p75(LNTR)在成人胆碱能基底前脑神经元中的作用。在这两种类型的小鼠中,同侧内侧隔中约70%的胆碱能神经元在背侧隔海马体途径单侧横切28天后即丧失了其标记物胆碱乙酰基转移酶和酪氨酸激酶A(纤维膜穹ni)。在受伤后28天开始的NGF延迟输注7天导致对照的胆碱乙酰转移酶表达和细胞萎缩逆转,但在缺乏p75(LNTR)的小鼠中却没有。对p75(LNTR)缺陷小鼠的NGF延迟治疗缺乏反应很可能不是由于细胞死亡引起的,因为在病变后28天,所有标有Fluorogold的隔海马神经元都在病变后28天出现,类似于对照小鼠。缺乏p75(LNTR)的胆碱能神经元可以对NGF作出反应,因为它们受到受伤后立即开始的NGF输注的保护。这些观察结果表明,病变的p75(LNTR)缺陷神经元萎缩更快,而非病变的神经元在对照组中对NGF有反应而肥大,但在p75(LNTR)缺陷小鼠中却没有,这表明p75(LNTR)对于总之,在成年期,p75(LNTR)在胆碱能神经元对损伤的反应中似乎起着有益的作用,与p75(LNTR)在TrkA信号增强和增强中的作用有关。这些神经元转运神经营养蛋白。

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