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Nerve growth factor alters microtubule targeting agent-induced neurotransmitter release but not MTA-induced neurite retraction in sensory neurons

机译:神经生长因子改变感觉神经元中微管靶向剂诱导的神经递质释放,但不改变MTA诱导的神经突收缩。

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摘要

Peripheral neuropathy is a dose-limiting side effect of anticancer treatment with the microtubule-targeted agents (MTAs), paclitaxel and epothilone B (EpoB); however, the mechanisms by which the MTAs alter neuronal function and morphology are unknown. We previously demonstrated that paclitaxel alters neuronal sensitivity, in vitro, in the presence of nerve growth factor (NGF). Evidence in the literature suggests that NGF may modulate the neurotoxic effects of paclitaxel. Here, we examine whether NGF modulates changes in neuronal sensitivity and morphology induced by paclitaxel and EpoB. Neuronal sensitivity was assessed using the stimulated release of calcitonin gene-related peptide (CGRP), whereas morphology of established neurites was evaluated using a high content screening system. Dorsal root ganglion cultures, maintained in the absence or presence of NGF, were treated from day 7 to day 12 in culture with paclitaxel (300nM) or EpoB (30nM). Following treatment, the release of CGRP was stimulated using capsaicin or high extracellular potassium. In the presence of NGF, EpoB mimicked the effects of paclitaxel: capsaicin-stimulated release was attenuated, potassium-stimulated release was slightly enhanced and the total peptide content was unchanged. In the absence of NGF, both paclitaxel and EpoB decreased capsaicin- and potassium-stimulated release and the total peptide content, suggesting that NGF may reverse MTA-induced hyposensitivity. Paclitaxel and EpoB both decreased neurite length and branching, and this attenuation was unaffected by NGF in the growth media. These differential effects of NGF on neuronal sensitivity and morphology suggest that neurite retraction is not a causative factor to alter neuronal sensitivity.
机译:周围神经病变是使用微管靶向药物(MTA),紫杉醇和埃坡霉素B(EpoB)进行抗癌治疗的剂量限制性副作用;但是,MTA改变神经元功能和形态的机制尚不清楚。我们先前证明了在存在神经生长因子(NGF)的情况下,紫杉醇可在体外改变神经元敏感性。文献证据表明,NGF可能调节紫杉醇的神经毒性作用。在这里,我们检查NGF是否调节由紫杉醇和EpoB诱导的神经元敏感性和形态变化。使用降钙素基因相关肽(CGRP)的刺激释放来评估神经元敏感性,而使用高含量筛选系统来评估已建立的神经突的形态。从第7天到第12天,用紫杉醇(300nM)或EpoB(30nM)处理在NGF不存在或不存在下维持的背根神经节培养物。治疗后,使用辣椒素或高细胞外钾刺激CGRP的释放。在NGF存在下,EpoB模仿了紫杉醇的作用:辣椒素刺激的释放减弱,钾刺激的释放略有增强,总肽含量不变。在缺乏NGF的情况下,紫杉醇和EpoB均会降低辣椒素和钾刺激的释放以及总肽含量,这表明NGF可能逆转了MTA引起的敏感性降低。紫杉醇和EpoB都减少了神经突的长度和分支,并且这种衰减不受生长培养基中NGF的影响。 NGF对神经元敏感性和形态的这些不同影响表明,神经突退缩不是改变神经元敏感性的致病因素。

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