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Nmnat mitigates sensory dysfunction in a Drosophila model of paclitaxel-induced peripheral neuropathy

机译:Nmnat减轻紫杉醇诱发的周围神经病的果蝇模型中的感觉障碍。

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Chemotherapy-induced peripheral neuropathy (CIPN) is the major dose-limiting side effect of many commonly used chemotherapeutic agents, including paclitaxel. Currently, there are no neuroprotective or effective symptomatic treatments for CIPN. Lack of understanding of the in vivo mechanisms of CIPN has greatly impeded the identification of therapeutic targets. Here, we optimized a model of paclitaxel-induced peripheral neuropathy using Drosophila larvae that recapitulates aspects of chemotherapy-induced sensory dysfunction . We showed that nociceptive sensitivity is associated with disrupted organization of microtubule-associated MAP1B/Futsch and aberrant stabilization of peripheral sensory dendrites. These findings establish a robust and amenable model for studying peripheral mechanisms of CIPN. Using this model, we uncovered a critical role for nicotinamide mononucleotide adenylyltransferase (Nmnat) in maintaining the integrity and function of peripheral sensory neurons and uncovered Nmnat's therapeutic potential against diverse sensory symptoms of CIPN.
机译:化疗引起的周围神经病(CIPN)是许多常用化疗药物(包括紫杉醇)的主要剂量限制性副作用。目前,尚无针对CIPN的神经保护或有效对症疗法。对CIPN体内机制的缺乏了解极大地阻碍了治疗靶标的识别。在这里,我们使用果蝇幼虫优化了紫杉醇诱导的周围神经病变的模型,该模型概括了化学疗法诱导的感觉功能障碍的各个方面。我们表明,伤害感受敏感性与微管相关的MAP1B / Futsch的组织破坏和周围感觉树突的异常稳定有关。这些发现为研究CIPN的外围机制建立了一个健壮的模型。使用此模型,我们发现了烟酰胺单核苷酸腺苷酸转移酶(Nmnat)在维持周围感觉神经元的完整性和功能方面的关键作用,并揭示了Nmnat对CIPN多种感觉症状的治疗潜力。

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