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Molecular targeting of NOX4 for neuropathic pain after traumatic injury of the spinal cord

机译:脊髓外伤后NOX4分子靶向治疗神经性疼痛

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摘要

Neuropathic pain is a well-known type of chronic pain caused by damage to the nervous system. Until recently, many researchers have primarily focused on identifying cellular or chemical sources of neuropathic pain or have approached neuropathic pain via the basis of biological study. We investigated whether both mmu-mir-23b (miR23b) and NADPH oxidase 4 (NOX4) antibody infusion can alleviate neuropathic pain by compensating for abnormally downregulated miR23b via reducing the expression of its target gene, NOX4, a reactive oxygen species (ROS) family member overexpressed in neuropathic pain. Ectopic miR23b expression effectively downregulated NOX4 and finally normalized glutamic acid decarboxylase 65/67 expression. Moreover, animals with neuropathic pain showed significantly improved paw withdrawal thresholds (PWTs) following miR23b infusion. Normalizing miR23b expression in tissue lesions, caused by neuropathic pain induction, reduced inflammatory mediators and increased several ROS scavengers. Moreover, γ-aminobutyric acid (GABA)ergic neurons coexpressed suboptimal levels of miR23b and elevated NOX4/ROS after pain induction at the cellular level. MiR23b finally protects GABAergic neurons against ROS/p38/c-Jun N-terminal kinase (JNK)-mediated apoptotic death. By evaluating the functional behavior of mice receiving pain/miR23b, normal/anti-miR23b, anti-miR23b/si-NOX4, pain/NOX4 antibody, pain/ascorbic acid, and pain/ascorbic acid/NOX4 antibody, the positive role of miR23b and the negative role of NOX4 in neuropathic pain were confirmed. Based on this study, we conclude that miR23b has a crucial role in the amelioration of neuropathic pain in injured spinal cord by inactivating its target gene, NOX4, and protection of GABAergic neurons from cell death. We finally suggest that infusion of miR23b and NOX4 antibody may provide attractive diagnostic and therapeutic resources for effective pain modulation in neuropathic pain.
机译:神经性疼痛是由对神经系统的损害引起的一种众所周知的慢性疼痛。直到最近,许多研究人员一直主要致力于确定神经性疼痛的细胞或化学来源,或者已经通过生物学研究解决了神经性疼痛。我们研究了mmu-mir-23b(miR23b)和NADPH氧化酶4(NOX4)抗体的注入是否能够通过减少其靶基因NOX4(一种活性氧(ROS)家族)的表达来补偿异常下调的miR23b,从而减轻神经性疼痛。成员在神经性疼痛中过表达。异位miR23b表达有效下调NOX4,并最终使谷氨酸脱羧酶65/67表达正常。此外,miR23b输注后,患有神经性疼痛的动物的爪缩缩阈值(PWTs)显着提高。由神经性疼痛诱导引起的组织损伤中miR23b表达的正常化,炎症介质的减少和几种ROS清除剂的增加。此外,在细胞水平上引起疼痛后,γ-氨基丁酸(GABA)能神经元共表达了miR23b的次优水平和NOX4 / ROS升高。 MiR23b最终保护GABA能神经元免受ROS / p38 / c-Jun N末端激酶(JNK)介导的凋亡性死亡。通过评估接受疼痛/ miR23b,正常/抗miR23b,抗miR23b / si-NOX4,疼痛/ NOX4抗体,疼痛/抗坏血酸和疼痛/抗坏血酸/ NOX4抗体的小鼠的功能行为,miR23b的积极作用并证实了NOX4在神经性疼痛中的负作用。根据这项研究,我们得出的结论是,miR23b通过失活其靶基因NOX4和保护GABA能神经元免受细胞死亡,在缓解脊髓损伤中具有关键作用。我们最终建议,输注miR23b和NOX4抗体可为神经性疼痛中的有效疼痛调节提供有吸引力的诊断和治疗资源。

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