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首页> 外文期刊>Molecular pain >Prevention of Paclitaxel-induced allodynia by Minocycline: Effect on loss of peripheral nerve fibers and infiltration of macrophages in rats
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Prevention of Paclitaxel-induced allodynia by Minocycline: Effect on loss of peripheral nerve fibers and infiltration of macrophages in rats

机译:米诺环素预防紫杉醇诱发的异常性疼痛:对大鼠周围神经纤维丢失和巨噬细胞浸润的影响

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Background Although paclitaxel is a frontline antineoplastic agent for treatment of solid tumors, the paclitaxel-evoked pain syndrome is a serious problem for patients. There is currently no valid drug to prevent or treat the paclitaxel-induced allodynia, partly due to lack of understanding regarding the cellular mechanism. Studies have shown that minocycline, an inhibitor of microglia/macrophage, prevented neuropathic pain and promoted neuronal survival in animal models of neurodegenerative disease. Recently, Cata et al also reported that minocycline inhibited allodynia induced by low-dose paclitaxel (2 mg/kg) in rats, but the mechanism is still unclear. Results Here, we investigate by immunohistochemistry the change of intraepidermal nerve fiber (IENF) in the hind paw glabrous skin, expression of macrophage and activating transcription factor 3 (ATF3) in DRG at different time points after moderate-dose paclitaxel treatment (cumulative dose 24 mg/kg; 3 × 8 mg/kg) in rats. Moreover, we observe the effect of minocycline on the IENF, macrophages and ATF3. The results showed that moderate-dose paclitaxel induced a persisted, gradual mechanical allodynia, which was accompanied by the loss of IENF in the hind paw glabrous skin and up-regulation of macrophages and ATF3 in DRG in rats. The expressions of ATF3 mainly focus on the NF200-positive cells. More importantly, we observed that pretreatment of minocycline at dose of 30 mg/kg or 50 mg/kg, but not 5 mg/kg, prevented paclitaxel-evoked allodynia. The evidence from immunohistochemistry showed that 30 mg/kg minocycline rescued the degeneration of IENF, attenuated infiltration of macrophages and up-regulation of ATF3 induced by paclitaxel treatment in rats. Conclusions Minocycline prevents paclitaxel-evoked allodynia, likely due to its inhibition on loss of IENF, infiltration of macrophages and up-regulation of ATF3 in rats. The finding might provide potential target for preventing paclitaxel-induced neuropathic pain.
机译:背景技术尽管紫杉醇是用于治疗实体瘤的一线抗肿瘤药,但是紫杉醇诱发的疼痛综合征对于患者来说是一个严重的问题。当前没有有效的药物来预防或治疗紫杉醇诱发的异常性疼痛,部分原因是对细胞机制缺乏了解。研究表明,在神经退行性疾病动物模型中,小胶质细胞/巨噬细胞抑制剂美满霉素可预防神经性疼痛并促进神经元存活。最近,Cata等人还报道了米诺环素能抑制小剂量紫杉醇(2 mg / kg)引起的大鼠异常性疼痛,但其机制尚不清楚。结果在这里,我们通过免疫组织化学方法研究了中剂量紫杉醇治疗(不同剂量的24次治疗后)在不同时间点后足无毛皮肤中表皮内神经纤维(IENF)的变化,DRG中巨噬细胞的表达和活化转录因子3(ATF3)的变化毫克/公斤; 3×8毫克/公斤)。此外,我们观察到了米诺环素对IENF,巨噬细胞和ATF3的影响。结果表明,中等剂量的紫杉醇可引起持续的渐进性机械性异常性疼痛,并伴有后足无毛皮肤IENF的丧失以及大鼠DRG中巨噬细胞和ATF3的上调。 ATF3的表达主要集中在NF200阳性细胞上。更重要的是,我们观察到以30 mg / kg或50 mg / kg而不是5 mg / kg的剂量对美满霉素进行预处理可以预防紫杉醇诱发的异常性疼痛。免疫组化的证据表明,30 mg / kg的米诺环素可以挽救紫杉醇治疗大鼠IENF的变性,减轻巨噬细胞的浸润和ATF3的上调。结论米诺环素可预防紫杉醇诱发的异常性疼痛,可能是由于其抑制了IENF的丧失,巨噬细胞的浸润和ATF3的上调。该发现可能为预防紫杉醇引起的神经性疼痛提供了潜在的靶标。

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