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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Transient receptor potential vanilloid 1 mediates pain in mice with severe sickle cell disease.
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Transient receptor potential vanilloid 1 mediates pain in mice with severe sickle cell disease.

机译:瞬态受体电位香草酸1介导患有严重镰状细胞疾病的小鼠的疼痛。

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摘要

Pain is the leading cause of emergency department visits, hospitalizations, and daily suffering in individuals with sickle cell disease (SCD). The pathologic mechanisms leading to the perception of pain during acute RBC sickling episodes and development of chronic pain remain poorly understood and ineffectively treated. We provide the first study that explores nociceptor sensitization mechanisms that contribute to pain behavior in mice with severe SCD. Sickle mice exhibit robust behavioral hypersensitivity to mechanical, cold, and heat stimuli. Mechanical hypersensitivity is further exacerbated when hypoxia is used to induce acute sickling. Behavioral mechanical hypersensitivity is mediated in part by enhanced excitability to mechanical stimuli at both primary afferent peripheral terminal and sensory membrane levels. In the present study, inhibition of the capsaicin receptor transient receptor potential vanilloid 1 (TRPV1) with the selective antagonist A-425619 reversed the mechanical sensitization at both primary afferent terminals and isolated somata, and markedly attenuated mechanical behavioral hypersensitivity. In contrast, inhibition of TRPA1 with HC-030031 had no effect on mechanical sensitivity. These results suggest that the TRPV1 receptor contributes to primary afferent mechanical sensitization and a substantial portion of behavioral mechanical hypersensitivity in SCD mice. Therefore, TRPV1-targeted compounds that lack thermoregulatory side effects may provide relief from pain in patients with SCD.
机译:疼痛是镰状细胞病(SCD)患者急诊就诊,住院和每日痛苦的主要原因。导致人们在急性RBC镰状发作期间感觉到疼痛并发展为慢性疼痛的病理机制仍知之甚少,治疗效果不佳。我们提供了第一个探讨伤害感受器敏化机制的研究,该机制可导致严重SCD小鼠的疼痛行为。镰状小鼠对机械,冷和热刺激表现出强烈的行为超敏性。当使用低氧诱导急性镰刀病时,机械性超敏反应会进一步加剧。行为机械性超敏反应部分地是由于在初级传入外周末梢和感觉膜水平上对机械刺激的增强的兴奋性所介导的。在本研究中,用选择性拮抗剂A-425619抑制辣椒素受体瞬时受体电位香草酸1(TRPV1)逆转了主要传入末端和分离的躯体的机械敏感性,并显着减弱了机械行为超敏性。相反,用HC-030031抑制TRPA1对机械灵敏度没有影响。这些结果表明,TRPV1受体有助于SCD小鼠的初级传入机械敏化和大部分行为机械超敏反应。因此,针对TRPV1的化合物缺乏温度调节副作用,可以减轻SCD患者的疼痛。

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