wind-up

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  • 文章类型: Journal Article
    反复施加有害刺激会导致疼痛感知逐渐增加;这种时间总和在临床疼痛障碍中得到增强并可以预测。它的电生理关联是“结束,“其中背角脊髓神经元增加了对重复的伤害感受器刺激的反应。为了了解时间总和的遗传基础,我们对健康人类志愿者进行了GWAS检查,发现与编码3型钠钙交换体(NCX3)的SLC8A3显著相关.NCX3在小鼠背角神经元中表达,缺乏NCX3的小鼠表现正常,急性疼痛,但对福尔马林试验第二阶段和慢性收缩损伤过敏。缺乏NCX3的背角神经元在重复刺激后显示细胞内钙增加,钙清除率减慢,增加了发条。此外,病毒介导的NCX3增强的脊髓表达降低了中枢致敏。我们的研究强调Ca2+外排是时间总和和持续性疼痛的潜在途径,这可能适合于治疗靶向。
    Repeated application of noxious stimuli leads to a progressively increased pain perception; this temporal summation is enhanced in and predictive of clinical pain disorders. Its electrophysiological correlate is \"wind-up,\" in which dorsal horn spinal neurons increase their response to repeated nociceptor stimulation. To understand the genetic basis of temporal summation, we undertook a GWAS of wind-up in healthy human volunteers and found significant association with SLC8A3 encoding sodium-calcium exchanger type 3 (NCX3). NCX3 was expressed in mouse dorsal horn neurons, and mice lacking NCX3 showed normal, acute pain but hypersensitivity to the second phase of the formalin test and chronic constriction injury. Dorsal horn neurons lacking NCX3 showed increased intracellular calcium following repetitive stimulation, slowed calcium clearance, and increased wind-up. Moreover, virally mediated enhanced spinal expression of NCX3 reduced central sensitization. Our study highlights Ca2+ efflux as a pathway underlying temporal summation and persistent pain, which may be amenable to therapeutic targeting.
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