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金属肽酶抑制增强缓激肽诱导的痛觉过敏。

Metallopeptidase inhibition potentiates bradykinin-induced hyperalgesia.

机构信息

Department of Oral and Maxillofacial Surgery, University of Texas Health Science Center of San Antonio, TX, USA Department of Pharmacology, University of Texas Health Science Center of San Antonio, TX, USA Center for Biomedical Neuroscience, University of Texas Health Science Center of San Antonio, TX, USA Department of Biochemistry and Molecular Biology and Midwest Proteome Center, Rosalind Franklin University of Medicine and Science/Chicago Medical School, North Chicago, IL, USA.

出版信息

Pain. 2011 Jul;152(7):1548-1554. doi: 10.1016/j.pain.2011.02.044. Epub 2011 Apr 1.

Abstract

The neuropeptide bradykinin (BK) sensitizes nociceptor activation following its release in response to inflammatory injury. Thereafter, the bioactivity of bradykinin is controlled by the enzymatic activities of circulating peptidases. One such enzyme, the metalloendopeptidase EC3.4.24.15 (EP24.15), is co-expressed with bradykinin receptors in primary afferent neurons. In this study, using approaches encompassing pharmacology, biochemistry, cell biology, and behavioral animal models, we identified a crucial role for EP24.15 and the closely related EP24.16 in modulating bradykinin-mediated hyperalgesia. Pharmacological analyses indicated that EP24.15 and EP24.16 inhibition significantly enhances bradykinin type-2 receptor activation by bradykinin in primary trigeminal ganglia cultures. In addition, bradykinin-induced sensitization of TRPV1 activation was increased in the presence of the EP24.15/16 inhibitor JA-2. Furthermore, behavioral analyses illustrated a significant dose-response relationship between JA-2 and bradykinin-mediated thermal hyperalgesia. These results indicate an important physiological role for the metallopeptidases EP24.15 and EP24.16 in regulating bradykinin-mediated sensitization of primary afferent nociceptors.

摘要

神经肽缓激肽(BK)在炎症损伤反应中释放后,会使伤害感受器敏化。此后,缓激肽的生物活性由循环肽酶的酶活性控制。其中一种酶,金属内肽酶 EC3.4.24.15(EP24.15),与初级传入神经元中的缓激肽受体共同表达。在这项研究中,我们采用药理学、生物化学、细胞生物学和行为动物模型等方法,确定了 EP24.15 和密切相关的 EP24.16 在调节缓激肽介导的痛觉过敏中的关键作用。药理分析表明,EP24.15 和 EP24.16 抑制可显著增强原代三叉神经节培养物中缓激肽对缓激肽 2 型受体的激活作用。此外,在 EP24.15/16 抑制剂 JA-2 的存在下,缓激肽诱导的 TRPV1 激活敏化作用增加。此外,行为分析表明 JA-2 和缓激肽介导的热痛觉过敏之间存在显著的剂量反应关系。这些结果表明金属肽酶 EP24.15 和 EP24.16 在调节初级传入伤害感受器中缓激肽介导的敏化作用方面具有重要的生理作用。

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