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Upregulation of cystathionine-β-synthetase expression contributes to inflammatory pain in rat temporomandibular joint

机译:胱硫脲-Iβ-合成酶表达的上调有助于大鼠颞下颌关节的炎症疼痛

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Background Hydrogen sulfide (H2S), an endogenous gaseotransmitter/modulator, is becoming appreciated that it may be involved in a wide variety of processes including inflammation and nociception. However, the role for H2S in nociceptive processing in trigeminal ganglion (TG) neuron remains unknown. The aim of this study was designed to investigate whether endogenous H2S synthesizing enzyme cystathionine-β-synthetase (CBS) plays a role in inflammatory pain in temporomandibular joint (TMJ). Methods TMJ inflammatory pain was induced by injection of complete Freund’s adjuvant (CFA) into TMJ of adult male rats. Von Frey filaments were used to examine pain behavioral responses in rats following injection of CFA or normal saline (NS). Whole cell patch clamp recordings were employed on acutely isolated TG neurons from rats 2 days after CFA injection. Western blot analysis was carried out to measure protein expression in TGs. Results Injection of CFA into TMJ produced a time dependent hyperalgesia as evidenced by reduced escape threshold in rats responding to VFF stimulation. The reduced escape threshold was partially reversed by injection of O-(Carboxymethyl) hydroxylamine hemihydrochloride (AOAA), an inhibitor for CBS, in a dose-dependent manner. CFA injection led to a marked upregulation of CBS expression when compared with age-matched controls. CFA injection enhanced neuronal excitability as evidenced by depolarization of resting membrane potentials, reduction in rheobase, and an increase in number of action potentials evoked by 2 and 3 times rheobase current stimulation and by a ramp current stimulation of TG neurons innervating the TMJ area. CFA injection also led to a reduction of IK but not IA current density of TG neurons. Application of AOAA in TMJ area reduced the production of H2S in TGs and reversed the enhanced neural hyperexcitability and increased the IK currents of TG neurons. Conclusion These data together with our previous report indicate that endogenous H2S generating enzyme CBS plays an important role in TMJ inflammation, which is likely mediated by inhibition of IK currents, thus identifying a specific molecular mechanism underlying pain and sensitization in TMJ inflammation.
机译:背景技术硫化氢(H2S),内源性疣状疱疹/调节剂旨在理解,它可以参与包括炎症和伤害的各种过程。然而,在三叉神经节(TG)神经元中的H2S在伤害性加工中的作用仍然未知。本研究的目的是探讨合成酶胱天冬胺-β-合成酶(CBS)的内源H 2 S是否在颞下颌关节(TMJ)中起作用。方法通过将完整的弗氏佐剂(CFA)注射成年雄性大鼠TMJ,诱导TMJ炎症疼痛。 Von Frey丝丝用于检查注射CFA或正常盐水(NS)后大鼠的疼痛行为应答。在CFA注射液后2天从大鼠急性分离的TG神经元使用全细胞贴片夹具。进行蛋白质印迹分析以测量TGS中的蛋白质表达。结果将CFA注射到TMJ中产生的时间依赖性痛觉过敏性痛觉过敏性痛觉型痛觉型痛觉型超速度通过降低大鼠响应VFF刺激的大鼠逃逸阈值证明。通过依赖于剂量的方式,通过注射O-(羧甲基)羟胺半盐(AOAA),抑制剂,以剂量依赖性方式将降低的逃逸阈值部分反转。与年龄匹配的对照相比,CFA注射导致CBS表达的显着上调。 CFA注射增强了神经元兴奋性,如通过静息膜电位的去极化证明,rheobase减少的增加,并且由2和3次Rheobase电流刺激引起的动作电位数量增加,并且通过接管TMJ区域的TG神经元的斜坡电流刺激。 CFA注射还导致IK的减少,但不是IA的TG神经元的电流密度。 AOAA在TMJ区域的应用降低了TGS中H2S的产生,并逆转了增强的神经过度兴奋性,增加了TG神经元的IK电流。结论这些数据与我们之前的报告一起表明,生成酶CBS在TMJ炎症中发挥着重要作用的内源性H2S可能通过IK电流的抑制介导,因此鉴定了TMJ炎症中的特定分子机制。

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