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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Spinal phospholipase A2 in inflammatory hyperalgesia: role of the small, secretory phospholipase A2.
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Spinal phospholipase A2 in inflammatory hyperalgesia: role of the small, secretory phospholipase A2.

机译:脊髓磷脂酶A2在炎症性痛觉过敏中:小的分泌型磷脂酶A2的作用。

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Current work emphasizes that peripheral tissue injury and inflammation results in a heightened sensitivity to subsequent noxious input (hyperalgesia) that is mediated in large part by the spinal synthesis and release of eicosanoids, in particular prostaglandins. Secreted phospholipase A(2)s (sPLA(2)s) form a class of structurally related enzymes that release arachidonic acid from cell membranes that is further processed to produce eicosanoids. We hypothesized that spinal sPLA(2)s may contribute to inflammation-induced hyperalgesia. Spinal cord tissue and cerebrospinal fluid were collected from rats for assessment of sPLA(2) protein expression and sPLA(2) activity. A basal sPLA(2) protein expression and activity was detected in spinal cord homogenate (87+/-17 pmol/min/mg), though no activity could be detected in cisternal cerebrospinal fluid, of naive rats. The sPLA(2) activity did not change in spinal cord tissue or cerebrospinal fluid assessed over 8 h after injection of carrageenan into the hind paw.However, the sPLA(2) activity observed in spinal cord homogenates was suppressed by addition of LY311727, a selective sPLA(2) inhibitor. To determine the role of this spinal sPLA(2) in hyperalgesia, we assessed the effects of lumbar intrathecal (IT) administration of LY311727 in rats with chronic IT catheters in three experimental models of hyperalgesia. IT LY311727 (3-30 microg) dose-dependently prevented intraplantar carrageenan-induced thermal hyperalgesia and formalin-induced flinching, at doses that had no effect on motor function. IT LY311727 also suppressed thermal hyperalgesia induced by IT injection of substance P (30 nmol). Using in vivo spinal microdialysis, we found that IT injection of LY311727 attenuated prostaglandin E(2) release into spinal dialysate otherwise evoked by the IT injection of substance P. Taken together, this work points to a role for constitutive sPLA(2)s in spinal nociceptive processing.
机译:当前的工作强调,外周组织损伤和炎症导致对随后的有害输入(痛觉过敏)的敏感性增强,这在很大程度上是通过类花生酸,特别是前列腺素的脊柱合成和释放而介导的。分泌的磷脂酶A(2)s(sPLA(2)s)形成了一类结构相关的酶,这些酶从细胞膜上释放花生四烯酸,并进一步加工生成类花生酸。我们假设脊髓sPLA(2)可能会导致炎症诱导的痛觉过敏。从大鼠收集脊髓组织和脑脊髓液,用于评估sPLA(2)蛋白表达和sPLA(2)活性。在幼稚大鼠的脊髓匀浆(87 +/- 17 pmol / min / mg)中检测到了基础的sPLA(2)蛋白表达和活性,尽管在脑脊髓液中未检测到活性。角叉菜胶注射至后爪后8小时内,脊髓组织或脑脊液中sPLA(2)活性未改变,但是通过添加LY311727(一种LY311727)可抑制在脊髓匀浆中观察到的sPLA(2)活性。选择性sPLA(2)抑制剂。为了确定这种脊柱sPLA(2)在痛觉过敏中的作用,我们在三种痛觉过敏实验模型中评估了腰椎鞘内(IT)LY311727在慢性IT导管大鼠中的作用。 IT LY311727(3-30微克)剂量依赖性地预防了plant内角叉菜胶引起的热痛觉过敏和福尔马林引起的退缩,其剂量对运动功能无影响。 IT LY311727还抑制了IT物质P(30 nmol)注射引起的热痛觉过敏。使用体内脊髓微透析,我们发现LY311727的IT注射减弱了前列腺素E(2)释放到脊髓透析液中,否则会通过IT注射P物质引起。合在一起,这项工作指出了sPLA(2)组成型在脊髓伤害性加工。

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