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Endogenous lipid-derived ligands for sensory TRP ion channels and their pain modulation.

机译:内源性脂质衍生的配体,用于感觉TRP离子通道及其疼痛调节。

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摘要

Environmental or internal noxious stimuli excite the primary sensory nerves in our body. The sensory nerves relay these signals by electrical discharges to the brain, leading to pain perception. Six transient receptor potential (TRP) ion channels are expressed in the sensory nerve terminals and play a crucial role in sensing diverse noxious stimuli. Cation influx through activated TRP ion channels depolarizes the plasma membrane, resulting in neuronal excitation and pain. Natural and synthetic compounds have been found to act on these sensory TRP channels to alter the nociception. Evidence is growing that lipidergic substances are also cable of modifying TRP ion channel activity by direct binding. Here, we focus on endogenously generated lipids that modulate the sensory TRP activities. Unsaturated fatty acids or their metabolites via lipoxygenase, cyclooxygenase or epoxygenase are able to modulate (activate, inhibit or potentiate) the function of specific TRPs. Isoprene lipids, diacylglycerol, resolvin, and lysophospholipids also show distinct activities on sensory TRP channels. Outcomes caused by the interactions between sensory TRPs and lipid ligands are also discussed. The knowledge we collected here implicates that information on lipidergic ligands may contribute to our understanding of peripheral pain mechanism and provide an opportunity to design novel therapeutic strategies.
机译:环境或内部有害刺激会刺激我们体内的主要感觉神经。感觉神经通过放电将这些信号传递到大脑,从而导致疼痛感。六个瞬态受体电位(TRP)离子通道在感觉神经末梢表达,并在感知各种有害刺激中起关键作用。阳离子通过活化的TRP离子通道流入,使质膜去极化,导致神经元兴奋和疼痛。已发现天然和合成化合物可作用于这些感觉性TRP通道以改变伤害感受。越来越多的证据表明,脂质能物质也是通过直接结合来修饰TRP离子通道活性的电缆。在这里,我们专注于内在产生的脂质,调节感觉的TRP活性。通过脂氧合酶,环氧合酶或环氧合酶的不饱和脂肪酸或其代谢物能够调节(激活,抑制或增强)特定TRP的功能。异戊二烯脂质,二酰基甘油,Resolvin和溶血磷脂在感觉性TRP通道上也显示出不同的活性。还讨论了由感觉TRP和脂质配体之间的相互作用引起的结果。我们在这里收集的知识表明,有关脂质能配体的信息可能有助于我们对周围疼痛机制的理解,并为设计新颖的治疗策略提供了机会。

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