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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >THE TrKA RECEPTOR MEDIATES EXPERIMENTAL THERMAL HYPERALGESIA PRODUCED BY NERVE GROWTH FACTOR: MODULATION BY THE p75 NEUROTROPHIN RECEPTOR
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THE TrKA RECEPTOR MEDIATES EXPERIMENTAL THERMAL HYPERALGESIA PRODUCED BY NERVE GROWTH FACTOR: MODULATION BY THE p75 NEUROTROPHIN RECEPTOR

机译:TRKA受体介导通过神经生长因子产生的实验热痛觉:P75神经营养蛋白受体的调节

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摘要

The p75 neurotrophin receptor (p75(NTR)) and its activation of the sphingomyelin signaling cascade are essential for mechanical hypersensitivity resulting from locally injected nerve growth factor (NGF). Here the roles of the same effectors, and of the tropomyosin receptor kinase A (TrkA) receptor, are evaluated for thermal hyperalgesia from NGF. Sensitivity of rat hind paw plantar skin to thermal stimulation after local sub-cutaneous injection of NGF (500 ng) was measured by the latency for paw withdrawal (PWL) from a radiant heat source. PWL was reduced from baseline values at 0.5-22 h by similar to 40% from that in naive or vehicle-injected rats, and recovered to pre-injection levels by 48 h. Local pre-injection with a p75NTR blocking antibody did not affect the acute thermal hyperalgesia (0.5-3.5 h) but hastened its recovery so that it had reversed to baseline by 22 h. In addition, GW4869 (2 mM), an inhibitor of the neutral sphingomyelinase (nSMase) that is an enzyme in the p75(NTR) pathway, also failed to prevent thermal hyperalgesia. However, C2-ceramide, an analog of the ceramide produced by sphingomyelinase, did cause thermal hyperalgesia. Injection of an anti-TrkA antibody known to promote dimerization and activation of that receptor, independent of NGF, also caused thermal hyperalgesia, and prevented the further reduction of PWL from subsequently injected NGF. A non-specific inhibitor of tropomyosin receptor kinases, K252a, prevented thermal hyperalgesia from NGF, but not that from the anti-TrkA antibody. These findings suggest that the TrkA receptor has a predominant role in thermal hypersensitivity induced by NGF, while p75(NTR) and its pathway intermediates serve a modulatory role. (C) 2016 IBRO. Published by Elsevier Ltd. All rights reserved.
机译:的p75神经营养蛋白受体(P75(NTR))和它的鞘磷脂信号传导级联的激活是从局部注射神经生长因子(NGF)产生的机械超敏性是必不可少的。这里,来自NGF的热痛觉,评价相同效应器和对流罗素受体激酶A(Trka)受体的作用。通过从辐射热源的爪子退出(PWL)潜伏期测量局部亚皮肤注射后大鼠后爪跖骨对热刺激的敏感性。 PWL从基线值在ħ0.5-22通过类似于在幼稚或媒介物注射的大鼠减少为40%从,并回收由48小时进行预喷射的水平。局部预注射与P75NTR阻断抗体不影响急性热痛觉(0.5-3.5小时),但速度升高了其恢复,使其逆转到基线22小时。另外,GW4869(2mM),是P75(NTR)途径中的中性鞘氨基酶(NSMase)的中性鞘氨基酶(NSMase)的抑制剂,也未能防止热痛觉过敏。然而,C2-神经酰胺是由鞘磷脂酶产生的神经酰胺的类似物,确实导致热痛觉过敏。注射已知的抗TRKA抗体,该抗TRKA抗体促进该受体的二聚化和活化,与NGF无关,也导致热痛觉过敏,并且防止了从随后注射NGF的进一步减少PWL。一种非特异性抑制性质肌瘤受体激酶K252a,预防来自NGF的热痛觉,但不是来自抗Trka抗体的痛觉患者。这些发现表明,Trka受体在NGF诱导的热超敏反应中具有主要作用,而P75(NTR)及其途径中间体用于调节作用。 (c)2016年IBRO。 elsevier有限公司出版。保留所有权利。

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