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TRH 及其类似物对各种兴奋性毒性、坏死性和凋亡性物质诱导的原代皮质神经元细胞损伤的影响。

Effects of TRH and its analogues on primary cortical neuronal cell damage induced by various excitotoxic, necrotic and apoptotic agents.

机构信息

Department of Experimental Neuroendocrinology, Institute of Pharmacology, Polish Academy of Sciences, Smetna 12 Street, PL 31-343 Krakow, Poland.

出版信息

Neuropeptides. 2009 Oct;43(5):371-85. doi: 10.1016/j.npep.2009.07.002. Epub 2009 Aug 8.

Abstract

The tripeptide thyrotropin-releasing hormone (TRH, pGlu-His-Pro-NH2) has been shown to possess neuroprotective activity in in vitro and in vivo models. Since its potential utility is limited by relatively rapid metabolism, metabolically stabilized analogues have been constructed. In the present study we investigated the influence of TRH and its three stable analogues: Montirelin (MON, CG-3703), RGH-2202 (L-6-keto-piperidine-2carbonyl-l-leucyl-l-prolinamide) and Z-TRH (N-carbobenzyloxy-pGlutamyl-Histydyl-Proline) in various models of mouse cortical neuronal cell injury. Twenty four hour pre-treatment with TRH and its analogues in low micromolar concentrations attenuated the neuronal cell death evoked by excitatory amino acids (EAAs: glutamate, NMDA, kainate, quisqualate) and hydrogen peroxide. All the peptides showed neuroprotective action on staurosporine (St)-evoked apoptotic neuronal cell death, but this effect was caspase-3 independent. Interestingly, in mixed neuronal-glial cell preparations only MON decreased St- and glutamate-evoked neurotoxicity. None of the peptides inhibited the doxorubicin- and lactacystin-induced neuronal cortical cell death, agents acting via activation of death receptor (FAS) or inhibition of proteasome function, respectively. Furthermore, we found that neither inhibitors of PI3-K (wortmannin, LY 294002) nor MAPK/ERK1/2 (PD 098059, U 0126) were able to inhibit neuroprotective properties of TRH and MON in St model of apoptosis. The protection mediated by TRH and MON it that model was also not connected with influence of peptides on the pro-apoptotic GSK-3beta and JNK protein kinase expression and activity. Further studies showed that calpains, calcium-activated proteases were induced by Glu, but not by St in cortical neurons. Moreover, the Glu-evoked increase in spectrin alpha II cleavage product induced by calpains was blocked by TRH. The obtained data showed that the potency of TRH and its analogues in inhibiting EAAs- and H(2)O(2)-induced neuronal cell death from the highest to lowest activity was: MON>TRH>Z-TRH>RHG. Interestingly, all peptides were active against St-induced apoptosis, however, on concentration basis MON was far more potent than the other peptides. None of the peptides inhibited Dox- and LC-evoked apoptotic cell death. Additionally, the data exclude potential role of pro-survival (PI3-K/Akt and MAPK/ERK1/2) and pro-apoptotic (GSK-3beta and JNK) pathways in neuroprotective effects of TRH and its analogues on St-induced neuronal apoptosis. Moreover, the results point to involvement of the inhibition of calpains in the TRH neuroprotective effect in Glu model of neuronal cell death.

摘要

三肽促甲状腺素释放激素(TRH,pGlu-His-Pro-NH2)已被证明在体外和体内模型中具有神经保护活性。由于其潜在的用途受到相对快速代谢的限制,因此已经构建了代谢稳定的类似物。在本研究中,我们研究了 TRH 及其三种稳定类似物:Montirelin(MON,CG-3703)、RGH-2202(L-6-酮-哌啶-2-羰基-L-亮氨酰-L-脯氨酸酰胺)和 Z-TRH(N-碳苄氧羰基-pGlutamyl-Histydyl-Proline)在各种小鼠皮质神经元细胞损伤模型中的影响。在低微摩尔浓度下,TRH 和其类似物 24 小时预处理可减轻兴奋性氨基酸(EAAs:谷氨酸、NMDA、海人藻酸、quisqualate)和过氧化氢引起的神经元细胞死亡。所有肽均对 staurosporine(St)诱导的凋亡性神经元细胞死亡具有神经保护作用,但这种作用不依赖于半胱天冬酶-3(caspase-3)。有趣的是,在混合神经元-神经胶质细胞制剂中,只有 MON 降低了 St 和谷氨酸诱导的神经毒性。这些肽均不能抑制阿霉素和乳胞菌素诱导的皮质神经元细胞死亡,这两种药物分别通过激活死亡受体(FAS)或抑制蛋白酶体功能而起作用。此外,我们发现,PI3-K(wortmannin、LY 294002)和 MAPK/ERK1/2(PD 098059、U 0126)抑制剂均不能抑制 TRH 和 MON 在 St 诱导的细胞凋亡模型中的神经保护作用。在该模型中,TRH 和 MON 介导的保护与肽对促凋亡 GSK-3β和 JNK 蛋白激酶表达和活性的影响无关。进一步的研究表明,钙蛋白酶,即钙激活的蛋白酶,由 Glu 诱导,但不由 St 诱导在皮质神经元中。此外,TRH 阻断了 Glu 诱导的 spectrin alpha II 裂解产物的增加。获得的数据表明,TRH 及其类似物在抑制 EAAs 和 H2O2 诱导的神经元细胞死亡方面的活性从高到低依次为:MON>TRH>Z-TRH>RHG。有趣的是,所有肽均对 St 诱导的细胞凋亡具有活性,但就浓度而言,MON 比其他肽更有效。这些肽均不能抑制 Dox 和 LC 诱导的凋亡性细胞死亡。此外,数据排除了 PI3-K/Akt 和 MAPK/ERK1/2 (生存相关)和 GSK-3β和 JNK (促凋亡)途径在 TRH 和其类似物对 St 诱导的神经元细胞凋亡的神经保护作用中的潜在作用。此外,结果表明,钙蛋白酶的抑制参与了 TRH 在 Glu 诱导的神经元细胞死亡模型中的神经保护作用。

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