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Transfer of Opiorphin Through a Blood-Brain Barrier Culture Model

机译:通过血脑屏障培养模型转移视力

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Opioid peptides are potent analgesics with therapeutic potential in the treatment of acute and chronic pain. Their efficacy is limited by peptidases (enkephalinases). Opiorphin pentapeptide (QRFSR) is the first characterized human endogenous inhibitor of enkephalinases The peptide is able to increase the binding and affinity of endogenous opiates to mu opioid receptors; thus, the mechanism of opiorphin may provide a new therapeutic approach in pain management. The analgesic effect of opiorphin was proven in several earlier published in vitro and in vivo studies. Our aim was to test the transfer of opiorphin through a blood-brain barrier model for the first time. The flux of opiorphin was tested on a blood-brain barrier culture model consisting of rat brain endothelial, glial and pericyte cells. Brain endothelial cells in this triple co-culture model form tight monolayers characterized by transendothelial electrical resistance measurement. Relative quantity of the peptide was estimated by mass spectrometry. The transfer of opiorphin through the blood-brain barrier model was estimated to be similar to 3%, whereas the permeability coefficient was 0.53 +/- 1.36 x 10(-6) cm/s (n = 4). We also observed rapid conversion of N-terminal glutamine into pyroglutamic acid during the transfer experiments. Our results indicate that opiorphin crosses cultured brain endothelial cells in the absence of serum factors in a significant amount. This is in agreement with previous in vivo data showing potentiation of enkephalin-mediated antinociception. We suggest that opiorphin may have a potential as a centrally acting novel drug to treat pain. (C) 2015 MSS. Published by Elsevier Inc.
机译:阿片类肽是有效的镇痛药,治疗急性和慢性疼痛治疗潜力。它们的疗效受肽酶(Enkephalinase)的限制。异构肽(QRFSR)是肽能够增加内源性蛋白质与μOpiOID受体的结合和亲和力的第一个表征的人类内源性抑制剂;因此,Ophiorphin的机制可以在疼痛管理中提供新的治疗方法。在体外和体内研究中发表的几个早期发表的镇痛作用被证明。我们的目的是首次通过血脑屏障模型来测试Ophiorphin的转移。在由大鼠脑内皮,胶质和周刊细胞组成的血脑屏障培养模型上测试了Ophiorphin的助焊剂。脑内皮细胞在该三相共培养模型中形成紧密单层,其特征在于经过逆转电阻测量。通过质谱法估计肽的相对量。估计通过血脑屏障模型转移血脑屏障模型的转移到3%,而渗透系数为0.53 +/- 1.36×10(-6)cm / s(n = 4)。我们还观察到在转移实验期间观察到N-末端谷氨酰胺的快速转化为焦蛋白酸。我们的研究结果表明,Opiorphin在没有血清因子的情况下患上培养的脑内皮细胞。这与先前的体内数据一致,所述体内数据显示了对脑啡肽介导的抗妇生的增强性。我们建议,Ophiorphin可能具有一种用于治疗疼痛的中央作用新药。 (c)2015女士。 elsevier公司发布

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