Teixidó Meritxell, Prokai-Tatrai Katalin, Wang Xiaoli, Nguyen Vien, Prokai Laszlo
Department of Molecular Biology and Immunology, University of North Texas Health Science Center, Fort Worth, TX 76107, USA.
Brain Res Bull. 2007 Jun 15;73(1-3):103-7. doi: 10.1016/j.brainresbull.2007.02.012. Epub 2007 Mar 15.
A conformationally constrained peptidomimetic derived from the endocrine and neuroactive tripeptide thyrotropin-releasing hormone (pGlu-His-Pro-NH(2)) was synthesized by convenient solid-phase organic chemistry and evaluated as a potential central nervous system agent. While this ethylene-bridged peptide analogue has been reported to lack the hormonal effect of the native peptide, we have shown in animal models that it possesses central nervous system activity characteristic of thyrotropin-releasing hormone. Compared to control, the peptidomimetic showed significant analeptic and antidepressant-like potencies. Moreover, an enhanced selectivity in antidepressant-like effect was measured when compared to that of the native peptide. Immobilized artificial membrane chromatography and in vitro metabolic stability studies also revealed that this constrained peptidomimetic has higher affinity to the blood-brain barrier than the native peptide and is metabolically stable. Consequently, this structure may be used as a template to design centrally selective and metabolically stable thyrotropin-releasing hormone analogues as potential neuropharmaceutical agents.
通过简便的固相有机化学方法合成了一种构象受限的肽模拟物,其源自内分泌和神经活性三肽促甲状腺激素释放激素(pGlu-His-Pro-NH₂),并作为一种潜在的中枢神经系统药物进行了评估。虽然据报道这种乙烯桥连的肽类似物缺乏天然肽的激素作用,但我们在动物模型中表明它具有促甲状腺激素释放激素的中枢神经系统活性特征。与对照组相比,该肽模拟物表现出显著的兴奋和抗抑郁样效力。此外,与天然肽相比,其抗抑郁样作用的选择性增强。固定化人工膜色谱和体外代谢稳定性研究还表明,这种受限肽模拟物对血脑屏障的亲和力高于天然肽,并且代谢稳定。因此,该结构可作为模板,用于设计具有中枢选择性和代谢稳定性的促甲状腺激素释放激素类似物,作为潜在的神经药物。