Investigation of cerebrovascular activity of new GABA-derived short peptides

N. Adamyan, Q.M. Shamilyan, A. G. Zhamharyan, H. Topchyan, M. Balasanyan
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Abstract

Based on the important role of endogenous substances in the cerebral blood flow regulation, the cerebrovascular activity of new synthesized short peptides of γ-aminobutyric acid (GABA) and pyroglutamate has been investigated, considering the development of new drugs for the correction of cerebral circulation. Taking into account the proven ability to increase cerebral blood flow of γ-aminobutyric acid and its endogenous metabolites, such as gamma butyrolactone, gamma hydroxybutyric acid, pyrrolidone, pyroglutamic acid, as well as synthetic analogues, such as picamilon, the influence of pyroglutamyl GABA, pyroglutamyl GABA ethyl ester, pyroglutamyl diGABA was observed on local brain blood flow in a state of impaired cerebral circulation. The model of cerebral chronic hypoperfusion generated by right common carotid artery occlusion was used on rats weighing 180-240 g, under anesthesia with chloral hydrate (400 mg/kg). The investigated peptides were administered at a dose of 20 mg/kg, intraperitoneally. Cerebral blood flow changes were detected by laser Doppler flowmetry. The conducted experiment revealed differences between the cerebrovascular activities of the studied short peptides. Thus, it was demonstrated that pyroglutamyl GABA exhibits а high ability to increase local cerebral blood flow, stimulating cerebral circulation by 65,2 %, compared with the value of hypoperfusion by right common carotid artery occlusion, after 40 minutes of injection. However, no essential changes in the studied indicator were recorded for pyroglutamyl GABA ethyl ester and pyroglutamyl diGABA. The obtained data indicate that the prolongation of the short peptide chain leads to a decrease in cerebrovascular activity and opens up new perspectives for the development of pyroglutamyl GABA dipeptide as a promising agent for the correction of cerebral circulation
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新型氨基丁酸衍生短肽的脑血管活性研究
基于内源性物质在脑血流调节中的重要作用,研究了新合成的γ-氨基丁酸(GABA)和焦谷氨酸短肽的脑血管活性,并考虑开发新的脑循环矫正药物。考虑到γ-氨基丁酸及其内源性代谢物(如γ丁内酯、γ羟基丁酸、吡罗烷酮、焦谷氨酸)以及合成类似物(如picamilon)已被证实具有增加脑血流量的能力,我们观察了焦谷氨酰GABA、焦谷氨酰GABA乙酯、焦谷氨酰双aba对脑循环受损状态下局部脑血流量的影响。以体重180 ~ 240 g的大鼠为实验对象,在水合氯醛(400 mg/kg)麻醉下建立右颈总动脉闭塞致脑慢性灌注不足模型。所研究的肽以20 mg/kg的剂量腹腔注射。采用激光多普勒血流仪检测脑血流变化。所进行的实验揭示了所研究的短肽在脑血管活动方面的差异。因此,实验证明,在注射40分钟后,焦谷氨酰基氨基丁酸(pyroglutamyl GABA)表现出增加局部脑血流量的高能力,与右颈总动脉闭塞导致的脑血流不足相比,刺激脑循环的能力提高了65.2%。然而,所研究的指标在焦谷氨酰GABA乙酯和焦谷氨酰diGABA中没有记录到本质的变化。结果表明,短肽链的延长导致了脑血管活性的降低,为焦谷氨酰基GABA二肽作为一种有前景的脑循环矫正剂的开发开辟了新的前景
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