Todorov Petar, Georgieva Stela, Tchekalarova Jana, Peneva Petia, Mateeva Polina, Assenov Borislav, Dzhambazova Elena, Pechlivanova Daniela
Department of Organic Chemistry, University of Chemical Technology and Metallurgy, Sofia, Bulgaria.
Department of Analytical Chemistry, University of Chemical Technology and Metallurgy, Sofia, Bulgaria.
Arch Pharm (Weinheim). 2023 Oct;356(10):e2300267. doi: 10.1002/ardp.202300267. Epub 2023 Aug 2.
Two series of new VV-hemorphin-5 analogs with structures Val-Val-Tyr-Xxx-Trp-Thr-Gln-NH and Adam-Val-Val-Tyr-Xxx-Trp-Thr-Gln-NH , where Xxx is Ac5c (1-aminocyclopentane-1-carboxylic acid), Ac6c (1-aminocyclohexane-1-carboxylic acid), Ac7c (1-aminocycloheptane-1-carboxylic acid), and Adam is the low-molecular-weight lipophilic adamantyl building block, were synthesized, characterized electrochemically and evaluated for antioxidant, anti-hyperalgesia, and anticonvulsant activity. The design of the compounds followed the strategy to improve the propensity for aqueous solubility and/or to increase their affinity for the target receptor or enzyme. The partition coefficient value shows that the peptide scaffold goes from hydrophilic to lipophilic with the increasing size of the cycloalkane ring and even more with the introduction of the adamantane. The peptides C5-V and C7-V were the only analogs that provoked an immediate antinociceptive effect changing the mechanical pain threshold. The six new peptide analogs produced a significant and long-lasting carrageenan model of inflammatory pain in rats. While the adamantane hemorphin analog Ad7-V was the only compound with the potency to suppress psychomotor seizures in the 6-Hz test, the C6-V and Ad6-V exhibited protective activity against the seizure spread in the maximal electroshock seizure test in mice. The active analogs did not show neurotoxicity or sedative effects. Our results revealed a structure-related specific activity of a newly designed hemorphin analog that could be used as a template for future modification and preparation of compounds with potential analgesic and anticonvulsant activity.
合成了两个系列的新型VV-hemorphin-5类似物,其结构分别为Val-Val-Tyr-Xxx-Trp-Thr-Gln-NH和Adam-Val-Val-Tyr-Xxx-Trp-Thr-Gln-NH,其中Xxx为Ac5c(1-氨基环戊烷-1-羧酸)、Ac6c(1-氨基环己烷-1-羧酸)、Ac7c(1-氨基环庚烷-1-羧酸),Adam为低分子量亲脂性金刚烷基结构单元。对这些类似物进行了电化学表征,并评估了其抗氧化、抗痛觉过敏和抗惊厥活性。化合物的设计遵循提高水溶性倾向和/或增加其对靶受体或酶亲和力的策略。分配系数值表明,随着环烷烃环尺寸的增加,肽支架从亲水性变为亲脂性,引入金刚烷后亲脂性更强。肽C5-V和C7-V是仅有的能立即改变机械痛阈产生抗伤害感受作用的类似物。六种新型肽类似物在大鼠角叉菜胶性炎症疼痛模型中产生了显著且持久的作用。虽然金刚烷hemorphin类似物Ad7-V是唯一在6-Hz试验中具有抑制精神运动性癫痫发作效力的化合物,但C6-V和Ad6-V在小鼠最大电休克癫痫发作试验中表现出对癫痫扩散的保护活性。活性类似物未显示神经毒性或镇静作用。我们的结果揭示了新设计的hemorphin类似物与结构相关的特定活性,可作为未来修饰和制备具有潜在镇痛和抗惊厥活性化合物的模板。