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新型咖啡酸和肉桂酸偶联脑啡肽衍生物的合成、分子对接、电化学和荧光分析,设计为潜在的抗惊厥和镇痛剂。

Synthesis, molecular docking, electrochemical and fluorimetric analysis of new caffeic and cinnamic acid-conjugated hemorphin derivatives designed as potential anticonvulsant and antinociceptive agents.

机构信息

Department of Organic Chemistry, University of Chemical Technology and Metallurgy, 1756 Sofia, Bulgaria.

Department of Analytical Chemistry, University of Chemical Technology and Metallurgy, 1756 Sofia, Bulgaria.

出版信息

Bioorg Chem. 2024 Feb;143:107063. doi: 10.1016/j.bioorg.2023.107063. Epub 2023 Dec 25.

Abstract

Based on the pharmacophore model of opioid receptors, our team recently synthesized a series of short-chain hemorphin peptide analogs containing non-natural amino acids. They demonstrated anticonvulsant and antinociceptive activity with low neurotoxicity. In the present study, a series of novel bioconjugates of N-modified hemorphin analogs containing second pharmacophore cinnamic acids (CA) or caffeic (KA) were synthesized by a traditional solid-phase Fmoc chemistry method for peptide synthesis. Electrochemical and fluorimetric analysis, in vivo anticonvulsant and antinociceptive activity in mice were conducted on the compounds. The three CA acid- (H4-CA, H5-CA, and H7-CA) and three KA acid- (H4-KA, H5-KA, and H7-KA) conjugated hemorphin derivatives exhibited potency at the highest doses of 2 µg/5 µl, administered by intracerebroventricular (icv) mode, against seizure spread in the maximal electroshock test (MES) in mice. The KA-conjugated H5-KA derivate, at the lowest dose, was the only compound that suppressed clonic seizures in the subcutaneous pentylenetetrazol (scPTZ) test. Except for the H5-CA, all tested CA acid- and KA acid-conjugated peptide derivates had the potency to increase the latency for clonic seizures in a dose-dependent mode. The activity against the psychomotor seizures in the 6-Hz test was detected only for the H4-CA (0.5 µg) and H4-KA (0.5 µg and 1 µg), respectively. All investigated peptides showed a more pronounced antinociceptive effect in the "intraplantar formalin" test compared to the "hot plate" test. Shorter chain analogs showed a better antinociceptive profile against tonic pain. The data suggest a DOR and KOR-mediated mechanism of action. According to the docking analysis, H7-CA showed a different antinociceptive profile than other investigated peptides. The novel peptide derivates did not exhibit neurotoxicity in the rotarod test. Our findings suggest that conjugated CA and KA morphine peptides can be used to develop novel morphine-related analogs with anticonvulsant and antinociceptive activity.

摘要

基于阿片受体的药效基团模型,我们的团队最近合成了一系列含有非天然氨基酸的短链脑啡肽类似物。它们具有抗惊厥和镇痛作用,且神经毒性低。在本研究中,通过传统的固相 Fmoc 化学方法合成了一系列新型 N 修饰的脑啡肽类似物的生物缀合物,其中含有第二个药效基团肉桂酸 (CA) 或咖啡酸 (KA)。对化合物进行了电化学和荧光分析、体内抗惊厥和镇痛活性研究。在最大电休克试验 (MES) 中,三种 CA 酸 (H4-CA、H5-CA 和 H7-CA) 和三种 KA 酸 (H4-KA、H5-KA 和 H7-KA) 缀合的脑啡肽衍生物以最高剂量 2 µg/5 µl 经脑室给药,在小鼠中显示出对抗惊厥扩散的作用。在皮下戊四氮 (scPTZ) 试验中,剂量最低的 KA 缀合 H5-KA 衍生物是唯一能够抑制阵挛性发作的化合物。除了 H5-CA 之外,所有测试的 CA 酸和 KA 酸缀合肽衍生物都具有以剂量依赖方式增加阵挛性发作潜伏期的作用。只有 H4-CA(0.5 µg)和 H4-KA(0.5 µg 和 1 µg) 分别在 6-Hz 试验中检测到对精神运动性发作的活性。与“足底福尔马林”试验相比,所有研究的肽在“热板”试验中均显示出更明显的镇痛作用。短链类似物对强直性疼痛显示出更好的镇痛谱。数据表明作用机制涉及 DOR 和 KOR。根据对接分析,H7-CA 显示出与其他研究肽不同的镇痛谱。新型肽衍生物在旋转棒试验中没有表现出神经毒性。我们的研究结果表明,缀合的 CA 和 KA 吗啡肽可用于开发具有抗惊厥和镇痛作用的新型吗啡类似物。

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