Jana Tchekalarova, Daniela Pechlivanova, Miroslav Rangelov, Nadezda Todorova, Tsveta Stoyanova, Borislav Assenov, Petar Todorov
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In the maximal electroshock (MES) test, the cis isomers showed superior antiseizure activity to the trans forms of CA and KA conjugates, respectively. The suppression of seizure propagation by cis-<b>H5-CA</b> and the cis-<b>H5-KA</b> was reversed by a kappa opioid receptor (KOR) antagonist. Naloxone and naltrindole were not effective. The cis-isomers of CA conjugates and cis-<b>H7-KA</b> produced significantly stronger antinociceptive effects than their trans-isomers. The cis-<b>H5-CA</b> antinociception was blocked by naloxone in the acute phase and by naloxone and KOR antagonists in the inflammatory phase of the formalin test. The antinociception of the KA conjugates was not abolished by opioid receptor blockade. None of the tested conjugates affected the thermal nociceptive threshold. The results of the docking analysis also suggest a model-specific mechanism related to the activity of the cis-isomers of CA and KA conjugates in relation to opioid receptors. Our findings pave the way for the further development of novel opioid-related antiseizure and antinociceptive therapeutics.</p>","PeriodicalId":11291,"journal":{"name":"Drug Development Research","volume":"85 5","pages":""},"PeriodicalIF":3.5000,"publicationDate":"2024-07-20","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"A novel cinnamic and caffeic acid-conjugated peptide analogs with anticonvulsant and analgesic potency: Comparative analyses of trans/cis isomers\",\"authors\":\"Jana Tchekalarova, Daniela Pechlivanova, Miroslav Rangelov, Nadezda Todorova, Tsveta Stoyanova, Borislav Assenov, Petar Todorov\",\"doi\":\"10.1002/ddr.22236\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p>The novel cinnamic acid (CA) (<b>H4-CA, H5-CA</b>, and <b>H7-CA</b>) and caffeic acid (KA) (<b>H4-KA, H5-KA</b>, and <b>H7-KA</b>) hemorphin analogs have recently been synthesized and their trans isomers have been tested for antiseizure and antinociceptive activity. In the present study, the cis forms of these compounds were tested and compared with their trans isomers in seizure and nociception tests in mice. The cis-<b>H5-CA</b> and <b>H7-CA</b> compounds showed efficacy against psychomotor seizures, whereas the trans isomers were ineffective. Both the cis and trans KA isomers were ineffective in the 6-Hz test. In the maximal electroshock (MES) test, the cis isomers showed superior antiseizure activity to the trans forms of CA and KA conjugates, respectively. The suppression of seizure propagation by cis-<b>H5-CA</b> and the cis-<b>H5-KA</b> was reversed by a kappa opioid receptor (KOR) antagonist. Naloxone and naltrindole were not effective. The cis-isomers of CA conjugates and cis-<b>H7-KA</b> produced significantly stronger antinociceptive effects than their trans-isomers. The cis-<b>H5-CA</b> antinociception was blocked by naloxone in the acute phase and by naloxone and KOR antagonists in the inflammatory phase of the formalin test. 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引用次数: 0
摘要
最近合成了新型肉桂酸(CA)(H4-CA、H5-CA 和 H7-CA)和咖啡酸(KA)(H4-KA、H5-KA 和 H7-KA)半啡类似物,并对它们的反式异构体进行了抗癫痫和抗痛觉活性测试。本研究测试了这些化合物的顺式形式,并在小鼠癫痫发作和痛觉试验中与其反式异构体进行了比较。顺式-H5-CA 和 H7-CA 化合物对精神运动性癫痫发作有疗效,而反式异构体则无效。顺式和反式 KA 异构体在 6-Hz 试验中均无效。在最大电击(MES)试验中,顺式异构体的抗癫痫活性分别优于反式 CA 和 KA 共轭物。卡巴阿片受体(KOR)拮抗剂可逆转顺式-H5-CA和顺式-H5-KA对癫痫发作传播的抑制作用。纳洛酮和纳吲哚不起作用。CA 共轭物的顺式异构体和顺式-H7-KA 产生的抗痛觉作用明显强于其反式异构体。顺式-H5-CA的抗痛觉作用在福尔马林试验的急性期被纳洛酮阻断,在炎症期被纳洛酮和KOR拮抗剂阻断。阿片受体阻断剂不会取消 KA 共轭物的抗镇痛作用。所测试的共轭物均未影响热痛觉阈值。对接分析的结果还表明,CA和KA共轭物的顺式异构体与阿片受体的活性存在一种模型特异性机制。我们的研究结果为进一步开发新型阿片类抗癫痫和抗痛觉治疗药物铺平了道路。
A novel cinnamic and caffeic acid-conjugated peptide analogs with anticonvulsant and analgesic potency: Comparative analyses of trans/cis isomers
The novel cinnamic acid (CA) (H4-CA, H5-CA, and H7-CA) and caffeic acid (KA) (H4-KA, H5-KA, and H7-KA) hemorphin analogs have recently been synthesized and their trans isomers have been tested for antiseizure and antinociceptive activity. In the present study, the cis forms of these compounds were tested and compared with their trans isomers in seizure and nociception tests in mice. The cis-H5-CA and H7-CA compounds showed efficacy against psychomotor seizures, whereas the trans isomers were ineffective. Both the cis and trans KA isomers were ineffective in the 6-Hz test. In the maximal electroshock (MES) test, the cis isomers showed superior antiseizure activity to the trans forms of CA and KA conjugates, respectively. The suppression of seizure propagation by cis-H5-CA and the cis-H5-KA was reversed by a kappa opioid receptor (KOR) antagonist. Naloxone and naltrindole were not effective. The cis-isomers of CA conjugates and cis-H7-KA produced significantly stronger antinociceptive effects than their trans-isomers. The cis-H5-CA antinociception was blocked by naloxone in the acute phase and by naloxone and KOR antagonists in the inflammatory phase of the formalin test. The antinociception of the KA conjugates was not abolished by opioid receptor blockade. None of the tested conjugates affected the thermal nociceptive threshold. The results of the docking analysis also suggest a model-specific mechanism related to the activity of the cis-isomers of CA and KA conjugates in relation to opioid receptors. Our findings pave the way for the further development of novel opioid-related antiseizure and antinociceptive therapeutics.
期刊介绍:
Drug Development Research focuses on research topics related to the discovery and development of new therapeutic entities. The journal publishes original research articles on medicinal chemistry, pharmacology, biotechnology and biopharmaceuticals, toxicology, and drug delivery, formulation, and pharmacokinetics. The journal welcomes manuscripts on new compounds and technologies in all areas focused on human therapeutics, as well as global management, health care policy, and regulatory issues involving the drug discovery and development process. In addition to full-length articles, Drug Development Research publishes Brief Reports on important and timely new research findings, as well as in-depth review articles. The journal also features periodic special thematic issues devoted to specific compound classes, new technologies, and broad aspects of drug discovery and development.