Department of Pharmacology, School of General Medicine-1, Asfendiyarov Kazakh National Medical University, Almaty, Republic of Kazakhstan.
Laboratory of Synthetic and Natural Medicinal Compounds Chemistry, A.B. Bekturov Institute of Chemical Sciences, Almaty, Republic of Kazakhstan.
Braz J Med Biol Res. 2024 Jul 29;57:e13429. doi: 10.1590/1414-431X2024e13429. eCollection 2024.
The chemical structure of piperidine has a unique ability to combine with other molecular fragments. This fact makes it possible to actively use it as an effective basis for the creation of new drug-like substances. Thus, the aim of the current investigation was to study the acute toxicity, local anesthetic potency, and antiarrhythmic activity of the two new synthesized piperidine derivatives under laboratory codes LAS-286 and LAS-294 (local anesthetic substances). The Bulbring & Wajda animal model and method of determining the nociception threshold during electrical stimulation was used to investigate the action of the substance during infiltration anesthesia. An antiarrhythmic activity was observed by the aconitine-induced rat arrhythmia model. Additionally, these compounds were studied in relation to molecular docking to delineate the structure-activity relationships. The tested piperidine derivatives had a low toxicity in the subcutaneous and intravenous administration routes. The experimental results showed a higher prolonged and pronounced local anesthetic activity for LAS-286 at a 0.5% concentration, compared to the reference preparations. The low dosage of 0.1 mg/kg of LAS-294 demonstrated a pronounced preventive antiarrhythmic effect in 90% of cases on the development of mixed arrhythmia, caused by aconitine. The results of molecular docking confirmed a higher binding affinity of the tested piperidines with the Nav1.4 and Nav1.5 macromolecules. The results of the present study are very promising, because these piperidines have shown a high biological activity, which can suggest a potential therapeutic application in the future.
哌啶的化学结构具有与其他分子片段结合的独特能力。这一事实使得它可以被积极用作创造新的类似药物物质的有效基础。因此,目前的研究旨在研究两个新合成的哌啶衍生物 LAS-286 和 LAS-294(局部麻醉物质)的急性毒性、局部麻醉效能和抗心律失常活性。采用 Bulbring 和 Wajda 动物模型和电刺激时测定痛觉阈值的方法,研究了该物质在浸润麻醉中的作用。采用乌头碱诱导的大鼠心律失常模型观察了抗心律失常活性。此外,还研究了这些化合物与分子对接的关系,以阐明结构-活性关系。测试的哌啶衍生物在皮下和静脉给药途径中具有低毒性。实验结果表明,与参比制剂相比,LAS-286 在 0.5%浓度下具有更高的延长和显著的局部麻醉活性。LAS-294 的低剂量 0.1mg/kg 在 90%的情况下对由乌头碱引起的混合心律失常的发展表现出明显的预防抗心律失常作用。分子对接的结果证实了测试的哌啶类化合物与 Nav1.4 和 Nav1.5 大分子的更高结合亲和力。本研究的结果非常有前途,因为这些哌啶类化合物表现出了很高的生物活性,这表明它们在未来可能具有潜在的治疗应用。