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[1, 3]二氧杂环戊烯并[2,3-b]吡啶类化合物的设计、合成及抗癫痫活性评价。

Design, synthesis, and pharmacological evaluation of [1, 3] dioxolo-chromeno[2,3-b]pyridines as anti-seizure agents.

机构信息

Department of Chemistry, School of Science, Gitam Deemed to be University, Hyderabad, TS, India.

Centre for Semio Chemicals, CSIR-Indian Institute of Chemical Technology, Hyderabad, India.

出版信息

Mol Divers. 2023 Aug;27(4):1809-1827. doi: 10.1007/s11030-022-10538-x. Epub 2022 Oct 10.

Abstract

An efficient one-pot three-component reaction for the synthesis of [1,3]dioxolo[4',5':6,7]chromeno[2,3-b]pyridines 4(a-i) has been developed. Synthesis was achieved by reacting sesamol (1), aromatic aldehydes 2(a-i), and 2-aminopropene-1,1,3-tricarbonitrile (3) in the presence of triethylamine at 100 °C under neat reaction condition. Simple operational procedure, broad substrate scope, column chromatography free separations, and high yield of products make it an efficient and largely acceptable synthetic strategy. Synthesized compounds 4(a-i) were further screened for preliminary anticonvulsant activity using MES and scPTZ tests. These analogs were also checked for neurotoxicity and hepatotoxicity. Selected active compounds have been then screened quantitatively to determine ED and TD values. Analog 4h was found effective in both preclinical seizure models with significant therapeutic/toxicity profile (4h: ED = 34.7 mg/kg, MES test; ED = 37.9 mg/kg, scPTZ test; TD = 308.7 mg/kg). Molecular dynamic simulation for 100 ns of compound 4h-complexed with GABA receptor revealed good thermodynamic behavior and fairly stable interactions (4h, Docking score =  - 10.94). In conclusion, effective synthetic strategy, significant anticonvulsant activity with good toxicity profile and detailed molecular modeling studies led us to anticipate the emergence of these analogs as valid leads for the development of future effective neurotherapeutic agents.

摘要

一种高效的一锅法三组分反应已被开发用于合成[1,3]二氧杂环[4',5':6,7]色烯并[2,3-b]吡啶 4(a-i)。该反应是在 100°C 下,在三乙胺的存在下,由芝麻酚(1)、芳香醛 2(a-i)和 2-氨基丙烯腈(3)反应得到的。该反应具有操作简单、底物适用范围广、无需柱层析分离、产物收率高等优点,是一种高效且广泛适用的合成策略。合成的化合物 4(a-i)进一步进行了初步抗惊厥活性筛选,包括 MES 和 scPTZ 试验。这些类似物还检查了神经毒性和肝毒性。然后对选定的活性化合物进行定量筛选,以确定 ED 和 TD 值。类似物 4h 在两种临床前癫痫模型中均有效,具有显著的治疗/毒性特征(4h:ED=34.7mg/kg,MES 试验;ED=37.9mg/kg,scPTZ 试验;TD=308.7mg/kg)。对 4h-与 GABA 受体复合物进行了 100ns 的分子动力学模拟,结果表明其热力学行为良好,且相互作用相当稳定(4h,对接评分=-10.94)。总之,有效的合成策略、显著的抗惊厥活性和良好的毒性特征以及详细的分子模拟研究使我们预测这些类似物可能成为开发未来有效神经治疗药物的有效先导化合物。

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