Pharmacology Department, National Research Centre, Dokki, Cairo, Egypt.
Arch Pharm (Weinheim). 2010 May;343(5):261-7. doi: 10.1002/ardp.200900244.
This study aimed at evaluating the reactivity of L-Tryptophan (TRP) 1 towards various chemical reagents to produce new bi- and tri-heterocyclic systems providing basic pharmacological activities. Indol-3-yl hydroxyoxazol-2-yl acetonitrile derivatives 5 and 6, indol-3-yl-hydroxyoxazol-2-yl-1,2,4-triazine derivatives 8 and 9, indol-3-yl-hydroxyoxazol-2-yl-aminopyrazole derivatives 11a, b, and indol-3-yl-hydroxyoxazol-2-yl-aminoisoxazole derivative 12 were synthesized via straightforward and efficient methods. The structures were characterized by spectral data (IR, (1)H-NMR, (13)C-NMR, and MS) and the purity was ascertained by microanalysis. Also, this work was extended to study the potential role of the novel synthesized TRP derivatives 5, 6, 9, 11a, and 12 as antidepressant and sedative agents in comparison with TRP. All compounds showed significant antidepressant activity in the forced-swimming test at two doses (50 or 100 mg/kg). Also, all tested compounds (at 50 or 100 mg/kg) produced a significant decrease in locomotor activity of mice during a 30 min observation period. The most potent antidepressant and sedative effect was produced by the tri-heterocyclic compounds 9 and 12, followed by 11a and TRP.
本研究旨在评估 L-色氨酸(TRP)1 对各种化学试剂的反应性,以生成提供基本药理活性的新型双和三杂环体系。通过直接有效的方法合成了吲哚-3-基羟唑-2-基乙腈衍生物 5 和 6、吲哚-3-基羟唑-2-基-1,2,4-三嗪衍生物 8 和 9、吲哚-3-基羟唑-2-基-氨基吡唑衍生物 11a、b 和吲哚-3-基羟唑-2-基-氨基异恶唑衍生物 12。结构通过光谱数据(IR、(1)H-NMR、(13)C-NMR 和 MS)进行了表征,通过微量分析确定了纯度。此外,这项工作还扩展到研究新型合成的 TRP 衍生物 5、6、9、11a 和 12 作为抗抑郁药和镇静剂的潜在作用,与 TRP 进行了比较。所有化合物在强迫游泳试验中以两种剂量(50 或 100mg/kg)均显示出显著的抗抑郁活性。此外,所有测试的化合物(50 或 100mg/kg)在 30 分钟观察期内均显著降低了小鼠的运动活性。三杂环化合物 9 和 12 产生了最强的抗抑郁和镇静作用,其次是 11a 和 TRP。