In vitro and in silico exploration of IL-2 inhibition by small drug-like molecules

被引:0
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作者
Saima Kalsoom
Umer Rashid
Awais Shaukat
Omer Mohamed Abdalla
Khalida Hussain
Waqasuddin Khan
Samina Nazir
Mohammad Ahmad Mesaik
Farzana Latif Zaheer-ul-Haq
机构
[1] Quaid-i-Azam University,Department of Chemistry
[2] Hazara University,Department of Chemistry
[3] International Center for Chemical and Biological Sciences,Dr. Panjwani Center for Molecular Medicine and Drug Research
[4] University of Karachi,Nanoscience and Catalysis Division
[5] National Center for Physics,undefined
[6] Quaid-i-Azam University,undefined
来源
关键词
IL-2 inhibitors; Chalcones and heterocycles; Molecular docking; MD simulation;
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学科分类号
摘要
Interleukin-2 (IL-2) is an immunoregulatory cytokine produced by T lymphocytes in response to antigen. It is a potent growth and differentiation factor for several cell-types and is structurally related to the four-helix bundle family of cytokines. Here, we report IL-2 inhibitory potential and computational studies on different series of chalcones, benzothiazepines, semicarbazones, and dihydropyrimidines. These compounds were synthesized in wet lab and were then tested for their potency as IL-2 inhibitors through in vitro T cell proliferation, IL-2 cytokine production as well as their effect on oxidative burst. Compounds that showed significant suppressive activity were further evaluated for their cytotoxicity on normal two cell lines. Most of the chalcones were found to have a powerful inhibitory effect on T-lymphocytes proliferation and cytokine production. Among the aza heterocycles benzothiazepines, benzoxazepines, and benzodiazepinones were found to be the strongest IL-2 inhibitors. Molecular docking and MD simulation studies were carried out to correlate experimental and theoretical results whereby a good correlation was observed which indicated that computational studies could provide an alternate tool for the identification and designing of more potent IL-2 inhibitors.
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页码:5739 / 5751
页数:12
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