Avoni Ayyappa, Vemireddy Sravanthi, Sambyal Shainy, Shafi Syed, Khan Imran, Khan Aarif, Sampath Kumar Halmuthur M
Vaccine Immunology Laboratory, OSPC Division, CSIR-Indian Institute of Chemical Technology Hyderabad 500007 India
Academy of Scientific and Innovative Research (AcSIR) Ghaziabad Uttar Pradesh 201 002 India.
RSC Adv. 2023 Jan 4;13(2):1066-1077. doi: 10.1039/d2ra06395f. eCollection 2023 Jan 3.
Toll-like receptors-7 and -8 are expressed abundantly on antigen-presenting cells, and their agonists make potential adjuvant candidates for the development of new efficacious vaccines. In view of the importance of new efficacious imidazoquinoline based adjuvants, herein we have synthesized a focused library of a new class of imidazoquinolines retaining the -isobutyl substitution of an imidazole moiety as in imiquimod and introduced a 1,2,3-triazolyl moiety upon alkyl substitution at the imidazolemethyne carbon employing triazolyl click chemistry. All the novel analogues were characterized using various spectroscopic techniques and the target specificity of these molecules was determined using HEK TLR7/8 transfected cell lines. TLR7/8 activity and also the molecular docking results correlated primarily to the position of the substituent for aromatic groups and also to the chain length in alkyl substitutions. The immunomodulatory properties of these analogues were evaluated using murine DC activation and also with hPBMC activation markers, cytokines which revealed that these analogues after modification were able to target the TLR7 receptors and also had a pro-inflammatory immune response.
Toll样受体7和8在抗原呈递细胞上大量表达,其激动剂是开发新型有效疫苗的潜在佐剂候选物。鉴于新型有效的基于咪唑喹啉的佐剂的重要性,在此我们合成了一类新型咪唑喹啉的聚焦文库,该文库保留了咪喹莫特中咪唑部分的异丁基取代,并利用三唑基点击化学在咪唑亚甲基碳上进行烷基取代时引入了1,2,3-三唑基部分。使用各种光谱技术对所有新型类似物进行了表征,并使用转染了HEK TLR7/8的细胞系确定了这些分子的靶标特异性。TLR7/8活性以及分子对接结果主要与芳族基团取代基的位置以及烷基取代中的链长相关。使用小鼠DC激活以及hPBMC激活标志物、细胞因子评估了这些类似物的免疫调节特性,结果表明这些经过修饰的类似物能够靶向TLR7受体,并且具有促炎性免疫反应。