Chakravarty Harapriya, Ojha Durbadal, Konreddy Ananda K, Bal Chandralata, Chandra Nidhi S, Sharon Ashoke, Chattopadhyay Debprasad
1 Department of Chemistry, Birla Institute of Technology, Mesra, India.
2 ICMR Virus Unit, ID & BG Hospital, Kolkata, India.
Antivir Chem Chemother. 2015 Dec;24(5-6):127-135. doi: 10.1177/2040206616680968.
Natural product-inspired synthesis is a key incorporation in modern diversity-oriented synthesis to yield biologically novel scaffold. Inspired by β-carboline fused system, we have designed molecules with multi ring fused scaffold by modifying the tricyclic pyrido[3,4- b]indole ring with imidazo[1,2- a]isoquinoline.
A highly convergent approach with new C-N and C-C bond formation to synthesize multiring fused complex scaffold imidazo[1,2- a]isoquinolinies as fluorophores. N-nucleophile-induced ring transformation of 2 H-pyran-2-one followed by in situ cis-stilbene-type oxidative photocyclization yielded new C-C bond formation without additional oxidant. The cytotoxicity, effective concentrations, and the mode of action of the synthesized analogs were determined by 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (MTT),, plaque reduction, time of addition, and reverse transcriptase Polymerase Chain Reaction (PCR).
Novel imidazo[1,2- a]isoquinoline analogs were prepared, and the results revealed that trans isomer of cyclopropyl analog (EC 35 and 37.5 µg/ml) and trans isomer of citric acid salt of phenyl analog (EC 38.2 and 39.8 µg/ml) possess significant anti-Herpes Simplex Virus (HSV) activity with selectivity index of >10. The kinetic study demonstrated that both the analogs inhibited HSV-1F and HSV-2G at 2-4 h postinfection. Finally, western blot and reverse transcriptase PCR assays revealed that both the analogs suppressed viral immediate early transcription.
Novel imidazo[1,2- a]isoquinoline analogs were synthesized from pyranone with appropriate amines. Two compounds showed better antiviral profile on HSV-infected Vero cells, compared to the standard drug acyclovir (ACV). Overall, we discovered a promising scaffold to develop a nonnucleoside lead targeting the viral immediate early transcription for the management of HSV infections.
受天然产物启发的合成是现代多样化导向合成中产生具有生物活性新骨架的关键组成部分。受β-咔啉稠合体系的启发,我们通过用咪唑并[1,2-a]异喹啉修饰三环吡啶并[3,4-b]吲哚环,设计了具有多环稠合骨架的分子。
采用一种高度汇聚的方法,通过形成新的碳氮键和碳碳键来合成多环稠合的复杂骨架咪唑并[1,2-a]异喹啉作为荧光团。2H-吡喃-2-酮的氮亲核试剂诱导的环转化,随后进行原位顺式二苯乙烯型氧化光环化,无需额外的氧化剂即可形成新的碳碳键。通过3-(4,5-二甲基噻唑-2-基)-2,5-二苯基四氮唑溴盐(MTT)、蚀斑减少、添加时间和逆转录聚合酶链反应(PCR)测定合成类似物的细胞毒性、有效浓度和作用方式。
制备了新型咪唑并[1,2-a]异喹啉类似物,结果表明环丙基类似物的反式异构体(EC 35和37.5μg/ml)和苯基类似物柠檬酸盐的反式异构体(EC 38.2和39.8μg/ml)具有显著的抗单纯疱疹病毒(HSV)活性,选择性指数>10。动力学研究表明,这两种类似物在感染后2-4小时均能抑制HSV-1F和HSV-2G。最后,蛋白质免疫印迹和逆转录PCR分析表明,这两种类似物均能抑制病毒立即早期转录。
由吡喃酮与合适的胺合成了新型咪唑并[1,2-a]异喹啉类似物。与标准药物阿昔洛韦(ACV)相比,两种化合物对HSV感染的Vero细胞显示出更好的抗病毒谱。总体而言,我们发现了一个有前景的骨架,可用于开发一种靶向病毒立即早期转录的非核苷先导物,用于治疗HSV感染。