Dandia Anshu, Khan Shahnawaz, Soni Pragya, Indora Aayushi, Mahawar Dinesh Kumar, Pandya Prateek, Chauhan Chetan Singh
Centre of Advanced Studies, Department of Chemistry, University of Rajasthan, Jaipur 302004, India.
Centre of Advanced Studies, Department of Chemistry, University of Rajasthan, Jaipur 302004, India.
Bioorg Med Chem Lett. 2017 Jul 1;27(13):2873-2880. doi: 10.1016/j.bmcl.2017.04.083. Epub 2017 Apr 27.
A simple, environmentally benign and highly proficient microwave assisted one-pot approach for the synthesis of antimicrobial spiropyrrolidine/thiapyrrolizidine oxindole derivatives is reported assembling two pharmacophoric moieties (1,3-indanedione and pyrrolidine/thiapyrrolizidine) in a single molecular framework via three-component 1,3-dipolar cycloaddition reaction of substituted isatin, sarcosine/1,3-thiazoles-4-carboxylic acid and Knoevenagel adduct (2-Cyano-3-phenyl-acrylic acid ethyl ester or 2-Benzylidene-malononitrile) in 2,2,2-trifluoroethanol as a reusable green solvent. Good functional group tolerance and broad scope of usable substrates are other prominent features of the present methodology with high degree of chemo-, regio- and stereoselectivity. The stereochemistry of synthesized compounds was confirmed by single crystal X-ray analysis. All the synthetic compounds were examined for their antimicrobial potential. The synthesized compounds having pyrrolothiazole moiety showed excellent activity against K. pneumoniae as compared to others and even more inhibitory activity than the mentioned drugs, i.e. compounds 6a (MIC=0.09μg/mL), 6b (MIC=0.045μg/mL), 6c (MIC=0.005μg/mL), 6d (MIC=0.19μg/mL). Additionally, compound 6c has shown better binding affinity against New Delhi Metallo-beta-Lactamase-1 (NDM-1) protein in computational docking studies.
报道了一种简单、环境友好且高效的微波辅助一锅法,用于合成抗菌螺吡咯烷/硫代吡咯烷吲哚酮衍生物。该方法通过取代异吲哚酮、肌氨酸/1,3-噻唑-4-羧酸与克脑文盖尔加合物(2-氰基-3-苯基丙烯酸乙酯或2-苄叉丙二腈)在2,2,2-三氟乙醇(一种可重复使用的绿色溶剂)中进行三组分1,3-偶极环加成反应,将两个药效基团(1,3-茚二酮和吡咯烷/硫代吡咯烷)组装在一个单一分子框架中。本方法的其他突出特点是具有良好的官能团耐受性、广泛的可用底物范围以及高度的化学、区域和立体选择性。通过单晶X射线分析确定了合成化合物的立体化学。对所有合成化合物的抗菌潜力进行了检测。与其他化合物相比,具有吡咯并噻唑部分的合成化合物对肺炎克雷伯菌表现出优异的活性,甚至比所述药物具有更强的抑制活性,即化合物6a(MIC = 0.09μg/mL)、6b(MIC = 0.045μg/mL)、6c(MIC = 0.005μg/mL)、6d(MIC = 0.19μg/mL)。此外,在计算对接研究中,化合物6c对新德里金属β-内酰胺酶-1(NDM-1)蛋白表现出更好的结合亲和力。