Faculty of Chemistry, University of Science (Vietnam National University, Hanoi), 19 Le Thanh Tong, Hoan Kiem, Ha Noi, Viet Nam.
Institute of New Technology, Academy of Military Science and Technology, Ministry of Defence, 17 Hoang Sam, Cau Giay, Ha Noi, Viet Nam.
Chem Biodivers. 2022 Dec;19(12):e202200680. doi: 10.1002/cbdv.202200680. Epub 2022 Dec 5.
In this study, the click chemistry between N-propargyl derivatives of substituted 4H-pyrano[2,3-d]pyrimidines and tetra-O-acetyl-α-d-glucopyranosyl azide carried out under catalytic conditions using catalyst CuI@Montmorillonite and additive N,N-diisopropylethylamine (DIPEA). The yields of obtained hybrid compounds having 4H-pyrano[2,3-d]pyrimidine connected to 1H-1,2,3-triazole rings were about 85-94 %. All these synthesized hybrid compounds were examined for in vitro α-amylase (with IC values in the range of 103.63±1.13 μM to 295.45±1.11 μM) and α-glucosidase (with IC values in the range of 45.63±1.14 μM to 184.52±1.15) inhibitory activity. Amongst this series, ethyl ester 8m showed the best inhibitory activity against α-amylase with IC of 103.63±1.13 μM, while ethyl ester 8t exhibited the highest activity against α-glucosidase with IC of 45.63±1.14 μM. The kinetics of the inhibition of compound 8t showed the competitive α-glucosidase inhibitor property of this compound. Furthermore, the most potent compounds had any cytotoxicity against human normal cells. Induced fit docking and molecular dynamics simulation calculations indicated that the inhibition potential compounds 8m and 8t had the active interactions with the residues in receptors of corresponding tested enzymes. The calculated binding free energy from MM-GBSA approach showed that the major energy components contributed to the active binding of these studied inhibitors, including Coulomb, lipophilic and van der Waals energy. Further, 300 ns MD simulation showed that studied ligand-protein complexes were stable and indicated the structural observations into mode of binding in these complexes.
在这项研究中,在催化剂 CuI@蒙脱土和添加剂 N,N-二异丙基乙胺(DIPEA)的作用下,通过点击化学将取代的 4H-吡喃并[2,3-d]嘧啶的 N-丙炔基衍生物与四-O-乙酰基-α-d-吡喃葡萄糖基叠氮化物进行反应。连接 1H-1,2,3-三唑环的 4H-吡喃并[2,3-d]嘧啶的所得杂合化合物的产率约为 85-94%。所有这些合成的杂合化合物都进行了体外α-淀粉酶(IC 值范围为 103.63±1.13 μM 至 295.45±1.11 μM)和α-葡萄糖苷酶(IC 值范围为 45.63±1.14 μM 至 184.52±1.15 μM)抑制活性测试。在这一系列中,乙酯 8m 对α-淀粉酶的抑制活性最好,IC 值为 103.63±1.13 μM,而乙酯 8t 对α-葡萄糖苷酶的活性最高,IC 值为 45.63±1.14 μM。化合物 8t 的抑制动力学表明该化合物具有竞争性的α-葡萄糖苷酶抑制剂性质。此外,最有效的化合物对人正常细胞没有任何细胞毒性。诱导契合对接和分子动力学模拟计算表明,抑制潜力化合物 8m 和 8t 与相应测试酶的受体残基具有活性相互作用。从 MM-GBSA 方法计算得到的结合自由能表明,这些研究抑制剂的活性结合主要由库仑、亲脂性和范德华能等能量组成。此外,300ns MD 模拟表明,研究的配体-蛋白复合物是稳定的,并表明了这些复合物中结合模式的结构观察。