Chemistry Department, Faculty of Science, Ain Shams University, Abbassia, 11566 Cairo, Egypt.
Pharmaceutical Chemistry Department, Faculty of Pharmacy, Nahda University (NUB), Beni-Suef, Egypt.
Bioorg Chem. 2021 Jul;112:104923. doi: 10.1016/j.bioorg.2021.104923. Epub 2021 Apr 17.
A green and efficient method was developed for the synthesis of 1,3,4-thiadiazole based compounds under microwave (MW) activation. The nucleophile N-(5-amino-1,3,4-thiadiazol-2-yl)thiophene-2-carboxamide (3) was synthesized and reacted with different carbon electrophilic reagents to afford thiadiazolo-pyrimidine or imidazolo-thiadiazoline derivatives (4-6 and 8), respectively. Furthermore, a one-pot reaction of 3 with p-chlorobenzaldehyde and different carbon electrophile/ or nucleophiles under microwave irradiation yields the cyclic thiadiazolo-pyrimidine derivatives 10-15. Additionally, nucleophilic substitution of aromatic amines and/or potassium salts of some heterocyclic compounds with chloroacetamido-thiadiazole 6 yields derivatives 16-20. All the new derivatives were synthesized by both conventional and MW irradiation methods. All the new 1,3,4-thiadiazole derivatives were evaluated against four cancer cell lines, HepG-2, MCF-7, HCT-116, and PC-3. The anti-proliferative activity of most of the synthesized compounds exhibited excellent broad-spectrum cytotoxic activity against the cancer cell lines with IC values ranging from 3.97 to 9.62 μM. Moreover, the enzymatic assessment of five derivatives (2,4b, 6, 8, 9a) against VEGFR-2 tyrosine kinase showed significant inhibitory activities with IC of 11.5, 8.2, 10.3, 10.5 and 9.4 nM respectively. Further studies revealed the ability of compound 9a to have a strong DNA-binding affinity of 36.06 μM via DNA/methyl green assay. Moreover, molecular docking study was carried out to reveal the binding interactions of compounds in the binding site of VEGFR-2 enzyme explaining the significant inhibitory activity of these derivatives. Finally, ADME/Tox studies was performed to predict the pharmacokinetics of the synthesized compounds.
开发了一种在微波(MW)激活下合成基于 1,3,4-噻二唑的化合物的绿色高效方法。合成亲核试剂 N-(5-氨基-1,3,4-噻二唑-2-基)噻吩-2-甲酰胺(3),并与不同的碳亲电试剂反应,分别得到噻二唑并嘧啶或咪唑并噻二唑啉衍生物(4-6 和 8)。此外,在微波辐射下,3 与对氯苯甲醛和不同的碳亲电试剂/或亲核试剂一锅反应生成环状噻二唑并嘧啶衍生物 10-15。此外,芳香胺和/或某些杂环化合物的钾盐与氯乙酰胺基噻二唑 6 的亲核取代反应生成衍生物 16-20。所有新的衍生物都是通过常规和 MW 辐射方法合成的。所有新的 1,3,4-噻二唑衍生物都针对 HepG-2、MCF-7、HCT-116 和 PC-3 四种癌细胞系进行了评估。大多数合成化合物对癌细胞系表现出优异的广谱细胞毒性活性,IC 值范围为 3.97 至 9.62 μM。此外,对五种衍生物(2、4b、6、8、9a)对 VEGFR-2 酪氨酸激酶的酶评估显示出显著的抑制活性,IC 分别为 11.5、8.2、10.3、10.5 和 9.4 nM。进一步的研究表明,化合物 9a 具有通过 DNA/甲基绿测定法具有强的 36.06 μM 的 DNA 结合亲和力。此外,进行了分子对接研究,以揭示化合物在 VEGFR-2 酶的结合位点中的结合相互作用,解释了这些衍生物的显著抑制活性。最后,进行了 ADME/Tox 研究以预测合成化合物的药代动力学。