Efeoglu Cagla, Taskin Sena, Selcuk Ozge, Celik Begum, Tumkaya Ece, Ece Abdulilah, Sari Hayati, Seferoglu Zeynel, Ayaz Furkan, Nural Yahya
Department of Analytical Chemistry, Faculty of Pharmacy, Mersin University, Mersin TR-33169, Türkiye.
Department of Analytical Chemistry, Faculty of Pharmacy, Biruni University, İstanbul 34010, Türkiye.
Bioorg Med Chem. 2023 Nov 15;95:117510. doi: 10.1016/j.bmc.2023.117510. Epub 2023 Oct 31.
Chronic Inflammation is associated with various types of diseases that involves pro-inflammatory cytokines like IL-6 and TNF-α. High costs and serious side effects of available anti-inflammatory/immunomodulatory drugs led us to design new compounds with promising anti-inflammatory activities. Many drugs and biologically important compounds involve naphthoquinone and thiazole moieties in their core structures. Thereby, here we report the synthesis, characterization and anti-inflammatory activities of new naphthoquinone thiazole hybrids by reaction of naphthoquinone acyl thioureas with various α-bromoketone derivatives. The position of NO group in one of the phenyl rings of naphthoquinone thiazole hybrids was changed while different substituents were introduced at the para position of the second phenyl ring. All compounds were tested for potential immunomodulatory effect. No inflammatory cytokines were observed in the absence of LPS stimulant. On the other hand, they had promising anti-inflammatory immunomodulatory activities by being able to decrease the production of the pro-inflammatory cytokines (TNF-α and IL-6) in the LPS-stimulated cells. In an effort to find the possible mechanism of action, several enzymes involved in signalling pathways that play critical roles in inflammatory responses were screened in silico. Subsequent to inverse molecular docking approach, PI3K was predicted be the potential target. The docked complexes of the most potent compounds 5g and 5i were subjected to molecular dynamics simulation to assess the binding stability of the igands with the putative target. Acid dissociation constants (pK) of the products were also determined potentiometrically.
慢性炎症与多种疾病相关,这些疾病涉及白细胞介素-6(IL-6)和肿瘤坏死因子-α(TNF-α)等促炎细胞因子。现有抗炎/免疫调节药物的高成本和严重副作用促使我们设计具有良好抗炎活性的新化合物。许多药物和具有生物学重要性的化合物在其核心结构中含有萘醌和噻唑部分。因此,我们在此报告通过萘醌酰基硫脲与各种α-溴代酮衍生物反应合成新型萘醌噻唑杂化物、对其进行表征以及研究其抗炎活性。在萘醌噻唑杂化物的一个苯环上改变硝基的位置,同时在第二个苯环的对位引入不同的取代基。对所有化合物进行潜在免疫调节作用测试。在没有脂多糖(LPS)刺激物的情况下未观察到炎性细胞因子。另一方面,它们能够降低LPS刺激细胞中促炎细胞因子(TNF-α和IL-6)的产生,具有良好的抗炎免疫调节活性。为了找到可能的作用机制,通过计算机模拟筛选了在炎症反应中起关键作用的信号通路中涉及的几种酶。在反向分子对接方法之后,预测磷脂酰肌醇-3-激酶(PI3K)是潜在靶点。对最有效的化合物5g和5i的对接复合物进行分子动力学模拟,以评估配体与推定靶点的结合稳定性。还通过电位滴定法测定了产物的酸解离常数(pK)。