Postgraduate Program in Food, Nutrition and Health, Federal University of São Paulo, Santos 11015-020, São Paulo, Brazil.
Bioscience Institute, Paulista State University, São Vicente 11330-900, São Paulo, Brazil.
Molecules. 2017 Aug 31;22(9):1441. doi: 10.3390/molecules22091441.
Rhamnetin (Rhm), 3--methylquercetin (3MQ), and Rhamnazin (Rhz) are methylated derivatives of quercetin commonly found in fruits and vegetables that possess antioxidant and anti-inflammatory properties. Phospholipase A2 (PLA2) displays several important roles during acute inflammation; therefore, this study aimed at investigating new compounds able to inhibit this enzyme, besides evaluating creatine kinase (CK) levels and citotoxicity. Methylated quercetins were compared with quercetin (Q) and were incubated with secretory PLA2 (sPLA2) from to determine their inhibitory activity. Cytotoxic studies were performed by using the J774 cell lineage incubated with quercertins. In vivo tests were performed with Swiss female mice to evaluate decreasing paw edema potential and compounds' CK levels. Structural modifications on sPLA2 were made with circular dichroism (CD). Despite Q and Rhz showing greater enzymatic inhibitory potential, high CK was observed. Rhm exhibited sPLA2 inhibitory potential, no toxicity and, remarkably, it decreased CK levels. The presence of 3OH on the C-ring of Rhm may contribute to both its anti-inflammatory and enzymatic inhibition of sPLA2, and the methylation of ring A may provide the increase in cell viability and low CK level induced by sPLA2. These results showed that Rhm can be a candidate as a natural compound for the development of new anti-inflammatory drugs.
瑞香素(Rhm)、3-甲基槲皮素(3MQ)和瑞文碱(Rhz)是槲皮素的甲基化衍生物,常见于水果和蔬菜中,具有抗氧化和抗炎特性。磷脂酶 A2(PLA2)在急性炎症中具有多种重要作用;因此,本研究旨在寻找能够抑制这种酶的新化合物,同时评估肌酸激酶(CK)水平和细胞毒性。与槲皮素(Q)相比,对甲基化的槲皮素进行了比较,并与分泌型 PLA2(sPLA2)孵育,以确定其抑制活性。使用 J774 细胞系孵育槲皮素进行细胞毒性研究。通过给瑞士雌性小鼠进行体内试验来评估降低爪肿胀的潜力和化合物的 CK 水平。用圆二色性(CD)对 sPLA2 进行结构修饰。尽管 Q 和 Rhz 显示出更大的酶抑制潜力,但观察到高 CK。Rhm 表现出 sPLA2 抑制潜力、无毒性,并且显著降低了 CK 水平。C 环上 3OH 的存在可能有助于其抗炎和抑制 sPLA2 的酶活性,并且 A 环的甲基化可能提供了 sPLA2 诱导的细胞活力增加和 CK 水平降低。这些结果表明,Rhm 可以作为开发新型抗炎药物的天然化合物候选物。