Programa de Pós-graduação em Nanociências, Universidade Franciscana, Santa Maria, Brasil.
Curso de Biomedicina, Universidade Franciscana, Santa Maria, Brasil.
J Toxicol Environ Health A. 2022 Aug 18;85(16):685-698. doi: 10.1080/15287394.2022.2071787. Epub 2022 May 17.
Cancer and bacterial infections are among the leading causes of death worldwide. Plant-derived bioactive compounds constitute promising alternatives for development of new therapeutics. This study aimed at evaluating the biological activity of Withaferin A using 6 tumor cell lines: A549 (lung cancer), U87MG (glioblastoma), SH-SY5Y (neuroblastoma), B16-F10 (mouse melanoma), HeLa (uterine colon cancer) and K562 (chronic myeloid leukemia). In addition, 17 other standard bacterial strains and several multidrug resistant bacteria (MDR) clinical isolates were examined. Cell viability was assessed using the following assays: MTT, neutral red, and dsDNA PicoGreen®. Further, oxidative stress was measured by quantification of reactive oxygen species (ROS) production. The activity against bacteria was determined by the minimum inhibitory concentration (MIC), minimum bacterial concentration (CBM) and antibiofilm activity in the production of strains. Withaferin A was effective, as evidenced by its cytotoxic activity in tumor cell lines, enhanced ROS production in tumor cells and bactericidal and antibiofilm activity. Data demonstrated that Withaferin A may be therapeutically considered as an antitumor and antibacterial agent.
癌症和细菌感染是全球主要的死亡原因之一。植物来源的生物活性化合物是开发新疗法的有前途的替代品。本研究旨在使用 6 种肿瘤细胞系(A549(肺癌)、U87MG(胶质母细胞瘤)、SH-SY5Y(神经母细胞瘤)、B16-F10(鼠黑色素瘤)、HeLa(子宫结肠癌)和 K562(慢性髓性白血病))评估 Withaferin A 的生物学活性。此外,还检查了 17 种其他标准细菌菌株和几种多药耐药菌(MDR)临床分离株。使用以下测定法评估细胞活力:MTT、中性红和 dsDNA PicoGreen®。此外,通过测定活性氧 (ROS) 产生来测量氧化应激。通过最小抑菌浓度 (MIC)、最小细菌浓度 (CBM) 和菌株产生活性的抗生物膜活性来确定对细菌的活性。Withaferin A 具有细胞毒性活性,可增强肿瘤细胞中的 ROS 产生,并具有杀菌和抗生物膜活性,这证明了它的有效性。数据表明,Withaferin A 可以作为一种抗肿瘤和抗菌药物进行治疗。