Kolarević Stoimir, Milovanović Dragana, Kračun-Kolarević Margareta, Kostić Jovana, Sunjog Karolina, Martinović Rajko, Đorđević Jelena, Novaković Irena, Sladić Dušan, Vuković-Gačić Branka
a Center for Genotoxicology and Ecogenotoxicology , University of Belgrade , Faculty of Biology , Belgrade , Serbia.
b Institute for Biological Research ¨Siniša Stanković , University of Belgrade , Belgrade , Serbia.
Drug Chem Toxicol. 2019 Mar;42(2):130-139. doi: 10.1080/01480545.2017.1413108. Epub 2018 Jan 4.
In this study, mutagenic and genotoxic potential of anti-tumor compounds avarol, avarone, and its derivatives 3'-methoxyavarone, 4'-(methylamino)avarone and 3'-(methylamino)avarone was evaluated and compared to cytostatics commonly used in chemotherapy (5-fluorouracil, etoposid, and cisplatin). Mutagenic potential of selected hydroquinone and quinones was assessed in prokaryotic model by the SOS/umuC assay in Salmonella typhimurium TA1535/pSK1002. Genotoxic potential was also assessed in eukaryotic models using comet assay in human fetal lung cell line (MRC-5), human adenocarcinoma epithelial cell line (A549), and in human peripheral blood cells (HPBC). The results indicated that avarol and avarone do not exert mutagenic/genotoxic potential. Among the studied avarone derivatives, mutagenic potential was detected by SOS/umuC test for 3'-(methylamino)avarone, but only after metabolic activation. The results of comet assay indicated that 3'-methoxyavarone and 3'-(methylamino)avarone have a significant impact on the level of DNA damage in the MRC-5 cell line. Genotoxic potential was not observed in A549 cells or HPBC probably due to a different uptake rate for the compounds and lower in metabolism rate within these cells.
在本研究中,评估了抗肿瘤化合物avarol、avarone及其衍生物3'-甲氧基avarone、4'-(甲氨基)avarone和3'-(甲氨基)avarone的诱变和遗传毒性潜力,并与化疗中常用的细胞抑制剂(5-氟尿嘧啶、依托泊苷和顺铂)进行了比较。通过鼠伤寒沙门氏菌TA1535/pSK1002中的SOS/umuC试验,在原核模型中评估了所选对苯二酚和醌的诱变潜力。还使用彗星试验在人胎儿肺细胞系(MRC-5)、人腺癌上皮细胞系(A549)和人外周血细胞(HPBC)的真核模型中评估了遗传毒性潜力。结果表明,avarol和avarone不具有诱变/遗传毒性潜力。在所研究的avarone衍生物中,通过SOS/umuC试验检测到3'-(甲氨基)avarone具有诱变潜力,但仅在代谢活化后。彗星试验结果表明,3'-甲氧基avarone和3'-(甲氨基)avarone对MRC-5细胞系中的DNA损伤水平有显著影响。在A549细胞或HPBC中未观察到遗传毒性潜力,这可能是由于这些细胞对化合物的摄取率不同以及代谢率较低所致。