Bezerra Daniel Pereira, Moura Dinara Jaqueline, Rosa Renato Moreira, de Vasconcellos Marne Carvalho, e Silva Ana Catarina Romano, de Moraes Manoel Odorico, Silveira Edilberto Rocha, Lima Mary Anne Sousa, Henriques João Antonio Pegas, Costa-Lotufo Letícia Veras, Saffi Jenifer
Departamento de Fisiologia e Farmacologia, Faculdade de Medicina, Universidade Federal do Ceará, Fortaleza, Ceará, Brazil.
Mutat Res. 2008 Apr 30;652(2):164-74. doi: 10.1016/j.mrgentox.2008.02.001. Epub 2008 Feb 12.
The genus Piper belongs to the Piperaceae family, and includes species of commercial and medicinal importance. Chemical studies on Piper species resulted in the isolation of several biologically active molecules, including alkaloid amides, such as piplartine. This molecule, isolated from Piper tuberculatum, has significant cytotoxic activity against tumor cell lines, and presents antifungal, anti-platelet aggregation, anxiolytic, and antidepressant effects. In order to understand the biological properties of piplartine, this study investigated the genotoxicity and the induction of apoptosis by piplartine in V79 cells and its mutagenic and recombinogenic potential in Saccharomyces cerevisiae. Piplartine induced dose-dependent cytotoxicity in S. cerevisiae cultures in either stationary -- or exponential growth phase. In addition, piplartine was not mutagenic when cells were treated during exponential-growth phase and kept in buffer solution, but it increased the frequencies of point, frameshift, and forward mutations when cells were treated in medium during growth. Piplartine treatment induced DNA strand breaks in V79 cells, as detected by neutral and alkaline comet assay. In cell cycle analysis, piplartine induced G2/M cell cycle arrest, probably as a consequence of the DNA damage induced and repair. Moreover, piplartine treatment induced apoptosis in a dose-dependent manner, as observed by a decrease in mitochondrial membrane potential and an increase in internucleosomal DNA fragmentation. These data suggest that the DNA damage caused by piplartine induces G2/M cell cycle arrest, followed by apoptosis. Moreover, we suggest that cells surviving piplartine-induced DNA damage can accumulate mutations, since this alkaloid was mutagenic and recombinogenic in S. cerevisiae assays.
胡椒属属于胡椒科,包含具有商业和药用价值的物种。对胡椒属物种的化学研究导致分离出了几种生物活性分子,包括生物碱酰胺,如荜茇明碱。从糙果胡椒中分离出的这种分子对肿瘤细胞系具有显著的细胞毒性活性,并具有抗真菌、抗血小板聚集、抗焦虑和抗抑郁作用。为了了解荜茇明碱的生物学特性,本研究调查了荜茇明碱在V79细胞中的遗传毒性和凋亡诱导作用,以及其在酿酒酵母中的诱变和重组潜力。荜茇明碱在静止期或指数生长期的酿酒酵母培养物中诱导剂量依赖性细胞毒性。此外,当细胞在指数生长期处理并保存在缓冲溶液中时,荜茇明碱没有诱变性,但当细胞在生长期间在培养基中处理时,它增加了点突变、移码突变和正向突变的频率。通过中性和碱性彗星试验检测,荜茇明碱处理诱导V79细胞中的DNA链断裂。在细胞周期分析中,荜茇明碱诱导G2/M期细胞周期停滞,这可能是DNA损伤诱导和修复的结果。此外,如通过线粒体膜电位降低和核小体间DNA片段化增加所观察到的,荜茇明碱处理以剂量依赖性方式诱导凋亡。这些数据表明,荜茇明碱引起的DNA损伤诱导G2/M期细胞周期停滞,随后发生凋亡。此外,我们认为,在荜茇明碱诱导的DNA损伤中存活的细胞可能会积累突变,因为这种生物碱在酿酒酵母试验中具有诱变性和重组性。