食用无花果(Ficus carica)粗叶提取物在单细胞凝胶电泳(SCGE)/彗星分析中防止己烯雌酚(DES)诱导的DNA链断裂:文献综述和中试研究

Alrena V. Lightbourn, Ronald D. Thomas
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引用次数: 6

摘要

无花果树是地球上最古老的植物之一。无花果的成分多酚和纤维在预防癌症方面的化学预防作用尚未完全阐明。因此,我们假设无花果叶提取物可以抑制(或减弱)des诱导的MCF10A人乳腺上皮细胞DNA单链断裂。为了验证这一假设,我们分别用DES(1、10、100 μM)、粗无花果叶提取物(5、10、15 μL)或DES (100 μM)/无花果叶提取物(5、10、15 μL)同时处理MCF10A细胞。使用SCGE/COMET分析细胞的DNA链断裂,平均橄榄尾力矩作为DNA损伤的标记。与DMSO和非处理对照相比,DES在所有处理水平均诱导DNA链断裂。DES浓度为1、10和100 μM时,平均橄榄尾矩分别为1.2082(177.6%)、1.2702(186.7%)和1.1275(165.7%),高于DMSO对照值(0.6803),差异有统计学意义(p<0.05)。暴露在无花果叶提取物中不会产生DNA损伤。相反,观察到des诱导的DNA链断裂的理想剂量依赖性减少。DES和无花果叶提取物复合处理MCF10A细胞可减弱DES诱导的DNA链断裂。综上所述,这些结果提示了癌症化学预防的潜在机制。需要进一步的研究来确定相关的有效成分,确认其作用机制,并进一步阐明无花果叶提取物对早期乳腺癌化学预防的治疗潜力。
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Crude Edible Fig (Ficus carica) Leaf Extract Prevents Diethylstilbestrol (DES)-Induced DNA Strand Breaks in Single-Cell Gel Electrophoresis (SCGE)/Comet Assay: Literature Review and Pilot Study
Fig (Ficus carica) trees are among the oldest plants on earth. The chemopreventive properties of constituent polyphenols and fiber that implicate figs in having a functional role in averting cancer have not been fully elucidated. We therefore hypothesized that fig leaf extract would inhibit (or attenuate) DES-induced DNA single-strand breakage in MCF10A human breast epithelial cells. To test this hypothesis, MCF10A cells were treated with DES (1, 10, 100 μM), crude fig leaf extract (5, 10, 15 μL), or concomitant doses of DES (100 μM)/fig leaf extract (5, 10, 15 μL). The cells were analyzed for DNA strand breakage using the SCGE/COMET assay with mean olive tail moment as a marker of DNA damage. DES induced DNA strand breaks at all treatment levels compared to DMSO and non-treatment controls. DES at concentrations of 1, 10, and 100 μM produced mean olive tail moments of 1.2082 (177.6%), 1.2702 (186.7%), and 1.1275 (165.7%), respectively, which were statistically significantly (p<0.05) higher than the DMSO control value (0.6803). Exposure to fig leaf extract produced no DNA damage. Rather, a desirable dose-dependent reduction in DES-induced DNA strand breaks was observed. Composite treatment of MCF10A cells with DES and fig leaf extract attenuated DES-induced DNA strand breaks. Taken together, these results suggest a potential mechanism for cancer chemoprevention. Additional studies are necessary to identify relevant active ingredients, confirm the mechanism of action, and further elucidate the therapeutic potential of fig leaf extract for early-stage breast cancer chemoprevention.
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