香芹酚
赫拉
细胞凋亡
达皮
细胞周期
MTT法
癌症
癌症研究
活力测定
膜联蛋白
流式细胞术
化学
药理学
癌细胞
生物
医学
细胞
免疫学
内科学
生物化学
微生物学
抗菌剂
作者
Afza Ahmad,Irfan Ahmad Ansari
标识
DOI:10.2174/1871520621999201230201258
摘要
Background: The carcinogenesis of the uterine cervix is predominantly initiated with the consistent infection of the Human Papilloma Virus (HPV). Owing to the side effects of standard chemotherapeutics in the treatment of recurrent and metastatic cervical cancer, there is a need for a better and effective treatment modality. In this lieu of concern, natural compounds have proven their worthwhile potential against the treatment of various carcinomas. Carvacrol is a phenolic monoterpenoid and several reports have suggested its different biological properties including antioxidant, anti-inflammatory and anticancer activity. Objective: The objective of our present study was to investigate the effect of carvacrol on HPV18+ HeLa cervical cancer cells. Methods: HeLa cervical cancer cells were cultured and subsequently treated with various doses of carvacrol. Cell viability was assessed via MTT assay. DAPI and Hoechst3342 staining were used to qualitatively analyzed the induced apoptosis. Reactive Oxygen Species (ROS) was estimated by DCFDA staining protocol and quantitatively estimated by flow cytometry. The cell cycle distribution and apoptosis (FITC-Annexin V assay) were analyzed by flow cytometry. Results: The results of the present study have established that carvacrol strongly suppresses the proliferation of cervical cancer cells via caspase-dependent apoptosis and abrogation of cell cycle progression. Furthermore, our preliminary study also demonstrated that carvacrol exhibits a synergistic effect with chemotherapeutic drugs (5-FU and carboplatin). These initial findings implicated that natural compounds could reduce the toxic effects of chemotherapeutic drugs. Conclusion: Therefore, this investigation affirms the anti-cancer potential of carvacrol against cervical cancer cells, which could be an appendage in the prevention and treatment of cervical cancer.
科研通智能强力驱动
Strongly Powered by AbleSci AI