Hammache Meriem, Benchekroun Sara, Alamri Abdullah, Jalouli Maroua, Yousry A Mohamed Marwa, Boufahja Fehmi, Chahine Mohamed, Chandad Fatiha, Semlali Abdelhabib
Faculté de Médecine Dentaire, Groupe de Recherche en Ecologie Buccale, Université Laval, Québec, QC, Canada.
Department of Biochemistry, College of Science, King Saud University, Riyadh, Saudi Arabia.
PLoS One. 2024 Dec 17;19(12):e0315085. doi: 10.1371/journal.pone.0315085. eCollection 2024.
To explore an alternative strategy to chemotherapy to combat oral cancer, natural products and their derivates constitute one promising approach. In the last previous study, we have demonstrated the potential anti-tumor properties of anethole; an aromatic compound abundantly present in nature that serves as a major active ingredient found in plants like anise and fennel. In the current study, we aimed to investigate how this molecule inhibits oral cancer cell proliferation and induces apoptosis. This will be carried out by a transcriptomic study of its effects on the expression profile of cell cycle and apoptosis regulation genes in gingival cancer cells. cell cycle. Ca9-22 cells were treated with 10 μM of anethole (IC50) and cell proliferation was evaluated by MTT assay. The percentage of cells in different stages of the cell cycle was measured by flow cytometry. Cytotoxicity was evaluated by LDH assay and apoptosis was investigated by Pi/Annexin V assay following 24-hour treatment. Furthermore, we employed PCR array analysis to investigate alterations in the expression levels of oncogenes and tumor suppressor genes associated with cell cycle regulation and apoptosis. Finally, Gene-gene interactions were examined using the Gene MANIA database. Our findings demonstrate that anethole significantly attenuated the proliferation of Ca9-22 cells, leading to disturbances in cell cycle progression and eliciting cellular toxicity and apoptosis. By a double normalizing with two housekeeping genes (Actin and GAPDH), we show that, treatment with 10 μM of anethole alters (more than two-fold) the expression of 13 genes involved in the control of the cell cycle (8 were up regulated and 5 were down regulated) and 7 genes involved in the regulation of apoptosis (4 were up regulated and 3 downregulated by anethole). Finally, each group of genes modulated by anethole forms a network of connections between them or with other genes. Our study suggests that anethole holds promise as a potential alternative treatment for oral cancer by its ability to modify numerous oncogenes and tumor suppressor genes implicated in the cell cycle regulation and induction of apoptosis in oral cancer cells. These findings underscore the significance of further research into the potential therapeutic application of anethole as an alternative drug for managing oral cancer.
为探索一种替代化疗的策略来对抗口腔癌,天然产物及其衍生物构成了一种有前景的方法。在之前的一项研究中,我们已经证明了茴香脑的潜在抗肿瘤特性;茴香脑是一种在自然界中大量存在的芳香化合物,是茴芹和茴香等植物中的主要活性成分。在本研究中,我们旨在研究这种分子如何抑制口腔癌细胞增殖并诱导凋亡。这将通过对其对牙龈癌细胞中细胞周期和凋亡调控基因表达谱的影响进行转录组学研究来实现。细胞周期。用10μM茴香脑(IC50)处理Ca9-22细胞,通过MTT法评估细胞增殖。通过流式细胞术测量细胞周期不同阶段的细胞百分比。通过LDH法评估细胞毒性,并在24小时处理后通过碘化丙啶/膜联蛋白V法研究凋亡。此外,我们采用PCR阵列分析来研究与细胞周期调控和凋亡相关的癌基因和肿瘤抑制基因表达水平的变化。最后,使用基因MANIA数据库检查基因-基因相互作用。我们的研究结果表明,茴香脑显著减弱了Ca9-22细胞的增殖,导致细胞周期进程紊乱,并引发细胞毒性和凋亡。通过与两个管家基因(肌动蛋白和甘油醛-3-磷酸脱氢酶)进行双重归一化,我们表明,用10μM茴香脑处理会改变(超过两倍)13个参与细胞周期控制的基因(8个上调,5个下调)和7个参与凋亡调控的基因(4个上调,3个被茴香脑下调)的表达。最后,由茴香脑调节的每组基因在它们之间或与其他基因形成一个连接网络。我们的研究表明,茴香脑有望成为一种潜在的口腔癌替代治疗方法,因为它能够改变众多与口腔癌细胞的细胞周期调控和凋亡诱导相关的癌基因和肿瘤抑制基因。这些发现强调了进一步研究茴香脑作为管理口腔癌的替代药物的潜在治疗应用的重要性。