Department of Pathology, Faculty of Pharmaceutical Sciences in Sosnowiec, Medical University of Silesia in Katowice, Ostrogórska 30, 41-200 Sosnowiec, Poland.
Silesia LabMed, Centre for Research and Implementation, Medical University of Silesia in Katowice, 18 Medyków Str., 40-752 Katowice, Poland.
Cells. 2023 Sep 15;12(18):2288. doi: 10.3390/cells12182288.
Head and neck cancer (HNC) therapy is limited; therefore, new solutions are increasingly being sought among flavonoids, which exhibit numerous biological properties, including potential anticancer activity. However, because they are mostly insoluble in water, are unstable and have low bioavailability, they are subjected to chemical modification to obtain new derivatives with better properties. This study aimed to synthesize and analyze new propargyloxy derivatives of galangin, kaempferol and fisetin, and to evaluate their anticancer activity against selected HNC cell lines. The obtained derivatives were assessed by spectroscopic analysis; next, their anticancer activity was evaluated using a flow cytometer and real-time cell analysis. The results showed that only the fisetin derivative was suitable for further analysis, due to the lack of crystal formation of the compound. The fisetin derivative statistically significantly increases the number of cells in the G2/M phase ( < 0.05) and increases cyclin B1 levels. A statistically significant increase in the number of apoptotic cells after being exposed to the tested compound was also observed ( < 0.05). The data indicate that the obtained fisetin derivative exhibits anticancer activity by affecting the cell cycle and increasing apoptosis in selected HNC lines, which suggests its potential use as a new medicinal agent in the future.
头颈部癌症 (HNC) 的治疗方法有限;因此,人们越来越多地在黄酮类化合物中寻找新的解决方案,黄酮类化合物具有许多生物学特性,包括潜在的抗癌活性。然而,由于它们大多不溶于水,不稳定且生物利用度低,因此它们会受到化学修饰,以获得具有更好特性的新衍生物。本研究旨在合成和分析姜黄素、山奈酚和非瑟酮的新炔丙氧基衍生物,并评估它们对选定的头颈部癌症细胞系的抗癌活性。通过光谱分析评估获得的衍生物;接下来,使用流式细胞仪和实时细胞分析评估它们的抗癌活性。结果表明,由于化合物没有形成晶体,只有非瑟酮衍生物适合进一步分析。非瑟酮衍生物使 G2/M 期的细胞数量明显增加(<0.05),并增加 cyclin B1 水平。还观察到暴露于测试化合物后凋亡细胞数量明显增加(<0.05)。数据表明,所获得的非瑟酮衍生物通过影响细胞周期和增加所选 HNC 系中的细胞凋亡来发挥抗癌活性,这表明它有希望在未来用作新的药物。