Department of General Biology, Center of Biological Sciences, Londrina State University, UEL, Londrina, Brazil.
J Toxicol Environ Health A. 2023 Nov 17;86(22):859-870. doi: 10.1080/15287394.2023.2255886. Epub 2023 Sep 6.
Curcumin is an antiproliferative phytochemical extracted from and which has been studied in preclinical drug screening using cell monolayers and animal models. However, several limitations of these culture systems may be overcome by performing screening with three-dimensional (3-D) cell culture. The aim of this study was to investigate the effects of curcumin on cytotoxicity and genotoxicity as well as spheroid growth using cervical adenocarcinoma HeLa cell spheroids by performing RT-PCR mRNA expression of genes involved in cell death (, , , , , , , ), autophagy (), cell cycle regulation (, , , , , ), DNA damage repair (, ), oxidative stress (), reticulum stress (), and invasion (, ) was investigated. Curcumin was cytotoxic in a concentration-dependent manner. Curcumin-treated spheroids exhibited lower proliferative recovery and cell proliferation attenuation, as observed in the clonogenic assay. Further, no marked genotoxicity was detected. Curcumin-treated spheroids displayed reduced expression of (2.9×), (2.1×), and (2.1×) mRNA. inhibition suggested disruption of essential pathways of proliferation maintenance. Downregulated expression of mRNA and unchanged expression of mRNA suggested caspase-independent cell death, whereas downregulated expression of mRNA indicated autophagic disruption. Therefore, curcumin exhibits the potential for drug development with antiproliferative activity to be considered for use in cancers.
姜黄素是一种从 中提取的抗增殖植物化学物质,已在使用细胞单层和动物模型的临床前药物筛选中进行了研究。然而,通过使用三维(3-D)细胞培养进行筛选,可以克服这些培养系统的几个局限性。本研究的目的是通过进行涉及细胞死亡(、、、、、、、)、自噬()、细胞周期调节(、、、、、)、DNA 损伤修复(、)、氧化应激()、内质网应激()和侵袭(、)的基因的 RT-PCRmRNA 表达的研究,来调查姜黄素对细胞毒性和遗传毒性以及宫颈腺癌 HeLa 细胞球体生长的影响。姜黄素以浓度依赖性方式表现出细胞毒性。在集落形成测定中观察到,姜黄素处理的球体表现出较低的增殖恢复和细胞增殖衰减。此外,未检测到明显的遗传毒性。姜黄素处理的球体显示 (2.9×)、(2.1×)和 (2.1×)mRNA 的表达降低。抑制表明增殖维持的重要途径被破坏。mRNA 的下调表达和 mRNA 的不变表达表明细胞死亡不依赖于半胱天冬酶,而 mRNA 的下调表达表明自噬中断。因此,姜黄素表现出具有抗增殖活性的药物开发潜力,可考虑用于癌症治疗。