Department of Biophysics, Wroclaw Medical University, ul. Chalubinskiego 10, 50-368 Wroclaw, Poland.
Department of Biophysics, Wroclaw Medical University, ul. Chalubinskiego 10, 50-368 Wroclaw, Poland.
Biomed Pharmacother. 2018 Oct;106:624-636. doi: 10.1016/j.biopha.2018.06.170. Epub 2018 Jul 11.
Cancer cells often develop the resistance to pro-apoptotic signaling that makes them invulnerable to conventional treatment. Therapeutic strategies that make cancer cells enter the path of apoptosis are desirable due to the avoidance of inflammatory reaction that usually accompanies necrosis. In the present study phenothiazines (fluphenazine and four recently synthesized derivatives) were investigated in order to identify compounds with a potent anticancer activity. Since phenothiazines are known as multidrug resistance modulators the sensitive human colorectal adenocarcinoma cell line (LoVo) and its doxorubicin-resistant, ABCB1 overexpressing, subline (LoVo/Dx) have been employed as a model system. In studied cancer cells cytotoxic effect of the phenothiazine derivatives was accompanied by apoptosis and autophagy induction as well as by the increase of cellular lipid peroxidation and intracellular reactive oxygen species generation. Molecular modelling revealed that reactivity of phenothazines (manifested by their low energy gap) but not lipophilicity was positively correlated with their anticancer potency, pro-oxidant properties and apoptosis induction ability. Additionally, some of the studied compounds turned out to be more potent cytotoxic and pro-apoptotic agents in doxorubicin-resistant (LoVo/Dx) cells than in sensitive ones (LoVo). The hypothesis was assumed that studied phenothiazine derivatives induced apoptotic cell death by increasing the production of reactive oxygen species.
癌细胞通常会产生对促凋亡信号的抗性,从而使它们对常规治疗具有抵抗力。由于避免了通常伴随坏死的炎症反应,因此使癌细胞进入凋亡途径的治疗策略是理想的。在本研究中,研究了吩噻嗪(氟奋乃静和最近合成的四个衍生物),以鉴定具有强大抗癌活性的化合物。由于吩噻嗪类药物是众所周知的多药耐药调节剂,因此使用敏感的人结直肠腺癌细胞系(LoVo)及其多柔比星耐药,ABCB1 过表达的亚系(LoVo / Dx)作为模型系统。在研究的癌细胞中,吩噻嗪衍生物的细胞毒性作用伴随着细胞凋亡和自噬的诱导,以及细胞脂质过氧化和细胞内活性氧生成的增加。分子建模表明,吩噻嗪的反应性(表现为其低能隙)而不是亲脂性与它们的抗癌效力,促氧化剂特性和诱导细胞凋亡的能力呈正相关。此外,一些研究的化合物在多柔比星耐药(LoVo / Dx)细胞中比在敏感细胞(LoVo)中表现出更强的细胞毒性和促凋亡作用。假设研究的吩噻嗪衍生物通过增加活性氧的产生诱导细胞凋亡性死亡。