Engelhardt Institute of Molecular Biology, Russian Academy of Sciences, 119991 Moscow, Russia.
Moscow Institute of Physics and Technology, Russian Academy of Sciences, 141701 Dolgoprudny, Russia.
Molecules. 2023 Jan 21;28(3):1090. doi: 10.3390/molecules28031090.
The toxic effects of four cationic porphyrins on various human cells were studied in vitro. It was found that, under dark conditions, porphyrins are almost nontoxic, while, under the action of light, the toxic effect was observed starting from nanomolar concentrations. At a concentration of 100 nM, porphyrins caused inhibition of metabolism in the MTT test in normal and cancer cells. Furthermore, low concentrations of porphyrins inhibited colony formation. The toxic effect was nonlinear; with increasing concentrations of various porphyrins, up to about 1 μM, the effect reached a plateau. In addition to the MTT test, this was repeated in experiments examining cell permeability to trypan blue, as well as survival after 24 h. The first visible manifestation of the toxic action of porphyrins is blebbing and swelling of cells. Against the background of this process, permeability to porphyrins and trypan blue appears. Subsequently, most cells (even mitotic cells) freeze in this swollen state for a long time (24 and even 48 h), remaining attached. Cellular morphology is mostly preserved. Thus, it is clear that the cells undergo mainly necrotic death. The hypothesis proposed is that the concentration dependence of membrane damage indicates a limited number of porphyrin targets on the membrane. These targets may be any ion channels, which should be considered in photodynamic therapy.
四种阳离子卟啉在体外对各种人类细胞的毒性作用进行了研究。结果发现,在黑暗条件下,卟啉几乎没有毒性,而在光的作用下,从纳摩尔浓度开始就观察到了毒性作用。在 100 nM 的浓度下,卟啉在 MTT 试验中抑制了正常和癌细胞的代谢。此外,低浓度的卟啉抑制了集落形成。毒性作用是非线性的;随着各种卟啉浓度的增加,直至约 1 μM,作用达到平台期。除了 MTT 试验外,还在检查细胞对台盼蓝通透性以及 24 小时后存活的实验中重复了这一试验。卟啉毒性作用的第一个明显表现是细胞起泡和肿胀。在此过程的背景下,卟啉和台盼蓝的通透性出现。随后,大多数细胞(甚至有丝分裂细胞)在这种肿胀状态下长时间冻结(24 甚至 48 小时),仍然附着。细胞形态学大多得以保留。因此,很明显,细胞主要经历坏死性死亡。提出的假设是,膜损伤的浓度依赖性表明膜上卟啉靶标数量有限。这些靶标可能是任何离子通道,这在光动力疗法中应加以考虑。