Kuzelová K, Grebenová D, Pluskalová M, Marinov I, Hrkal Z
Department of Cellular Biochemistry, Institute of Haematology and Blood Transfusion, U Nemocnice 1, 128 20 Prague 2, Czech Republic.
J Photochem Photobiol B. 2004 Jan 23;73(1-2):67-78. doi: 10.1016/j.jphotobiol.2003.07.007.
5-Aminolaevulinic acid-based photodynamic therapy (ALA-PDT) is used to eliminate cancerous cells through photoactivation of endogenously formed protoporphyrin IX (PPIX) following the administration of PPIX precursor, 5-aminolaevulinic acid (ALA). We report on the kinetics of PPIX accumulation and the mechanism of cytotoxic effects of ALA-PDT studied in the chronic myelogenous leukaemia derived cell line K562. The PPIX distribution and, consequently, cytotoxic effects were found to be heterogenous. A subpopulation of K562 cells accumulating PPIX to a lesser extent exhibits only transient cell cycle arrest. A fraction of cells, probably those with higher PPIX accumulation, are irreversibly damaged by ALA-PDT. We detected several signs of an early apoptosis: lowering of Bcl-xL expression, decrease of the mitochondrial and plasma membrane potential, the cytochrome c release into the cytoplasm, and the unmasking of the mitochondrial antigen 7A6. However, late apoptotic events were lacking: neither caspase-3 activation nor DNA fragmentation occurred. Instead, rapidly progressing cell necrosis resulting from plasma membrane damage was observed. We suggest that the high level of the antiapoptotic heat-shock proteins HSP70 and HSP27 found by us in the K562 cells is responsible for the inhibition of the apoptotic process upstream of caspases activation.
基于5-氨基酮戊酸的光动力疗法(ALA-PDT)用于在给予5-氨基酮戊酸(ALA)(PPIX前体)后,通过内源性形成的原卟啉IX(PPIX)的光激活来消除癌细胞。我们报告了在慢性粒细胞白血病衍生的细胞系K562中研究的PPIX积累动力学和ALA-PDT的细胞毒性作用机制。发现PPIX分布以及因此的细胞毒性作用是异质性的。PPIX积累程度较低的K562细胞亚群仅表现出短暂的细胞周期停滞。一部分细胞,可能是那些PPIX积累较高的细胞,会被ALA-PDT不可逆地损伤。我们检测到了早期凋亡的几个迹象:Bcl-xL表达降低、线粒体和质膜电位降低、细胞色素c释放到细胞质中以及线粒体抗原7A6的暴露。然而,缺乏晚期凋亡事件:既没有caspase-3激活也没有DNA片段化发生。相反,观察到由于质膜损伤导致的快速进展的细胞坏死。我们认为,我们在K562细胞中发现的高水平抗凋亡热休克蛋白HSP70和HSP27负责在caspase激活上游抑制凋亡过程。