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一氧化氮对光动力应激肿瘤细胞的断链抗氧化和细胞保护作用。

Chain-breaking antioxidant and cytoprotective action of nitric oxide on photodynamically stressed tumor cells.

作者信息

Niziolek Magdalena, Korytowski Witold, Girotti Albert W

机构信息

Department of Biochemistry, Medical College of Wisconsin, Milwaukee, WI 53226, USA.

出版信息

Photochem Photobiol. 2003 Sep;78(3):262-70. doi: 10.1562/0031-8655(2003)078<0262:caacao>2.0.co;2.

Abstract

Nitric oxide (.NO) has a multitude of physiological roles, including the ability to protect cells against oxidant-induced killing, e.g. by inhibiting caspase-mediated apoptosis or by intercepting damaging free radicals derived from membrane lipids. The purpose of this study was to test the hypothesis that low flux .NO acting in the latter fashion can enhance tumor-cell resistance to photodynamic killing, specifically that sensitized by 5-aminolevulinic acid (ALA)-derived protoporphyrin IX (PpIX). Preliminary model experiments with iron-ascorbate-treated, PpIX-sensitized liposomes showed that spermine NONOate (SPER/NO)-derived .NO had no effect on photoinduced accumulation of primary singlet oxygen adducts, e.g. the cholesterol hydroperoxide 5 alpha-OOH, but dose-dependently inhibited the buildup of free radical-generated oxidation products arising from one-electron turnover of primary peroxides. In subsequent studies, breast tumor COH-BR1 cells in serum-free medium were treated with 1 mM ALA for 15 min and then without ALA for 3.75 h, allowing biogenerated PpIX to diffuse to extramitochondrial sites, including plasma membrane. Cells were irradiated in the absence or presence of SPER/NO and compared for peroxidative damage and Hoechst-assessed viability after 5 h in the dark. Iron-stimulated necrotic photo-killing and accumulation of chain lipid peroxidation products were observed, and this was inhibited strongly by SPER/NO, but not by decomposed SPER/NO, confirming that .NO was the active agent. When introduced after irradiation, .NO became progressively less inhibitory, consistent with ongoing but waning free-radical activity. These findings provide new insights into the possible role of .NO in tumor resistance to ALA-photodynamic therapy and other photo-dynamic treatments.

摘要

一氧化氮(·NO)具有多种生理作用,包括保护细胞免受氧化剂诱导的杀伤,例如通过抑制半胱天冬酶介导的细胞凋亡或通过拦截源自膜脂的有害自由基。本研究的目的是检验以下假设:以后者方式起作用的低通量·NO可增强肿瘤细胞对光动力杀伤的抗性,特别是对由5-氨基乙酰丙酸(ALA)衍生的原卟啉IX(PpIX)致敏的光动力杀伤的抗性。用铁-抗坏血酸处理的、PpIX致敏的脂质体进行的初步模型实验表明,精胺硝普钠(SPER/NO)衍生的·NO对光诱导的初级单线态氧加合物(例如胆固醇氢过氧化物5α-OOH)的积累没有影响,但剂量依赖性地抑制了由初级过氧化物的单电子周转产生的自由基生成的氧化产物的积累。在随后的研究中,无血清培养基中的乳腺肿瘤COH-BR1细胞用1 mM ALA处理15分钟,然后在无ALA的情况下处理3.75小时,使生物生成的PpIX扩散到线粒体外部位,包括质膜。在有或没有SPER/NO的情况下对细胞进行照射,并在黑暗中5小时后比较其过氧化损伤和经Hoechst评估的活力。观察到铁刺激的坏死性光杀伤和链脂质过氧化产物的积累,并且这被SPER/NO强烈抑制,但未被分解的SPER/NO抑制,证实·NO是活性剂。当在照射后引入时,·NO的抑制作用逐渐减弱,这与正在进行但逐渐减弱的自由基活性一致。这些发现为·NO在肿瘤对ALA光动力疗法和其他光动力治疗的抗性中的可能作用提供了新的见解。

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