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溶酶体信号传导增强癌细胞中线粒体介导的光动力疗法。

Signaling From Lysosomes Enhances Mitochondria-Mediated Photodynamic Therapy In Cancer Cells.

作者信息

Quiogue Geraldine, Saggu Shalini, Hung Hsin-I, Kenney Malcolm E, Oleinick Nancy L, Lemasters John J, Nieminen Anna-Liisa

机构信息

Department of Pharmaceutical and Biomedical Sciences, Medical University of South Carolina, Charleston, SC 29425.

出版信息

Proc SPIE Int Soc Opt Eng. 2009 Jul 12;7380(73800C):1-8. doi: 10.1117/12.823752.

Abstract

In photodynamic therapy (PDT), visible light activates a photosensitizing drug added to a tissue, resulting in singlet oxygen formation and cell death. Assessed by confocal microscopy, the photosensitizer phthalocyanine 4 (Pc 4) localizes primarily to mitochondrial membranes in cancer cells, resulting in mitochondria-mediated cell death. A Pc 4 derivative, Pc 181, accumulates into lysosomes. In comparison to Pc 4, Pc 181 was a more effective photosensitizer promoting killing cancer cells after PDT. The mode of cell death after Pc 181-PDT is predominantly apoptosis, and pancaspase and caspase-3 inhibitors prevent onset of the cell death. To assess further how lysosomes contribute to PDT, we monitored cell killing of A431cells after PDT in the presence and absence of bafilomycin, an inhibitor of the acidic vacuolar proton pump that collapses the pH gradient of the lysosomal/endosomal compartment. Bafilomycin by itself did not induce toxicity but greatly enhanced Pc 4-PDT-induced cell killing. In comparison to Pc 4, less enhancement of cell killing by bafilomycin occurred after Pc 181-PDT at photosensitizer doses producing equivalent cell killing in the absence of bafilomycin. These results indicate that lysosomal disruption can augment PDT with Pc 4, which targets predominantly mitochondria, but less so after PDT with Pc 181, since Pc 181 already targets lysosomes.

摘要

在光动力疗法(PDT)中,可见光激活添加到组织中的光敏药物,导致单线态氧的形成和细胞死亡。通过共聚焦显微镜评估,光敏剂酞菁4(Pc 4)主要定位于癌细胞的线粒体膜上,导致线粒体介导的细胞死亡。一种Pc 4衍生物Pc 181会聚集到溶酶体中。与Pc 4相比,Pc 181是一种更有效的光敏剂,能在PDT后促进癌细胞的杀伤。Pc 181-PDT后的细胞死亡模式主要是凋亡,泛半胱天冬酶和半胱天冬酶-3抑制剂可阻止细胞死亡的发生。为了进一步评估溶酶体对PDT的作用,我们监测了在存在和不存在巴弗洛霉素(一种酸性液泡质子泵抑制剂,可破坏溶酶体/内体区室的pH梯度)的情况下,PDT后A431细胞的杀伤情况。巴弗洛霉素本身不会诱导毒性,但能大大增强Pc 4-PDT诱导的细胞杀伤。与Pc 4相比,在产生等效细胞杀伤的光敏剂剂量下,Pc 181-PDT后巴弗洛霉素对细胞杀伤的增强作用较小。这些结果表明,溶酶体破坏可增强主要靶向线粒体的Pc 4的PDT效果,但对靶向溶酶体的Pc 181的PDT效果增强作用较小。

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