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Heat shock protein 27 modulates autophagy and promotes cell survival after photodynamic therapy

机译:热休克蛋白27调节自噬并促进光动力疗法后的细胞存活

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摘要

Photodynamic therapy (PDT) is a clinically approved treatment that exerts a selective cytotoxic activity toward cancer cells. The procedure involves the administration of a photosensitizer drug followed by its activation by visible light. In the presence of oxygen, a series of events lead to tumor cell death. PDT releases different cell signals, some of these lead to death while others can lead to survival. The surviving or resistant cells contribute to the recurrence of tumors after treatment, from which the necessity to understand this molecular response induced by PDT arises. It has been shown that both Heat Shock Proteins (HSPs) and autophagy promote PDT resistance. Moreover, both of them can be stimulated by PDT treatment. However, the molecular interplay between HSPs and autophagy in the photodynamic therapy context is poorly understood. We studied whether PDT induces autophagic activity through HSPs. We demonstrated that PDT promoted HSP27 expression, which in turn triggered autophagic cell survival as well as inhibited apoptosis in colon cancer cells. In addition, an overexpression of the HSP27autophagy axis was observed in skin carcinoma cells resistant to PDT.
机译:光动力疗法(PDT)是临床批准的治疗方法,对癌细胞产生选择性细胞毒性活性。该方法涉及给予光敏剂药物,然后通过可见光激活。在氧气存在下,一系列事件导致肿瘤细胞死亡。 PDT释放不同的细胞信号,其中一些导致死亡,而其他人会导致生存。存活或抗性细胞有助于治疗后的肿瘤复发,从而出现了理解PDT诱导的该分子反应的必要性。已经表明,热休克蛋白(HSP)和自噬促进了PDT抗性。此外,它们都可以通过PDT治疗刺激。然而,光动力治疗背景下的HSP和自噬之间的分子相互作用是很差的。我们研究了PDT通过HSP诱导自噬活动。我们证明了PDT促进了HSP27表达,其又引发了自噬细胞存活以及抑制结肠癌细胞的凋亡。此外,在对PDT的皮肤癌细胞中观察到HSP27Autophagy轴的过表达。

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