首页> 外文期刊>Folia histochemica et cytobiologica >Cytosolic superoxide dismutase activity after photodynamic therapy, intracellular distribution of Photofrin II and hypericin, and P-glycoprotein localization in human colon adenocarcinoma.
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Cytosolic superoxide dismutase activity after photodynamic therapy, intracellular distribution of Photofrin II and hypericin, and P-glycoprotein localization in human colon adenocarcinoma.

机译:光动力学治疗后胞质超氧化物歧化酶活性,Photofrin II和金丝桃素的细胞内分布以及人结肠腺癌中P-糖蛋白的定位。

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In photodynamic therapy (PDT), a tumor-selective photosensitizer is administered and then activated by exposure to a light source of applicable wavelength. Multidrug resistance (MDR) is largely caused by the efflux of therapeutics from the tumor cell by means of P-glycoprotein (P-gp), resulting in reduced efficacy of the anticancer therapy. This study deals with photodynamic therapy with Photofrin II (Ph II) and hypericin (Hyp) on sensitive and doxorubicin-resistant colon cancer cell lines. Changes in cytosolic superoxide dismutase (SOD1) activity after PDT and the intracellular accumulation of photosensitizers in sensitive and resistant colon cancer cell lines were examined. The photosensitizers' distributions indicate that Ph II could be a potential substrate for P-gp, in contrast to Hyp. We observed an increase in SOD1 activity after PDT for both photosensitizing agents. The changes in SOD1 activity show that photodynamic action generates oxidative stress in the treated cells. P-gp appears to play a role in the intracellular accumulation of Ph II. Therefore the efficacy of PDT on multidrug-resistant cells depends on the affinity of P-gp to the photosensitizer used. The weaker accumulation of photosensitizing agents enhances the antioxidant response, and this could influence the efficacy of PDT.
机译:在光动力疗法(PDT)中,先施用肿瘤选择性光敏剂,然后通过暴露在适用波长的光源下进行激活。多药耐药性(MDR)很大程度上是由于治疗药物通过P-糖蛋白(P-gp)从肿瘤细胞外排引起的,导致抗癌治疗效果降低。这项研究涉及用光敏蛋白II(Ph II)和金丝桃素(Hyp)对敏感和耐阿霉素的结肠癌细胞系进行光动力疗法。检查了PDT后细胞质超氧化物歧化酶(SOD1)活性的变化以及光敏剂在敏感和耐药结肠癌细胞系中的细胞内积累。与Hyp相比,光敏剂的分布表明Ph II可能是P-gp的潜在底物。我们观察到,PDT后两种光敏剂的SOD1活性均增加。 SOD1活性的变化表明光动力作用在处理过的细胞中产生氧化应激。 P-gp似乎在Ph II的细胞内积累中起作用。因此,PDT对多药耐药细胞的功效取决于P-gp对所用光敏剂的亲和力。光敏剂的积累较弱会增强抗氧化反应,这可能会影响PDT的功效。

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