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Comparative Endocytosis Mechanisms and Anticancer Effect of HPMA copolymer- and PAMAM Dendrimer-MTCP Conjugates for Photodynamic Therapy

机译:HPMA共聚物和PAMAM树状聚合物-MTCP偶联物的光动力疗法的比较内吞作用机理和抗癌作用

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摘要

Polymer architecture can influence biodistribution and the mode of presentation of bioactive agents to cells. Herein, we examined delivery, loading efficiency and mode of cellular entry of polymer conjugates of the photosensitizer Meso-Tetra (4-Carboxyphenyl) Porphyrine (MTCP) when attached to hyper-branched amine terminated poly(amido amine) (PAMAM) dendrimer or random coil linear N-(2-hydroxypropyl)methacrylamide (HPMA) copolymer containing free amines in the side chains. The in vitro dark cytotoxicity and phototoxicity of MTCP and related conjugates were assessed on mouth epidermal carcinoma (KB) and human adenocarcinoma alveolar basal epithelial (A549) cells. Phototoxicity of polymeric conjugates increased by approximately 100 and 4,000 fold in KB and A549 cells compared with non-conjugated MTCP. The increase in phototoxicity activity was shown to result from increased rate of cellular uptake, whereas, cellular internalization of MTCP was negligible in comparison with the conjugated forms. Our results suggest the superiority of amine-terminated HPMA copolymer vs PAMAM dendrimer under study for delivery of MTCP. Treatment with various pharmacological inhibitors of endocytosis showed that polymer architecture influenced the mechanism of cellular uptake of the conjugated photosensitizer. Results show that polymeric conjugates of MTCP improved solubility, influenced the route and the rate of cellular internalization and drastically enhanced the uptake of the photosensitizer.
机译:聚合物结构可以影响生物分布和生物活性剂向细胞的呈递方式。在本文中,我们研究了光敏剂Meso-Tetra(4-羧苯基)卟啉(MTCP)与高支化胺封端的聚(酰胺胺)(PAMAM)树枝状大分子或无规聚合物结合时的递送,负载效率和细胞进入细胞的方式侧链含有游离胺的线型线性N-(2-羟丙基)甲基丙烯酰胺(HPMA)共聚物。 MTCP和相关缀合物的体外暗细胞毒性和光毒性在口腔表皮癌(KB)和人腺癌肺泡基底上皮细胞(A549)上进行了评估。与未结合的MTCP相比,在KB和A549细胞中,聚合结合物的光毒性增加了约100倍和4,000倍。已显示出光毒性活性的增加是由于细胞摄取速率的增加所致,而与结合形式相比,MTCP的细胞内在化作用可忽略不计。我们的结果表明,胺基端接的HPMA共聚物相对于正在研究的MTCP传递中的PAMAM树枝状聚合物具有优越性。用多种内吞作用的药理抑制剂治疗表明,聚合物结构影响了共轭光敏剂的细胞摄取机制。结果表明,MTCP的聚合共轭物改善了溶解度,影响了细胞内在化的途径和速率,并大大增强了光敏剂的吸收。

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