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Light-triggered liposomal cargo delivery platform incorporating photosensitizers and gold nanoparticles for enhanced singlet oxygen generation and increased cytotoxicity

机译:光触发脂质体货物运输平台,结合了光敏剂和金纳米颗粒,可增强单线态氧的产生并增加细胞毒性

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We developed light-triggered liposomes incorporating gold nanoparticles and Rose Bengal (RB), a well-known photosensitizer used for photodynamic therapy. Singlet oxygen generated by these liposomes with 532 nm light illumination was characterized by adjusting the molar ratio of lipids and gold nanoparticles while keeping the amount of RB constant. Gold nanoparticles were found to enhance the singlet oxygen generation rate, with a maximum enhancement factor of 1.75 obtained for the molar ratio of HSPC: PE-NH_2: gold of 57:5:17 compared with liposomes loaded with RB alone. The experimental results could be explained by the local electric field enhancement caused by gold nanoparticles. We further assessed cellular cytotoxicity of these liposomes by encapsulating an antitumor drug, doxorubicin (Dox): such Dox loaded liposomes were applied to human colorectal cancer cells. HCT116, and exposed to light. Gold-loaded liposomes containing RB and Dox where Dox release was triggered by light were found to exhibit higher cytotoxicity, compared to the liposomes loaded with RB and Dox alone. Our results indicate that gold-loaded liposomes incorporating photosensitizers may have improved therapeutic efficacy in photodynamic therapy and chemotherapy.
机译:我们开发了结合了金纳米颗粒和玫瑰红(RB)的光触发脂质体,玫瑰红(RB)是一种用于光动力疗法的著名光敏剂。这些脂质体在532 nm光照下产生的单重态氧的特征在于,在保持RB量恒定的同时,调节脂质和金纳米颗粒的摩尔比。发现金纳米颗粒增强了单线态氧的生成速率,与单独负载RB的脂质体相比,HSPC:PE-NH_2:金的摩尔比为57:5:17,获得的最大增强因子为1.75。实验结果可以用金纳米颗粒引起的局部电场增强来解释。我们通过封装抗肿瘤药阿霉素(Dox)进一步评估了这些脂质体的细胞毒性:将这种载有Dox的脂质体应用于人类结直肠癌细胞。 HCT116,并暴露在光下。与单独装载了RB和Dox的脂质体相比,发现含有RB和Dox的金载脂质体(其中光触发了Dox的释放)显示出更高的细胞毒性。我们的结果表明,掺有光敏剂的载金脂质体在光动力疗法和化学疗法中可能具有改善的治疗功效。

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