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首页> 外文期刊>Photochemical & photobiological sciences: the official journal of the European Photochemistry Association and the European Society for Photobiology >Delivery of a hydrophobic phthalocyanine photosensitizer using PEGylated gold nanoparticle conjugates for the in vivo photodynamic therapy of amelanotic melanoma
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Delivery of a hydrophobic phthalocyanine photosensitizer using PEGylated gold nanoparticle conjugates for the in vivo photodynamic therapy of amelanotic melanoma

机译:使用聚乙二醇化金纳米颗粒偶联物递送疏水性酞菁光敏剂,用于体内治疗黑素瘤的光动力疗法

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摘要

Photodynamic therapy (PDT) is a treatment of cancer whereby tumours are destroyed by reactive oxygen species generated upon photoactivation of a photosensitizer drug. Hydrophobic photosensitizers are known to be ideal for PDT; however, their hydrophobicity necessitates that they are typically administered using emulsions. Here, a delivery vehicle for photodynamic therapy based on the co-self-assembly of both a Zn(II)-phthalocyanine derivative photosensitizer and a polyethylene glycol (PEG) derivative onto gold nanoparticles is reported. The PEG on the particle surface ensured that the conjugates were water soluble and enhanced their retention in the serum, improving the efficiency of PDT in vivo. The pharmacokinetic behaviour of the nanoparticle conjugates following intravenous injection into C57/BL6 mice bearing a subcutaneous transplanted B78H1 amelanotic melanoma showed a significant increase of retention of the nanoparticles in the tumour. PDT tumour destruction was achieved 3 h following injection of the nanoparticle conjugates leading to a remarkable 40% of the treated mice showing no tumour regrowth and complete survival. These results highlight that dual functionalised nanoparticles exhibit significant potential in PDT of cancer especially for difficult to treat cancers such as amelanotic melanoma.
机译:光动力疗法(PDT)是一种癌症治疗方法,通过光敏剂药物的光活化产生的活性氧来破坏肿瘤。疏水性光敏剂是PDT的理想选择;然而,它们的疏水性使得它们通常需要使用乳剂给药。在此,报道了基于Zn(II)-酞菁衍生物光敏剂和聚乙二醇(PEG)衍生物共同自组装到金纳米颗粒上的用于光动力疗法的递送载体。颗粒表面上的PEG确保缀合物是水溶性的,并增强了它们在血清中的保留率,从而提高了PDT在体内的效率。静脉内注射到具有皮下移植的B78H1釉质黑素瘤的C57 / BL6小鼠中后,纳米粒子偶联物的药代动力学行为显示纳米粒子在肿瘤中的保留显着增加。注射纳米颗粒结合物后3 h,PDT肿瘤被破坏,导致40%的经治疗小鼠表现出无肿瘤再生和完全存活。这些结果表明,双重功能化的纳米粒子在癌症的PDT中显示出巨大的潜力,特别是对于难以治疗的癌症,例如黑素瘤黑素瘤。

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