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用于光动力疗法的负载光敏剂的聚乙二醇连接树枝状大分子的制备。

Preparation of poly(ethylene glycol)-attached dendrimers encapsulating photosensitizers for application to photodynamic therapy.

作者信息

Kojima Chie, Toi Yoko, Harada Atsushi, Kono Kenji

机构信息

Graduate School of Engineering, Osaka Prefecture University, Osaka, Japan.

出版信息

Bioconjug Chem. 2007 May-Jun;18(3):663-70. doi: 10.1021/bc060244u. Epub 2007 Mar 22.

Abstract

Photodynamic therapy (PDT) is a noninvasive treatment of some diseases including cancer. We have developed poly(ethylene glycol) (PEG)-attached dendrimers as a drug-carrier candidate. In this study, we prepared nanocapsules of photosensitizers using PEG-attached dendrimers for application to PDT. Two PEG-attached dendrimers derived from poly(amido amine) (PAMAM) and poly(propylene imine) (PPI) dendrimers (PEG-PAMAM and PEG-PPI) were synthesized, and rose bengal (RB) and protoporphyrin IX (PpIX) were used as photosensitizers. Results showed that fewer PpIX molecules were encapsulated by both PEG-attached dendrimers than RB, but the complexes were more stable under physiological conditions. Furthermore, we demonstrated that PEG-PPI held photosensitizers in a more stable manner than PEG-PAMAM because of their inner hydrophobicity. We described the cytotoxicity of the complexes of photosensitizers induced by light irradiation in vitro. The complex of PpIX with PEG-PPI exhibited efficient cytotoxicity, compared with free PpIX. It was suggested that the cytotoxicity was caused by the high level of singlet oxygen production and the efficient delivery to mitochondria. Our results suggest that these PEG-attached dendrimers are a promising vehicle for PDT.

摘要

光动力疗法(PDT)是一种用于治疗包括癌症在内的某些疾病的非侵入性疗法。我们已经开发出了连接有聚乙二醇(PEG)的树枝状大分子作为一种候选药物载体。在本研究中,我们制备了使用连接有PEG的树枝状大分子的光敏剂纳米胶囊,用于光动力疗法。合成了两种分别衍生自聚酰胺胺(PAMAM)树枝状大分子和聚亚丙基亚胺(PPI)树枝状大分子的连接有PEG的树枝状大分子(PEG-PAMAM和PEG-PPI),并使用孟加拉玫瑰红(RB)和原卟啉IX(PpIX)作为光敏剂。结果表明,与RB相比,两种连接有PEG的树枝状大分子包裹的PpIX分子较少,但这些复合物在生理条件下更稳定。此外,我们证明,由于其内部的疏水性,PEG-PPI比PEG-PAMAM以更稳定的方式保持光敏剂。我们描述了体外光照射诱导的光敏剂复合物的细胞毒性。与游离的PpIX相比,PpIX与PEG-PPI的复合物表现出高效的细胞毒性。有人提出,细胞毒性是由单线态氧的高产量和向线粒体的有效递送引起的。我们的结果表明,这些连接有PEG的树枝状大分子是光动力疗法的一种有前景的载体。

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