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Photothermally enhanced photodynamic therapy based on glutathione-responsive pheophorbide a-conjugated gold nanorod formulations for cancer theranostic applications

机译:基于谷胱甘肽响应性噬菌体A缀合金纳米棒配方的光热增强光动力学治疗用于癌症治疗方法

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Nanocarriers have provided a new platform for the selective delivery of therapeutic agents into targeted cells and tissues using safe, efficient, and tractable routes. In particular, the integration of multiple therapeutic/diagnostic modalities into a single system has the great potential of enhancing theranostic efficiency against serious diseases with reduced side effects. In this study, a new light-triggered theranostic system using photosensitizer-conjugated gold nanorods (AuNR) with glutathione (GSH)-sensitive linkages was developed for cancer imaging and combinational phototherapy of photodynamic therapy (PDT) and photothermal therapy (PTT) to achieve a synergistic cancer treatment. AuNRs with various aspect ratios were prepared as photothermal agents, and then a folic acid (FA)-PEG block copolymer (FAP) and pheophorbide a (Pheo) were chemically conjugated to the surface of AuNRs for active tumor targeting and PDT, respectively. The configuration of Pheo-conjugated AuNR nanocarriers has been precisely controlled through adjusting the feed composition ratio and the relationship between aspect ratio and absorption band of AuNRs. In particular, an AuNR with an aspect ratio of 3.84 and longitudinal plasmon resonance at 873 nm (Pheo-conjugated AuNR100) exhibited superior performance in singlet oxygen generation, photothermal conversion effect, and GSH-mediated selective release of Pheo. Moreover, it also showed tumor targeting activity and a PDT-PTT synergistic effect. These results indicate that this multifunctional AuNR system with tumor targeting ability and GSH-sensitive linkages would be highly efficient for noninvasive cancer treatment by integrating cancer imaging diagnostics and synergistic therapy. (C) 2020 The Korean Society of Industrial and Engineering Chemistry. Published by Elsevier B.V. All rights reserved.
机译:纳米载体提供了一种新的平台,用于使用安全,有效和易遗传的途径选择性地将治疗剂递送到靶细胞和组织中。特别地,将多种治疗/诊断方式的整合到单一系统具有巨大的潜力,可以提高副作用减少的严重疾病的治疗效率。在本研究中,开发了使用光敏剂 - 缀合的金纳米杆(AUNR)的新的光触发治疗系统,具有谷胱甘肽(GSH) - 密封性键,用于癌症成像和光学动力治疗(PDT)和光热疗(PTT)的组合光疗法实现协同癌症治疗。具有各种纵横比的AUNR被制备为光热试剂,然后将叶酸(FA)-PEG嵌段共聚物(FAP)和野酚A(PHEO)分别化学缀合,分别用于AUNR的表面,分别用于活性肿瘤靶向和PDT。通过调节饲料组合物比和AUNR的纵横比和吸收带之间的关系,精确地控制了噬孔缀合的AUNR纳米载体的构成。特别地,具有3.84和纵向等离子体共振的纵横比在873nm(Pheo-Cogumatalated AUNR100)中的AUNR表现出优异的单次氧产生,光热转化效应和GSH介导的PHEO选择性释放的性能。此外,它还显示出肿瘤靶向活性和PDT-PTT协同效应。这些结果表明,通过整合癌症成像诊断和协同治疗,这种具有肿瘤靶向能力和GSH敏感性联系的多功能AUNR系统对于非侵入性癌症治疗是高效的。 (c)2020朝鲜工业与工程化学学会。 elsevier b.v出版。保留所有权利。

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