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Nanoliposomes Co-Encapsulating CT Imaging Contrast Agent and Photosensitizer for Enhanced Imaging Guided Photodynamic Therapy of Cancer

机译:纳米脂质体共包封CT成像造影剂和光敏剂用于增强的成像引导性光动力疗法

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摘要

Fluorescence (FL) and X-ray computed tomography (CT) imaging-guided photodynamic therapy (PDT) can provide a powerful theranostic tool to visualize, monitor, and treat cancer and other diseases with enhanced accuracy and efficacy.>Methods: In this study, clinically approved iodinated CT imaging contrast agent (CTIA) iodixanol and commercially available photosensitizer (PS) meso-tetrakis (4-sulphonatophenyl) porphine (TPPS4) were co-encapsulated in biocompatible PEGylated nanoliposomes (NL) for enhanced anticancer PDT guided by bimodal (FL and CT) imaging.>Results: The NL co-encapsulation of iodixanol and TPPS4 (LIT) lead to an increase in singlet oxygen generation by PS via the intraparticle heavy-atom (iodine) effect on PS molecules, as it was confirmed by both direct and indirect measurements of singlet oxygen production. The confocal imaging and PDT of cancer cells were performed in vitro, exhibiting the cellular uptake of TPPS4 formulations and enhanced PDT efficacy of LIT. Meanwhile, bimodal (FL and CT) imaging was also conducted with tumor-bearing mice and the imaging results manifested high-efficient accumulation and retention of LIT in tumors. Moreover, PDT of tumor in vivo was shown to be drastically more efficient with LIT than with other formulations of TPPS4.>Conclusion: This study demonstrated that LIT can serve as a highly efficient theranostic nanoplatform for enhanced anticancer PDT guided by bimodal (FL and CT) imaging.
机译:荧光(FL)和X射线计算机断层摄影(CT)成像引导的光动力疗法(PDT)可以提供强大的治疗诊断工具,以更高的准确性和功效来可视化,监视和治疗癌症及其他疾病。>方法:< / strong>在这项研究中,将临​​床认可的碘化CT成像造影剂(CTIA)碘克沙醇和市售的光敏剂(PS)中四(4-磺基苯基)卟啉(TPPS4)共封装在生物相容性PEG化纳米脂质体(NL)中>结果:碘克沙醇和TPPS4(LIT)的NL共包封导致PS通过颗粒内重原子产生单线态氧的增加(碘对PS分子的影响,这已经通过直接和间接测量单线态氧的产生得到了证实。癌细胞的共聚焦成像和PDT在体外进行,表现出细胞对TPPS4制剂的摄取和LIT增强的PDT功效。同时,还对荷瘤小鼠进行了双峰(FL和CT)成像,成像结果表明LIT在肿瘤中高效积累和保留。此外,显示LIT体内的肿瘤PDT比其他TPPS4制剂更有效。>结论:该研究表明LIT可以作为高效的治疗药物纳米平台,用于增强的抗癌PDT指导通过双峰(FL和CT)成像。

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