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具有高蓄积和摄取能力的柔性中空人血清白蛋白-过氧化氢酶纳米胶囊用于增强光动力疗法
Authors Shi Y, Zhao Y, Kang W , Lu W, Chen D, Tao J, Li J, Yu R, Zhao J, Tang R, Teng Z , Weng L
Received 14 October 2022
Accepted for publication 19 January 2023
Published 29 January 2023 Volume 2023:18 Pages 527—539
DOI https://doi.org/10.2147/IJN.S393194
Checked for plagiarism Yes
Review by Single anonymous peer review
Peer reviewer comments 3
Editor who approved publication: Prof. Dr. Anderson Oliveira Lobo
Introduction: Photodynamic therapy (PDT) has attracted increasing attention for tumor treatment because of its minimal invasiveness and specific spatiotemporal selectivity. However, insufficient tumor accumulation and low cellular uptake of photosensitizers limit its therapeutic efficacy.
Methods: In this study, flexible hollow human serum albumin/catalase nanocapsules (HSA/CATs) were created using a core-assisted protein-coating method and combined with the photosensitizer chlorin e6 (HSA/CAT@Ce6) for PDT.
Results and Discussion: Transmission electron microscopy (TEM) images demonstrate that HSA/CAT nanocapsules are flexible, with a uniform diameter (310 nm) and a well-defined hollow structure. Thanks to their flexibility, HSA/CAT@Ce6 nanocapsules show a higher cellular uptake than rigid nanoparticles. The nanocapsules effectively generate reactive oxygen species (ROS) in 4T1 cells because of their high cellular uptake and catalytic capacity, remarkably enhancing their in vitro PDT efficacy. In addition, the in vivo tumor accumulation of HSA/CAT@Ce6 nanocapsules is significantly larger than that of rigid nanoparticles and Ce6, meaning they are highly effective in tumor cell ablation. This demonstrates that our flexible nanoplatform holds great promise for enhancing PDT of tumor.
Keywords: flexible nanoplatform, human serum albumin, sufficient tumor accumulation, high cellular uptake, photodynamic therapy