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Photodynamic therapy and imaging based on tumor-targeted nanoprobe, polymer-conjugated zinc protoporphyrin
Author(s) -
Jun Fang,
Long Liao,
Hongzhuan Yin,
Hideaki Nakamura,
Vladimír Šubr,
Karel Ulbrich,
Hiroshi Maeda
Publication year - 2015
Publication title -
future science oa
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.825
H-Index - 23
ISSN - 2056-5623
DOI - 10.4155/fso.15.2
Subject(s) - nanoprobe , photodynamic therapy , protoporphyrin ix , methacrylamide , cancer research , chemistry , conjugated system , pathology , medicine , fluorescence , acrylamide , copolymer , polymer , physics , organic chemistry , quantum mechanics
Aim: To evaluate the potential of tumor-targeted nanoprobe, N -(2-hydroxypropyl)methacrylamide copolymer-conjugated zinc protoporphyrin (PZP) for photodynamic therapy (PDT) and tumor imaging. Materials & Methods: Different tumor models including carcinogen-induced cancer were used, PZP was intravenously injected followed by irradiation with xenon or blue fluorescent light on tumor. Results: One PZP 20 mg/kg (ZnPP equivalent) dose with two or three treatments of light at an intensity of ≥20 J/cm 2 caused necrosis and disappearance of most tumors (>70%) in different tumor models. We also confirmed PZP-based tumor imaging in carcinogen-induced breast tumor and colon cancer models. Conclusion: These findings support the potential application of PZP as a tumor-selective nanoprobe for PDT as well as tumor imaging, by virtue of the enhanced permeability and retention effect.

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