4.8 Article

Intranuclear biophotonics by smart design of nuclear-targeting photo-/radio-sensitizers co-loaded upconversion nanoparticles

Journal

BIOMATERIALS
Volume 69, Issue -, Pages 89-98

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.biomaterials.2015.08.017

Keywords

Intranuclear biophotonics; Upconversion nanoparticles; Photo-/radio-sensitizers; Magnetic/luminescent bimodal imaging; Synergetic radio-/photodynamic therapy

Funding

  1. National Natural Science Foundation of China [51372260, 51132009, 81472794, 21172043, 51102259]

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Biophotonic technology that uses light and ionizing radiation for positioned cancer therapy is a holy grail in the field of biomedicine because it can overcome the systemic toxicity and adverse side effects of conventional chemotherapy. However, the existing biophotonic techniques fail to achieve the satisfactory treatment efficacy, which remains a big challenge for clinical implementation. Herein, we develop a novel theranostic technique of intranuclear biophotonics by the smart design of a nuclear-targeting biophotonic system based on photo-/radio-sensitizers covalently co-loaded upconversion nanoparticles. These nuclear-targeting biophotonic agents can not only generate a great deal of multiple cytotoxic reactive oxygen species in the nucleus by making full use of NIR/X-ray irradiation, but also produce greatly enhanced intranuclear synergetic radio-/photodynamic therapeutic effects under the magnetic/luminescent bimodal imaging guidance, which may achieve the optimal efficacy in treating radio-resistant tumors. We anticipate that the highly effective intranuclear biophotonics will contribute significantly to the development of biophotonic techniques and open new perspectives for a variety of cancer theranostic applications. (C) 2015 Elsevier Ltd. All rights reserved.

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