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All-in-One Theranostic Nanoplatform Based on Hollow MoS(x) for Photothermally-maneuvered Oxygen Self-enriched Photodynamic Therapy
Photodynamic therapy (PDT) kills cancer cells by converting tumor-dissolved oxygen into reactive singlet oxygen ((1)O(2)) using a photosensitizer under laser irradiation. However, pre-existing hypoxia in tumors and oxygen consumption during PDT can result in an inadequate oxygen supply, which in tur...
Autores principales: | , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Ivyspring International Publisher
2018
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5817104/ https://www.ncbi.nlm.nih.gov/pubmed/29463993 http://dx.doi.org/10.7150/thno.22325 |
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author | Wang, Jinping Liu, Li You, Qing Song, Yilin Sun, Qi Wang, Yidan Cheng, Yu Tan, Fengping Li, Nan |
author_facet | Wang, Jinping Liu, Li You, Qing Song, Yilin Sun, Qi Wang, Yidan Cheng, Yu Tan, Fengping Li, Nan |
author_sort | Wang, Jinping |
collection | PubMed |
description | Photodynamic therapy (PDT) kills cancer cells by converting tumor-dissolved oxygen into reactive singlet oxygen ((1)O(2)) using a photosensitizer under laser irradiation. However, pre-existing hypoxia in tumors and oxygen consumption during PDT can result in an inadequate oxygen supply, which in turn hampers PDT efficacy. Herein, an O(2) self-sufficient nanotheranostic platform based on hollow MoS(x) nanoparticles (HMoS(x)) with oxygen-saturated perfluorohexane (O(2)@PFH) and surface-modified human serum albumin (HSA)/chloride aluminium phthalocyanine (AlPc) (O(2)@PFH@HMoS(x)-HSA/AlPc), has been designed for the imaging and oxygen self-enriched photodynamic therapy (Oxy-PDT) of cancer. Methods: The in vitro anti-cancer activity and intracellular (1)O(2) generation performance of the nanoparticles were examined using 4T1 cells. We also evaluated the multimodal imaging capabilities and anti-tumor efficiency of the prepared nanoparticles in vivo using a 4T1 tumor-bearing nude mouse model. Results: This nanoplatform could achieve the distinct in vivo fluorescence (FL)/photoacoustic (PA)/X-ray computed tomography (CT) triple-model imaging-guided photothermally-maneuvered Oxy-PDT. Interestingly, the fluorescence and Oxy-PDT properties of O(2)@PFH@HMoS(x)-HSA/AlPc were considerably quenched; however, photothermal activation by 670 nm laser irradiation induced a significant increase in temperature, which empowered the Oxy-PDT effect of the nanoparticles. In this study, O(2)@PFH@HMoS(x)-HSA/AlPc demonstrated a great potential to image and treat tumors both in vitro and in vivo, showing complete tumor-inhibition over 16 days after treatment in the 4T1 tumor model. Conclusion: O(2)@PFH@HMoS(x)-HSA/AlPc is promising to be used as novel multifunctional theranostic nanoagent for triple-modal imaging as well as single wavelength NIR laser triggered PTT/Oxy-PDT synergistic therapy. |
format | Online Article Text |
id | pubmed-5817104 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2018 |
publisher | Ivyspring International Publisher |
record_format | MEDLINE/PubMed |
spelling | pubmed-58171042018-02-20 All-in-One Theranostic Nanoplatform Based on Hollow MoS(x) for Photothermally-maneuvered Oxygen Self-enriched Photodynamic Therapy Wang, Jinping Liu, Li You, Qing Song, Yilin Sun, Qi Wang, Yidan Cheng, Yu Tan, Fengping Li, Nan Theranostics Research Paper Photodynamic therapy (PDT) kills cancer cells by converting tumor-dissolved oxygen into reactive singlet oxygen ((1)O(2)) using a photosensitizer under laser irradiation. However, pre-existing hypoxia in tumors and oxygen consumption during PDT can result in an inadequate oxygen supply, which in turn hampers PDT efficacy. Herein, an O(2) self-sufficient nanotheranostic platform based on hollow MoS(x) nanoparticles (HMoS(x)) with oxygen-saturated perfluorohexane (O(2)@PFH) and surface-modified human serum albumin (HSA)/chloride aluminium phthalocyanine (AlPc) (O(2)@PFH@HMoS(x)-HSA/AlPc), has been designed for the imaging and oxygen self-enriched photodynamic therapy (Oxy-PDT) of cancer. Methods: The in vitro anti-cancer activity and intracellular (1)O(2) generation performance of the nanoparticles were examined using 4T1 cells. We also evaluated the multimodal imaging capabilities and anti-tumor efficiency of the prepared nanoparticles in vivo using a 4T1 tumor-bearing nude mouse model. Results: This nanoplatform could achieve the distinct in vivo fluorescence (FL)/photoacoustic (PA)/X-ray computed tomography (CT) triple-model imaging-guided photothermally-maneuvered Oxy-PDT. Interestingly, the fluorescence and Oxy-PDT properties of O(2)@PFH@HMoS(x)-HSA/AlPc were considerably quenched; however, photothermal activation by 670 nm laser irradiation induced a significant increase in temperature, which empowered the Oxy-PDT effect of the nanoparticles. In this study, O(2)@PFH@HMoS(x)-HSA/AlPc demonstrated a great potential to image and treat tumors both in vitro and in vivo, showing complete tumor-inhibition over 16 days after treatment in the 4T1 tumor model. Conclusion: O(2)@PFH@HMoS(x)-HSA/AlPc is promising to be used as novel multifunctional theranostic nanoagent for triple-modal imaging as well as single wavelength NIR laser triggered PTT/Oxy-PDT synergistic therapy. Ivyspring International Publisher 2018-01-01 /pmc/articles/PMC5817104/ /pubmed/29463993 http://dx.doi.org/10.7150/thno.22325 Text en © Ivyspring International Publisher This is an open access article distributed under the terms of the Creative Commons Attribution (CC BY-NC) license (https://creativecommons.org/licenses/by-nc/4.0/). See http://ivyspring.com/terms for full terms and conditions. |
spellingShingle | Research Paper Wang, Jinping Liu, Li You, Qing Song, Yilin Sun, Qi Wang, Yidan Cheng, Yu Tan, Fengping Li, Nan All-in-One Theranostic Nanoplatform Based on Hollow MoS(x) for Photothermally-maneuvered Oxygen Self-enriched Photodynamic Therapy |
title | All-in-One Theranostic Nanoplatform Based on Hollow MoS(x) for Photothermally-maneuvered Oxygen Self-enriched Photodynamic Therapy |
title_full | All-in-One Theranostic Nanoplatform Based on Hollow MoS(x) for Photothermally-maneuvered Oxygen Self-enriched Photodynamic Therapy |
title_fullStr | All-in-One Theranostic Nanoplatform Based on Hollow MoS(x) for Photothermally-maneuvered Oxygen Self-enriched Photodynamic Therapy |
title_full_unstemmed | All-in-One Theranostic Nanoplatform Based on Hollow MoS(x) for Photothermally-maneuvered Oxygen Self-enriched Photodynamic Therapy |
title_short | All-in-One Theranostic Nanoplatform Based on Hollow MoS(x) for Photothermally-maneuvered Oxygen Self-enriched Photodynamic Therapy |
title_sort | all-in-one theranostic nanoplatform based on hollow mos(x) for photothermally-maneuvered oxygen self-enriched photodynamic therapy |
topic | Research Paper |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5817104/ https://www.ncbi.nlm.nih.gov/pubmed/29463993 http://dx.doi.org/10.7150/thno.22325 |
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