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α(ν)β(3)-targeted Copper Nanoparticles Incorporating an Sn 2 Lipase-Labile Fumagillin Prodrug for Photoacoustic Neovascular Imaging and Treatment

Photoacoustic (PA) tomography enables multiscale, multicontrast and high-resolution imaging of biological structures. In particular, contrast-enhanced PA imaging offers high-sensitivity noninvasive imaging of neovessel sprout formation and nascent tubules, which are important biomarkers of malignant...

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Autores principales: Zhang, Ruiying, Pan, Dipanjan, Cai, Xin, Yang, Xiaoxia, Senpan, Angana, Allen, John S., Lanza, Gregory M., Wang, Lihong V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4278999/
https://www.ncbi.nlm.nih.gov/pubmed/25553103
http://dx.doi.org/10.7150/thno.10014
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author Zhang, Ruiying
Pan, Dipanjan
Cai, Xin
Yang, Xiaoxia
Senpan, Angana
Allen, John S.
Lanza, Gregory M.
Wang, Lihong V.
author_facet Zhang, Ruiying
Pan, Dipanjan
Cai, Xin
Yang, Xiaoxia
Senpan, Angana
Allen, John S.
Lanza, Gregory M.
Wang, Lihong V.
author_sort Zhang, Ruiying
collection PubMed
description Photoacoustic (PA) tomography enables multiscale, multicontrast and high-resolution imaging of biological structures. In particular, contrast-enhanced PA imaging offers high-sensitivity noninvasive imaging of neovessel sprout formation and nascent tubules, which are important biomarkers of malignant tumors and progressive atherosclerotic disease. While gold nanoparticles or nanorods have been used as PA contrast agents, we utilized high-density copper oleate small molecules encapsulated within a phospholipid surfactant (CuNPs) to generate a soft nanoparticle with PA contrast comparable to that from gold. Within the NIR window, the copper nanoparticles provided a 4-fold higher signal than that of blood. α(ν)β(3)-integrin targeting of CuNPs in a Matrigel(TM) angiogenesis mouse model demonstrated prominent (p<0.05) PA contrast enhancement of the neovasculature compared with mice given nontargeted or competitively inhibited CuNPs. Furthermore, incorporation of a Sn 2 lipase-labile fumagillin prodrug into the CuNP outer lipid membrane produced marked antiangiogenesis in the same model when targeted to the α(ν)β(3)-integrin, providing proof of concept in vivo for the first targeted PA - drug delivery agent.
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spelling pubmed-42789992015-01-01 α(ν)β(3)-targeted Copper Nanoparticles Incorporating an Sn 2 Lipase-Labile Fumagillin Prodrug for Photoacoustic Neovascular Imaging and Treatment Zhang, Ruiying Pan, Dipanjan Cai, Xin Yang, Xiaoxia Senpan, Angana Allen, John S. Lanza, Gregory M. Wang, Lihong V. Theranostics Research Paper Photoacoustic (PA) tomography enables multiscale, multicontrast and high-resolution imaging of biological structures. In particular, contrast-enhanced PA imaging offers high-sensitivity noninvasive imaging of neovessel sprout formation and nascent tubules, which are important biomarkers of malignant tumors and progressive atherosclerotic disease. While gold nanoparticles or nanorods have been used as PA contrast agents, we utilized high-density copper oleate small molecules encapsulated within a phospholipid surfactant (CuNPs) to generate a soft nanoparticle with PA contrast comparable to that from gold. Within the NIR window, the copper nanoparticles provided a 4-fold higher signal than that of blood. α(ν)β(3)-integrin targeting of CuNPs in a Matrigel(TM) angiogenesis mouse model demonstrated prominent (p<0.05) PA contrast enhancement of the neovasculature compared with mice given nontargeted or competitively inhibited CuNPs. Furthermore, incorporation of a Sn 2 lipase-labile fumagillin prodrug into the CuNP outer lipid membrane produced marked antiangiogenesis in the same model when targeted to the α(ν)β(3)-integrin, providing proof of concept in vivo for the first targeted PA - drug delivery agent. Ivyspring International Publisher 2015-01-01 /pmc/articles/PMC4278999/ /pubmed/25553103 http://dx.doi.org/10.7150/thno.10014 Text en © Ivyspring International Publisher. This is an open-access article distributed under the terms of the Creative Commons License (http://creativecommons.org/licenses/by-nc-nd/3.0/). Reproduction is permitted for personal, noncommercial use, provided that the article is in whole, unmodified, and properly cited.
spellingShingle Research Paper
Zhang, Ruiying
Pan, Dipanjan
Cai, Xin
Yang, Xiaoxia
Senpan, Angana
Allen, John S.
Lanza, Gregory M.
Wang, Lihong V.
α(ν)β(3)-targeted Copper Nanoparticles Incorporating an Sn 2 Lipase-Labile Fumagillin Prodrug for Photoacoustic Neovascular Imaging and Treatment
title α(ν)β(3)-targeted Copper Nanoparticles Incorporating an Sn 2 Lipase-Labile Fumagillin Prodrug for Photoacoustic Neovascular Imaging and Treatment
title_full α(ν)β(3)-targeted Copper Nanoparticles Incorporating an Sn 2 Lipase-Labile Fumagillin Prodrug for Photoacoustic Neovascular Imaging and Treatment
title_fullStr α(ν)β(3)-targeted Copper Nanoparticles Incorporating an Sn 2 Lipase-Labile Fumagillin Prodrug for Photoacoustic Neovascular Imaging and Treatment
title_full_unstemmed α(ν)β(3)-targeted Copper Nanoparticles Incorporating an Sn 2 Lipase-Labile Fumagillin Prodrug for Photoacoustic Neovascular Imaging and Treatment
title_short α(ν)β(3)-targeted Copper Nanoparticles Incorporating an Sn 2 Lipase-Labile Fumagillin Prodrug for Photoacoustic Neovascular Imaging and Treatment
title_sort α(ν)β(3)-targeted copper nanoparticles incorporating an sn 2 lipase-labile fumagillin prodrug for photoacoustic neovascular imaging and treatment
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4278999/
https://www.ncbi.nlm.nih.gov/pubmed/25553103
http://dx.doi.org/10.7150/thno.10014
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