Cargando…

Anti-HER2 antibody and ScFvEGFR-conjugated antifouling magnetic iron oxide nanoparticles for targeting and magnetic resonance imaging of breast cancer

Antifouling magnetic iron oxide nanoparticles (IONPs) coated with block copolymer poly(ethylene oxide)-block-poly(γ-methacryloxypropyltrimethoxysilane) (PEO-b-PγMPS) were investigated for improving cell targeting by reducing nonspecific uptake. Conjugation of a HER2 antibody, Herceptin®, or a single...

Descripción completa

Detalles Bibliográficos
Autores principales: Chen, Hongwei, Wang, Liya, Yu, Qiqi, Qian, Weiping, Tiwari, Diana, Yi, Hong, Wang, Andrew Y, Huang, Jing, Yang, Lily, Mao, Hui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove Medical Press 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3794963/
https://www.ncbi.nlm.nih.gov/pubmed/24124366
http://dx.doi.org/10.2147/IJN.S49069
_version_ 1782287303567212544
author Chen, Hongwei
Wang, Liya
Yu, Qiqi
Qian, Weiping
Tiwari, Diana
Yi, Hong
Wang, Andrew Y
Huang, Jing
Yang, Lily
Mao, Hui
author_facet Chen, Hongwei
Wang, Liya
Yu, Qiqi
Qian, Weiping
Tiwari, Diana
Yi, Hong
Wang, Andrew Y
Huang, Jing
Yang, Lily
Mao, Hui
author_sort Chen, Hongwei
collection PubMed
description Antifouling magnetic iron oxide nanoparticles (IONPs) coated with block copolymer poly(ethylene oxide)-block-poly(γ-methacryloxypropyltrimethoxysilane) (PEO-b-PγMPS) were investigated for improving cell targeting by reducing nonspecific uptake. Conjugation of a HER2 antibody, Herceptin®, or a single chain fragment (ScFv) of antibody against epidermal growth factor receptor (ScFvEGFR) to PEO-b-PγMPS-coated IONPs resulted in HER2-targeted or EGFR-targeted IONPs (anti-HER2-IONPs or ScFvEGFR-IONPs). The anti-HER2-IONPs bound specifically to SK-BR-3, a HER2-overexpressing breast cancer cell line, but not to MDA-MB-231, a HER2-underexpressing cell line. On the other hand, the ScFvEGFR-IONPs showed strong reactivity with MDA-MB-231, an EGFR-positive human breast cancer cell line, but not with MDA-MB-453, an EGFR-negative human breast cancer cell line. Transmission electron microscopy revealed internalization of the receptor-targeted nanoparticles by the targeted cancer cells. In addition, both antibody-conjugated and non-antibody-conjugated IONPs showed reduced nonspecific uptake by RAW264.7 mouse macrophages in vitro. The developed IONPs showed a long blood circulation time (serum half-life 11.6 hours) in mice and low accumulation in both the liver and spleen. At 24 hours after systemic administration of ScFvEGFR-IONPs into mice bearing EGFR-positive breast cancer 4T1 mouse mammary tumors, magnetic resonance imaging revealed signal reduction in the tumor as a result of the accumulation of the targeted IONPs.
format Online
Article
Text
id pubmed-3794963
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Dove Medical Press
record_format MEDLINE/PubMed
spelling pubmed-37949632013-10-11 Anti-HER2 antibody and ScFvEGFR-conjugated antifouling magnetic iron oxide nanoparticles for targeting and magnetic resonance imaging of breast cancer Chen, Hongwei Wang, Liya Yu, Qiqi Qian, Weiping Tiwari, Diana Yi, Hong Wang, Andrew Y Huang, Jing Yang, Lily Mao, Hui Int J Nanomedicine Original Research Antifouling magnetic iron oxide nanoparticles (IONPs) coated with block copolymer poly(ethylene oxide)-block-poly(γ-methacryloxypropyltrimethoxysilane) (PEO-b-PγMPS) were investigated for improving cell targeting by reducing nonspecific uptake. Conjugation of a HER2 antibody, Herceptin®, or a single chain fragment (ScFv) of antibody against epidermal growth factor receptor (ScFvEGFR) to PEO-b-PγMPS-coated IONPs resulted in HER2-targeted or EGFR-targeted IONPs (anti-HER2-IONPs or ScFvEGFR-IONPs). The anti-HER2-IONPs bound specifically to SK-BR-3, a HER2-overexpressing breast cancer cell line, but not to MDA-MB-231, a HER2-underexpressing cell line. On the other hand, the ScFvEGFR-IONPs showed strong reactivity with MDA-MB-231, an EGFR-positive human breast cancer cell line, but not with MDA-MB-453, an EGFR-negative human breast cancer cell line. Transmission electron microscopy revealed internalization of the receptor-targeted nanoparticles by the targeted cancer cells. In addition, both antibody-conjugated and non-antibody-conjugated IONPs showed reduced nonspecific uptake by RAW264.7 mouse macrophages in vitro. The developed IONPs showed a long blood circulation time (serum half-life 11.6 hours) in mice and low accumulation in both the liver and spleen. At 24 hours after systemic administration of ScFvEGFR-IONPs into mice bearing EGFR-positive breast cancer 4T1 mouse mammary tumors, magnetic resonance imaging revealed signal reduction in the tumor as a result of the accumulation of the targeted IONPs. Dove Medical Press 2013 2013-10-02 /pmc/articles/PMC3794963/ /pubmed/24124366 http://dx.doi.org/10.2147/IJN.S49069 Text en © 2013 Chen et al. This work is published by Dove Medical Press Ltd, and licensed under Creative Commons Attribution – Non Commercial (unported, v3.0) License The full terms of the License are available at http://creativecommons.org/licenses/by-nc/3.0/. Non-commercial uses of the work are permitted without any further permission from Dove Medical Press Ltd, provided the work is properly attributed.
spellingShingle Original Research
Chen, Hongwei
Wang, Liya
Yu, Qiqi
Qian, Weiping
Tiwari, Diana
Yi, Hong
Wang, Andrew Y
Huang, Jing
Yang, Lily
Mao, Hui
Anti-HER2 antibody and ScFvEGFR-conjugated antifouling magnetic iron oxide nanoparticles for targeting and magnetic resonance imaging of breast cancer
title Anti-HER2 antibody and ScFvEGFR-conjugated antifouling magnetic iron oxide nanoparticles for targeting and magnetic resonance imaging of breast cancer
title_full Anti-HER2 antibody and ScFvEGFR-conjugated antifouling magnetic iron oxide nanoparticles for targeting and magnetic resonance imaging of breast cancer
title_fullStr Anti-HER2 antibody and ScFvEGFR-conjugated antifouling magnetic iron oxide nanoparticles for targeting and magnetic resonance imaging of breast cancer
title_full_unstemmed Anti-HER2 antibody and ScFvEGFR-conjugated antifouling magnetic iron oxide nanoparticles for targeting and magnetic resonance imaging of breast cancer
title_short Anti-HER2 antibody and ScFvEGFR-conjugated antifouling magnetic iron oxide nanoparticles for targeting and magnetic resonance imaging of breast cancer
title_sort anti-her2 antibody and scfvegfr-conjugated antifouling magnetic iron oxide nanoparticles for targeting and magnetic resonance imaging of breast cancer
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3794963/
https://www.ncbi.nlm.nih.gov/pubmed/24124366
http://dx.doi.org/10.2147/IJN.S49069
work_keys_str_mv AT chenhongwei antiher2antibodyandscfvegfrconjugatedantifoulingmagneticironoxidenanoparticlesfortargetingandmagneticresonanceimagingofbreastcancer
AT wangliya antiher2antibodyandscfvegfrconjugatedantifoulingmagneticironoxidenanoparticlesfortargetingandmagneticresonanceimagingofbreastcancer
AT yuqiqi antiher2antibodyandscfvegfrconjugatedantifoulingmagneticironoxidenanoparticlesfortargetingandmagneticresonanceimagingofbreastcancer
AT qianweiping antiher2antibodyandscfvegfrconjugatedantifoulingmagneticironoxidenanoparticlesfortargetingandmagneticresonanceimagingofbreastcancer
AT tiwaridiana antiher2antibodyandscfvegfrconjugatedantifoulingmagneticironoxidenanoparticlesfortargetingandmagneticresonanceimagingofbreastcancer
AT yihong antiher2antibodyandscfvegfrconjugatedantifoulingmagneticironoxidenanoparticlesfortargetingandmagneticresonanceimagingofbreastcancer
AT wangandrewy antiher2antibodyandscfvegfrconjugatedantifoulingmagneticironoxidenanoparticlesfortargetingandmagneticresonanceimagingofbreastcancer
AT huangjing antiher2antibodyandscfvegfrconjugatedantifoulingmagneticironoxidenanoparticlesfortargetingandmagneticresonanceimagingofbreastcancer
AT yanglily antiher2antibodyandscfvegfrconjugatedantifoulingmagneticironoxidenanoparticlesfortargetingandmagneticresonanceimagingofbreastcancer
AT maohui antiher2antibodyandscfvegfrconjugatedantifoulingmagneticironoxidenanoparticlesfortargetingandmagneticresonanceimagingofbreastcancer