Literature DB >> 23465830

Imaging specificity of MR-optical imaging agents following the masking of surface charge by poly(ethylene glycol).

Shou-Cheng Wu1, Kun-Liang Lin1, Tzu-Pin Wang2, Shey-Cherng Tzou1, Gyan Singh1, Ming-Hung Chen1, Tian-Lu Cheng3, Chiao-Yun Chen4, Gin-Chung Liu4, Te-Wei Lee5, Shao-Hwa Hu6, Yun-Ming Wang7.   

Abstract

The coupling of specific antibodies to imaging agents often improves imaging specificity. However, free amine groups designed for the coupling can cause nonspecific binding of the imaging agents. We report here development of a nanocarrier, MnMEIO-silane-NH2-mPEG nanoparticles (NPs), consisting of a manganese-doped iron oxide nanoparticle core (MnMEIO), a copolymer shell of silane and amine-functionalized poly(ethylene glycol) (silane-EA-mPEG). The key feature in MnMEIO-silane-NH2-mPEG is the flexible PEG, which masks the non-conjugated reactive amine groups (-NH2 ↔ -NH3(+)) and reduces nonspecific binding of MnMEIO-silane-NH2-mPEG to cells. The amine groups on MnMEIO-silane-NH2-mPEG were conjugated with the fluorescent dye, Cy777 or antibodies [Erbitux (Erb)] to form a MR-optical imaging contrast agent (MnMEIO-silane-NH2-(Erb)-mPEG) for EGFR-expressing tumors. Confocal microscopic and flow cytometric analyses showed that MnMEIO-silane-NH2-(Erb)-mPEG displayed low nonspecific binding. Moreover, TEM images showed that MnMEIO-silane-NH2-(Erb)-mPEG were endocytosed by EGFR-expressing cells. In line with their EGFR expression levels, A431, PC-3, and Colo-205 tumors treated with MnMEIO-silane-NH2-(Erb)-mPEG NPs showed -97.1%, -49.7%, and -2.8% contrast enhancement, respectively, in in vitro T2-weighted MR imaging. In vivo T2-weighted MR imaging and optical images showed that MnMEIO-silane-NH2-(Erb)-mPEG could specifically and effectively target to EGFR-expressing tumors in nude mice; the relative contrast enhancements were 7.94 (at 2 h) and 7.59 (at 24 h) fold higher in A431 tumors as compared to the EGFR-negative Colo-205 tumors. On the contrary, MnMEIO-silane-NH2-(Erb) NPs showed only 1.44 (at 2 h) and 1.52 (at 24 h) fold higher in EGFR-positive tumors as compared to the EGFR-negative tumors. Finally, antibodies can be readily changed to allow imaging of other tumors bearing different antigens. These data indicate that masking surface charges on contrast agents is a useful strategy to improve imaging efficacy.
Copyright © 2013 Elsevier Ltd. All rights reserved.

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Year:  2013        PMID: 23465830     DOI: 10.1016/j.biomaterials.2013.02.025

Source DB:  PubMed          Journal:  Biomaterials        ISSN: 0142-9612            Impact factor:   12.479


  4 in total

1.  Magnetic Resonance Imaging of Transplanted Porcine Neonatal Pancreatic Cell Clusters Labeled with Exendin-4-Conjugated Manganese Magnetism-Engineered Iron Oxide Nanoparticles.

Authors:  Jyuhn-Huarng Juang; Jiun-Jie Wang; Chia-Rui Shen; Sung-Han Lin; Chen-Yi Chen; Chen-Wei Kao; Chen-Ling Chen; Shu-Ting Wu; Zei-Tsan Tsai; Yun-Ming Wang
Journal:  Nanomaterials (Basel)       Date:  2022-04-05       Impact factor: 5.076

2.  PEGylation of concanavalin A to improve its stability for an in vivo glucose sensing assay.

Authors:  Andrea K Locke; Brian M Cummins; Alexander A Abraham; Gerard L Coté
Journal:  Anal Chem       Date:  2014-08-27       Impact factor: 6.986

3.  Bispecific Antibody Conjugated Manganese-Based Magnetic Engineered Iron Oxide for Imaging of HER2/neu- and EGFR-Expressing Tumors.

Authors:  Shou-Cheng Wu; Yu-Jen Chen; Hsiang-Ching Wang; Min-Yuan Chou; Teng-Yuan Chang; Shyng-Shiou Yuan; Chiao-Yun Chen; Ming-Feng Hou; John Tsu-An Hsu; Yun-Ming Wang
Journal:  Theranostics       Date:  2016-01-01       Impact factor: 11.556

Review 4.  Application prospective of nanoprobes with MRI and FI dual-modality imaging on breast cancer stem cells in tumor.

Authors:  Hetao Chen; Yu Wang; Tong Wang; Dongxing Shi; Zengrong Sun; Chunhui Xia; Baiqi Wang
Journal:  J Nanobiotechnology       Date:  2016-06-23       Impact factor: 10.435

  4 in total

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