Indirect Radioiodination of DARPin G3 Using N-succinimidyl-<i>Para</i>-Iodobenzoate Improves the Contrast of HER2 Molecular Imaging

Radionuclide molecular imaging of human epidermal growth factor receptor 2 (HER2) in breast and gastroesophageal cancer might be used to stratify patients for HER2-targeted therapy as well as monitor treatment response and disease progression. Designed ankyrin repeat proteins (DARPins) are small eng...

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Main Authors: Anzhelika Vorobyeva, Alexey Schulga, Sara S. Rinne, Tyran Günther, Anna Orlova, Sergey Deyev, Vladimir Tolmachev
Format: Article
Language:English
Published: MDPI AG 2019-06-01
Series:International Journal of Molecular Sciences
Subjects:
Online Access:https://www.mdpi.com/1422-0067/20/12/3047
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spelling doaj-8eb568dbecfb42d9b3b76705b68a31152020-11-24T20:57:57ZengMDPI AGInternational Journal of Molecular Sciences1422-00672019-06-012012304710.3390/ijms20123047ijms20123047Indirect Radioiodination of DARPin G3 Using N-succinimidyl-<i>Para</i>-Iodobenzoate Improves the Contrast of HER2 Molecular ImagingAnzhelika Vorobyeva0Alexey Schulga1Sara S. Rinne2Tyran Günther3Anna Orlova4Sergey Deyev5Vladimir Tolmachev6Department of Immunology, Genetics and Pathology, Uppsala University, 75185 Uppsala, SwedenMolecular Immunology Laboratory, Shemyakin &amp; Ovchinnikov Institute of Bioorganic Chemistry, Russian Academy of Sciences, 117997 Moscow, RussiaDepartment of Medicinal Chemistry, Uppsala University, 75123 Uppsala, SwedenDepartment of Immunology, Genetics and Pathology, Uppsala University, 75185 Uppsala, SwedenDepartment of Medicinal Chemistry, Uppsala University, 75123 Uppsala, SwedenMolecular Immunology Laboratory, Shemyakin &amp; Ovchinnikov Institute of Bioorganic Chemistry, Russian Academy of Sciences, 117997 Moscow, RussiaDepartment of Immunology, Genetics and Pathology, Uppsala University, 75185 Uppsala, SwedenRadionuclide molecular imaging of human epidermal growth factor receptor 2 (HER2) in breast and gastroesophageal cancer might be used to stratify patients for HER2-targeted therapy as well as monitor treatment response and disease progression. Designed ankyrin repeat proteins (DARPins) are small engineered scaffold proteins with favorable properties for molecular imaging. Herein we compared two methods for labeling the anti-HER2 DARPin (HE)<sub>3</sub>-G3, direct and indirect radioiodination. We hypothesized that the use of N-succinimidyl-<i>para</i>-iodobenzoate (SPIB) for radioiodination would facilitate the clearance of radiometabolites and improve the contrast of imaging. Both radiolabeled (HE)<sub>3</sub>-G3 variants preserved their binding specificity and high affinity to HER2-expressing cells. The specificity of tumor targeting in vivo was also demonstrated. A biodistribution comparison of [<sup>125</sup>I]I-(HE)<sub>3</sub>-G3 and [<sup>125</sup>I]I-PIB-(HE)<sub>3</sub>-G3, in mice bearing HER2 expressing SKOV3 xenografts, showed rapid clearance of [<sup>125</sup>I]I-PIB-(HE)<sub>3</sub>-G3 from normal organs and tissues and low accumulation of activity in organs with NaI-symporter expression. Both radiolabeled (HE)<sub>3</sub>-G3 variants had equal tumor uptake. Consequently, the indirect label provided higher tumor-to-blood and tumor-to-organ ratios compared with the direct label. Comparative Single Photon Emission Computed Tomography (SPECT)/CT imaging of HER2 expression in SKOV3 xenografts, using both radiolabeled DARPins, demonstrated the superior imaging contrast of the indirect label. Indirect radioiodination of (HE)<sub>3</sub>-G3 using SPIB could be further applied for SPECT and PET imaging with iodine-123 and iodine-124.https://www.mdpi.com/1422-0067/20/12/3047DARPinHER2imagingradionuclideiodineradioiodination
collection DOAJ
language English
format Article
sources DOAJ
author Anzhelika Vorobyeva
Alexey Schulga
Sara S. Rinne
Tyran Günther
Anna Orlova
Sergey Deyev
Vladimir Tolmachev
spellingShingle Anzhelika Vorobyeva
Alexey Schulga
Sara S. Rinne
Tyran Günther
Anna Orlova
Sergey Deyev
Vladimir Tolmachev
Indirect Radioiodination of DARPin G3 Using N-succinimidyl-<i>Para</i>-Iodobenzoate Improves the Contrast of HER2 Molecular Imaging
International Journal of Molecular Sciences
DARPin
HER2
imaging
radionuclide
iodine
radioiodination
author_facet Anzhelika Vorobyeva
Alexey Schulga
Sara S. Rinne
Tyran Günther
Anna Orlova
Sergey Deyev
Vladimir Tolmachev
author_sort Anzhelika Vorobyeva
title Indirect Radioiodination of DARPin G3 Using N-succinimidyl-<i>Para</i>-Iodobenzoate Improves the Contrast of HER2 Molecular Imaging
title_short Indirect Radioiodination of DARPin G3 Using N-succinimidyl-<i>Para</i>-Iodobenzoate Improves the Contrast of HER2 Molecular Imaging
title_full Indirect Radioiodination of DARPin G3 Using N-succinimidyl-<i>Para</i>-Iodobenzoate Improves the Contrast of HER2 Molecular Imaging
title_fullStr Indirect Radioiodination of DARPin G3 Using N-succinimidyl-<i>Para</i>-Iodobenzoate Improves the Contrast of HER2 Molecular Imaging
title_full_unstemmed Indirect Radioiodination of DARPin G3 Using N-succinimidyl-<i>Para</i>-Iodobenzoate Improves the Contrast of HER2 Molecular Imaging
title_sort indirect radioiodination of darpin g3 using n-succinimidyl-<i>para</i>-iodobenzoate improves the contrast of her2 molecular imaging
publisher MDPI AG
series International Journal of Molecular Sciences
issn 1422-0067
publishDate 2019-06-01
description Radionuclide molecular imaging of human epidermal growth factor receptor 2 (HER2) in breast and gastroesophageal cancer might be used to stratify patients for HER2-targeted therapy as well as monitor treatment response and disease progression. Designed ankyrin repeat proteins (DARPins) are small engineered scaffold proteins with favorable properties for molecular imaging. Herein we compared two methods for labeling the anti-HER2 DARPin (HE)<sub>3</sub>-G3, direct and indirect radioiodination. We hypothesized that the use of N-succinimidyl-<i>para</i>-iodobenzoate (SPIB) for radioiodination would facilitate the clearance of radiometabolites and improve the contrast of imaging. Both radiolabeled (HE)<sub>3</sub>-G3 variants preserved their binding specificity and high affinity to HER2-expressing cells. The specificity of tumor targeting in vivo was also demonstrated. A biodistribution comparison of [<sup>125</sup>I]I-(HE)<sub>3</sub>-G3 and [<sup>125</sup>I]I-PIB-(HE)<sub>3</sub>-G3, in mice bearing HER2 expressing SKOV3 xenografts, showed rapid clearance of [<sup>125</sup>I]I-PIB-(HE)<sub>3</sub>-G3 from normal organs and tissues and low accumulation of activity in organs with NaI-symporter expression. Both radiolabeled (HE)<sub>3</sub>-G3 variants had equal tumor uptake. Consequently, the indirect label provided higher tumor-to-blood and tumor-to-organ ratios compared with the direct label. Comparative Single Photon Emission Computed Tomography (SPECT)/CT imaging of HER2 expression in SKOV3 xenografts, using both radiolabeled DARPins, demonstrated the superior imaging contrast of the indirect label. Indirect radioiodination of (HE)<sub>3</sub>-G3 using SPIB could be further applied for SPECT and PET imaging with iodine-123 and iodine-124.
topic DARPin
HER2
imaging
radionuclide
iodine
radioiodination
url https://www.mdpi.com/1422-0067/20/12/3047
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