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Imaging atherosclerotic plaques by targeting Galectin-3 and activated macrophages using ((89)Zr)-DFO- Galectin3-F(ab')(2) mAb

Rationale: The high expression of Galectin-3 (Gal3) in macrophages of atherosclerotic plaques suggests its participation in atherosclerosis pathogenesis, and raises the possibility to use it as a target to image disease severity in vivo. Here, we explored the feasibility of tracking atherosclerosis...

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Autores principales: Varasteh, Zohreh, De Rose, Francesco, Mohanta, Sarajo, Li, Yuanfang, Zhang, Xi, Miritsch, Benedikt, Scafetta, Giorgia, Yin, Changjun, Sager, Hendrik B., Glasl, Sarah, Gorpas, Dimitris, Habenicht, Andreas J.R., Ntziachristos, Vasilis, Weber, Wolfgang A., Bartolazzi, Armando, Schwaiger, Markus, D'Alessandria, Calogero
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7778602/
https://www.ncbi.nlm.nih.gov/pubmed/33408786
http://dx.doi.org/10.7150/thno.50247
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author Varasteh, Zohreh
De Rose, Francesco
Mohanta, Sarajo
Li, Yuanfang
Zhang, Xi
Miritsch, Benedikt
Scafetta, Giorgia
Yin, Changjun
Sager, Hendrik B.
Glasl, Sarah
Gorpas, Dimitris
Habenicht, Andreas J.R.
Ntziachristos, Vasilis
Weber, Wolfgang A.
Bartolazzi, Armando
Schwaiger, Markus
D'Alessandria, Calogero
author_facet Varasteh, Zohreh
De Rose, Francesco
Mohanta, Sarajo
Li, Yuanfang
Zhang, Xi
Miritsch, Benedikt
Scafetta, Giorgia
Yin, Changjun
Sager, Hendrik B.
Glasl, Sarah
Gorpas, Dimitris
Habenicht, Andreas J.R.
Ntziachristos, Vasilis
Weber, Wolfgang A.
Bartolazzi, Armando
Schwaiger, Markus
D'Alessandria, Calogero
author_sort Varasteh, Zohreh
collection PubMed
description Rationale: The high expression of Galectin-3 (Gal3) in macrophages of atherosclerotic plaques suggests its participation in atherosclerosis pathogenesis, and raises the possibility to use it as a target to image disease severity in vivo. Here, we explored the feasibility of tracking atherosclerosis by targeting Gal3 expression in plaques of apolipoprotein E knockout (ApoE-KO) mice via PET imaging. Methods: Targeting of Gal3 in M0-, M1- and M2 (M2a/M2c)-polarized macrophages was assessed in vitro using a Gal3-F(ab')(2) mAb labeled with AlexaFluor®488 and (89)Zr- desferrioxamine-thioureyl-phenyl-isothiocyanate (DFO). To visualize plaques in vivo, ApoE-KO mice were injected i.v. with (89)Zr-DFO-Gal3-F(ab')(2) mAb and imaged via PET/CT 48 h post injection. Whole length aortas harvested from euthanized mice were processed for Sudan-IV staining, autoradiography, and immunostaining for Gal3, CD68 and α-SMA expression. To confirm accumulation of the tracer in plaques, ApoE-KO mice were injected i.v. with Cy5.5-Gal3-F(ab')(2) mAb, euthanized 48 h post injection, followed by cryosections of the body and acquisition of fluorescent images. To explore the clinical potential of this imaging modality, immunostaining for Gal3, CD68 and α-SMA expression were carried out in human plaques. Single cell RNA sequencing (scRNA-Seq) analyses were performed to measure LGALS3 (i.e. a synonym for Gal3) gene expression in each macrophage of several subtypes present in murine or human plaques. Results: Preferential binding to M2 macrophages was observed with both AlexaFluor®488-Gal3-F(ab')(2) and (89)Zr-DFO-Gal3-F(ab')(2) mAbs. Focal and specific (89)Zr-DFO-Gal3-F(ab')(2) mAb uptake was detected in plaques of ApoE-KO mice by PET/CT. Autoradiography and immunohistochemical analyses of aortas confirmed the expression of Gal3 within plaques mainly in macrophages. Moreover, a specific fluorescent signal was visualized within the lesions of vascular structures burdened by plaques in mice. Gal3 expression in human plaques showed similar Gal3 expression patterns when compared to their murine counterparts. Conclusions: Our data reveal that (89)Zr-DFO-Gal3-F(ab')(2) mAb PET/CT is a potentially novel tool to image atherosclerotic plaques at different stages of development, allowing knowledge-based tailored individual intervention in clinically significant disease.
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spelling pubmed-77786022021-01-05 Imaging atherosclerotic plaques by targeting Galectin-3 and activated macrophages using ((89)Zr)-DFO- Galectin3-F(ab')(2) mAb Varasteh, Zohreh De Rose, Francesco Mohanta, Sarajo Li, Yuanfang Zhang, Xi Miritsch, Benedikt Scafetta, Giorgia Yin, Changjun Sager, Hendrik B. Glasl, Sarah Gorpas, Dimitris Habenicht, Andreas J.R. Ntziachristos, Vasilis Weber, Wolfgang A. Bartolazzi, Armando Schwaiger, Markus D'Alessandria, Calogero Theranostics Research Paper Rationale: The high expression of Galectin-3 (Gal3) in macrophages of atherosclerotic plaques suggests its participation in atherosclerosis pathogenesis, and raises the possibility to use it as a target to image disease severity in vivo. Here, we explored the feasibility of tracking atherosclerosis by targeting Gal3 expression in plaques of apolipoprotein E knockout (ApoE-KO) mice via PET imaging. Methods: Targeting of Gal3 in M0-, M1- and M2 (M2a/M2c)-polarized macrophages was assessed in vitro using a Gal3-F(ab')(2) mAb labeled with AlexaFluor®488 and (89)Zr- desferrioxamine-thioureyl-phenyl-isothiocyanate (DFO). To visualize plaques in vivo, ApoE-KO mice were injected i.v. with (89)Zr-DFO-Gal3-F(ab')(2) mAb and imaged via PET/CT 48 h post injection. Whole length aortas harvested from euthanized mice were processed for Sudan-IV staining, autoradiography, and immunostaining for Gal3, CD68 and α-SMA expression. To confirm accumulation of the tracer in plaques, ApoE-KO mice were injected i.v. with Cy5.5-Gal3-F(ab')(2) mAb, euthanized 48 h post injection, followed by cryosections of the body and acquisition of fluorescent images. To explore the clinical potential of this imaging modality, immunostaining for Gal3, CD68 and α-SMA expression were carried out in human plaques. Single cell RNA sequencing (scRNA-Seq) analyses were performed to measure LGALS3 (i.e. a synonym for Gal3) gene expression in each macrophage of several subtypes present in murine or human plaques. Results: Preferential binding to M2 macrophages was observed with both AlexaFluor®488-Gal3-F(ab')(2) and (89)Zr-DFO-Gal3-F(ab')(2) mAbs. Focal and specific (89)Zr-DFO-Gal3-F(ab')(2) mAb uptake was detected in plaques of ApoE-KO mice by PET/CT. Autoradiography and immunohistochemical analyses of aortas confirmed the expression of Gal3 within plaques mainly in macrophages. Moreover, a specific fluorescent signal was visualized within the lesions of vascular structures burdened by plaques in mice. Gal3 expression in human plaques showed similar Gal3 expression patterns when compared to their murine counterparts. Conclusions: Our data reveal that (89)Zr-DFO-Gal3-F(ab')(2) mAb PET/CT is a potentially novel tool to image atherosclerotic plaques at different stages of development, allowing knowledge-based tailored individual intervention in clinically significant disease. Ivyspring International Publisher 2021-01-01 /pmc/articles/PMC7778602/ /pubmed/33408786 http://dx.doi.org/10.7150/thno.50247 Text en © The author(s) This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Varasteh, Zohreh
De Rose, Francesco
Mohanta, Sarajo
Li, Yuanfang
Zhang, Xi
Miritsch, Benedikt
Scafetta, Giorgia
Yin, Changjun
Sager, Hendrik B.
Glasl, Sarah
Gorpas, Dimitris
Habenicht, Andreas J.R.
Ntziachristos, Vasilis
Weber, Wolfgang A.
Bartolazzi, Armando
Schwaiger, Markus
D'Alessandria, Calogero
Imaging atherosclerotic plaques by targeting Galectin-3 and activated macrophages using ((89)Zr)-DFO- Galectin3-F(ab')(2) mAb
title Imaging atherosclerotic plaques by targeting Galectin-3 and activated macrophages using ((89)Zr)-DFO- Galectin3-F(ab')(2) mAb
title_full Imaging atherosclerotic plaques by targeting Galectin-3 and activated macrophages using ((89)Zr)-DFO- Galectin3-F(ab')(2) mAb
title_fullStr Imaging atherosclerotic plaques by targeting Galectin-3 and activated macrophages using ((89)Zr)-DFO- Galectin3-F(ab')(2) mAb
title_full_unstemmed Imaging atherosclerotic plaques by targeting Galectin-3 and activated macrophages using ((89)Zr)-DFO- Galectin3-F(ab')(2) mAb
title_short Imaging atherosclerotic plaques by targeting Galectin-3 and activated macrophages using ((89)Zr)-DFO- Galectin3-F(ab')(2) mAb
title_sort imaging atherosclerotic plaques by targeting galectin-3 and activated macrophages using ((89)zr)-dfo- galectin3-f(ab')(2) mab
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7778602/
https://www.ncbi.nlm.nih.gov/pubmed/33408786
http://dx.doi.org/10.7150/thno.50247
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