Literature DB >> 24972112

Gallium-68-labeled affibody molecule for PET imaging of PDGFRβ expression in vivo.

Joanna Strand1, Zohreh Varasteh, Olof Eriksson, Lars Abrahmsen, Anna Orlova, Vladimir Tolmachev.   

Abstract

Platelet-derived growth factor receptor β (PDGFRβ) is a transmembrane tyrosine kinase receptor involved, for example, in angiogenesis. Overexpression and excessive signaling of PDGFRβ has been observed in multiple malignant tumors and fibrotic diseases, making this receptor a pharmaceutical target for monoclonal antibodies and tyrosine kinase inhibitors. Successful targeted therapy requires identification of responding patients. Radionuclide molecular imaging would enable determination of the PDGFRβ status in all lesions using a single noninvasive repeatable procedure. Recently, we have demonstrated that the affibody molecule Z09591 labeled with (111)In can specifically target PDGFRβ-expressing tumors in vivo. The use of positron emission tomography (PET) as an imaging technique would provide superior resolution, sensitivity, and quantitation accuracy. In this study, a DOTA-conjugated Z09591 was labeled with the generator-produced positron emitting radionuclide (68)Ga (T1/2 = 67.6 min, Eβ + max = 1899 keV, 89% β(+)). (68)Ga-DOTA-Z09591 retained the capacity to specifically bind to PDGFRβ-expressing U-87 MG glioma cells. The half-maximum inhibition concentration (IC50) of (68)Ga-DOTA-Z09591 (6.6 ± 1.4 nM) was somewhat higher than that of (111)In-DOTA-Z09591 (1.4 ± 1.2 nM). (68)Ga-DOTA-Z09591 demonstrated specific (saturable) targeting of U-87 MG xenografts in immunodeficient mice. The tumor uptake at 2 h after injection was 3.7 ± 1.7% IA/g, which provided a tumor-to-blood ratio of 8.0 ± 3.1. The only organ with higher accumulation of radioactivity was the kidney. MicroPET imaging provided high-contrast imaging of U-87 MG xenografts. In conclusion, the (68)Ga-labeled affibody molecule Z09591 is a promising candidate for further development as a probe for imaging PDGFRβ expression in vivo using PET.

Entities:  

Keywords:  DPTA; PDGFR beta; PET; affibody molecule; gallium-68

Mesh:

Substances:

Year:  2014        PMID: 24972112     DOI: 10.1021/mp500284t

Source DB:  PubMed          Journal:  Mol Pharm        ISSN: 1543-8384            Impact factor:   4.939


  20 in total

Review 1.  In vivo imaging with antibodies and engineered fragments.

Authors:  Amanda C Freise; Anna M Wu
Journal:  Mol Immunol       Date:  2015-04-28       Impact factor: 4.407

2.  Dysregulated integrin αVβ3 and CD47 signaling promotes joint inflammation, cartilage breakdown, and progression of osteoarthritis.

Authors:  Qian Wang; Kazuhiro Onuma; Changhao Liu; Heidi Wong; Michelle S Bloom; Eileen E Elliott; Richard Rl Cao; Nick Hu; Nithya Lingampalli; Orr Sharpe; Xiaoyan Zhao; Dong Hyun Sohn; Christin M Lepus; Jeremy Sokolove; Rong Mao; Cecilia T Cisar; Harini Raghu; Constance R Chu; Nicholas J Giori; Stephen B Willingham; Susan S Prohaska; Zhen Cheng; Irving L Weissman; William H Robinson
Journal:  JCI Insight       Date:  2019-09-19

Review 3.  Aptamer-Functionalized Nanoparticles as "Smart Bombs": The Unrealized Potential for Personalized Medicine and Targeted Cancer Treatment.

Authors:  Gregory Benedetto; C Greer Vestal; Christine Richardson
Journal:  Target Oncol       Date:  2015-12       Impact factor: 4.493

Review 4.  ImmunoPET: Antibody-Based PET Imaging in Solid Tumors.

Authors:  Reyhaneh Manafi-Farid; Bahar Ataeinia; Shaghayegh Ranjbar; Zahra Jamshidi Araghi; Mohammad Mobin Moradi; Christian Pirich; Mohsen Beheshti
Journal:  Front Med (Lausanne)       Date:  2022-06-28

5.  ImmunoPET: Concept, Design, and Applications.

Authors:  Weijun Wei; Zachary T Rosenkrans; Jianjun Liu; Gang Huang; Quan-Yong Luo; Weibo Cai
Journal:  Chem Rev       Date:  2020-03-23       Impact factor: 60.622

6.  Fibroblast activation protein identifies Consensus Molecular Subtype 4 in colorectal cancer and allows its detection by 68Ga-FAPI-PET imaging.

Authors:  Esther Strating; Emma Wassenaar; Mathijs Verhagen; Paulien Rauwerdink; Susanne van Schelven; Ignace de Hingh; Inne Borel Rinkes; Djamila Boerma; Arjen Witkamp; Miangela Lacle; Riccardo Fodde; Richard Volckmann; Jan Koster; Kris Stedingk; Frederik Giesel; Remmert de Roos; Alex Poot; Guus Bol; Marnix Lam; Sjoerd Elias; Onno Kranenburg
Journal:  Br J Cancer       Date:  2022-03-16       Impact factor: 9.075

7.  Site-Specific Radioiodination of HER2-Targeting Affibody Molecules using 4-Iodophenethylmaleimide Decreases Renal Uptake of Radioactivity.

Authors:  Joanna Strand; Patrik Nordeman; Hadis Honarvar; Mohamed Altai; Anna Orlova; Mats Larhed; Vladimir Tolmachev
Journal:  ChemistryOpen       Date:  2015-01-12       Impact factor: 2.911

8.  Comparative Evaluation of Anti-HER2 Affibody Molecules Labeled with 64Cu Using NOTA and NODAGA.

Authors:  Vladimir Tolmachev; Cheng-Bin Yim; Johan Rajander; Anna Perols; Amelie Eriksson Karlström; Merja Haaparanta-Solin; Tove J Grönroos; Olof Solin; Anna Orlova
Journal:  Contrast Media Mol Imaging       Date:  2017-02-28       Impact factor: 3.161

Review 9.  Stromal Targets for Fluorescent-Guided Oncologic Surgery.

Authors:  Martin C Boonstra; Jai Prakash; Cornelis J H Van De Velde; Wilma E Mesker; Peter J K Kuppen; Alexander L Vahrmeijer; Cornelis F M Sier
Journal:  Front Oncol       Date:  2015-11-20       Impact factor: 6.244

10.  PET imaging of epidermal growth factor receptor expression in tumours using 89Zr-labelled ZEGFR:2377 affibody molecules.

Authors:  Javad Garousi; Ken G Andersson; Bogdan Mitran; Marie-Louise Pichl; Stefan Ståhl; Anna Orlova; John Löfblom; Vladimir Tolmachev
Journal:  Int J Oncol       Date:  2016-02-02       Impact factor: 5.650

View more

北京卡尤迪生物科技股份有限公司 © 2022-2023.