Literature DB >> 32197571

A Systematic Evaluation of Antibody Modification and 89Zr-Radiolabeling for Optimized Immuno-PET.

Sai Kiran Sharma1, Jonathan M Glaser1, Kimberly J Edwards1, Elaheh Khozeimeh Sarbisheh2, Akam K Salih2, Jason S Lewis1,3,4,5,6, Eric W Price2.   

Abstract

Immuno-PET using desferrioxamine (DFO)-conjugated zirconium-89 ([89Zr]Zr4+)-labeled antibodies is a powerful tool used for preclinical and clinical molecular imaging. However, a comprehensive study evaluating the variables involved in DFO-conjugation and 89Zr-radiolabeling of antibodies and their impact on the in vitro and in vivo behavior of the resulting radioimmunoconjugates has not been adequately performed. Here, we synthesized different DFO-conjugates of the HER2-targeting antibody (Ab)-trastuzumab, dubbed T5, T10, T20, T60, and T200-to indicate the molar equivalents of DFO used for bioconjugation. Next we radiolabeled the immunoconjugates with ([89Zr]Zr4+) under a comprehensive set of reaction conditions including different buffers (PBS, chelexed-PBS, TRIS/HCl, HEPES; ± radioprotectants), different reaction volumes (0.1-1 mL), variable amounts of DFO-conjugated Ab (5, 25, 50 μg), and radioactivity (0.2-1.0 mCi; 7.4-37 MBq). We evaluated the effects of these variables on radiochemical yield (RCY), molar activity (Am)/specific activity (As), immunoreactive fraction, and ultimately the in vivo biodistribution profile and tumor targeting ability of the trastuzumab radioimmunoconjugates. We show that increasing the degree of DFO conjugation to trastuzumab increased the RCY (∼90%) and Am/As (∼194 MBq/nmol; 35 mCi/mg) but decreased the HER2-binding affinity (3.5×-4.6×) and the immunoreactive fraction of trastuzumab down to 50-64%, which translated to dramatically inferior in vivo performance of the radioimmunoconjugate. Cell-based immunoreactivity assays and standard binding affinity analyses using surface plasmon resonance (SPR) did not predict the poor in vivo performance of the most extreme T200 conjugate. However, SPR-based concentration free calibration analysis yielded active antibody concentration and was predictive of the in vivo trends. Positron emission tomography (PET) imaging and biodistribution studies in a HER2-positive xenograft model revealed activity concentrations of 38.7 ± 3.8 %ID/g in the tumor and 6.3 ± 4.1 %ID/g in the liver for ([89Zr]Zr4+)-T5 (∼1.4 ± 0.5 DFOs/Ab) at 120 h after injection of the radioimmunoconjugates. On the other hand, ([89Zr]Zr4+)-T200 (10.9 ± 0.7 DFOs/Ab) yielded 16.2 ± 3.2 %ID/g in the tumor versus 27.5 ± 4.1 %ID/g in the liver. Collectively, our findings suggest that synthesizing trastuzumab immunoconjugates bearing 1-3 DFOs per Ab (T5 and T10) combined with radiolabeling performed in low reaction volumes using Chelex treated PBS or HEPEs without a radioprotectant provided radioimmunoconjugates having high Am/As (97 MBq/nmol; 17.5 ± 2.2 mCi/mg), highly preserved immunoreactive fractions (86-93%), and favorable in vivo biodistribution profile with excellent tumor uptake.

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Year:  2020        PMID: 32197571      PMCID: PMC9423892          DOI: 10.1021/acs.bioconjchem.0c00087

Source DB:  PubMed          Journal:  Bioconjug Chem        ISSN: 1043-1802            Impact factor:   6.069


  39 in total

1.  An octadentate bifunctional chelating agent for the development of stable zirconium-89 based molecular imaging probes.

Authors:  Malay Patra; Andreas Bauman; Cristina Mari; Christiane A Fischer; Olivier Blacque; Daniel Häussinger; Gilles Gasser; Thomas L Mindt
Journal:  Chem Commun (Camb)       Date:  2014-10-09       Impact factor: 6.222

2.  Scaling-down antibody radiolabeling reactions with zirconium-89.

Authors:  James C Knight; Stephen J Paisey; Adam M Dabkowski; Cristina Marculescu; Anwen S Williams; Christopher Marshall; Bart Cornelissen
Journal:  Dalton Trans       Date:  2016-04-21       Impact factor: 4.390

3.  Determination of the immunoreactive fraction of radiolabeled monoclonal antibodies by linear extrapolation to binding at infinite antigen excess.

Authors:  T Lindmo; E Boven; F Cuttitta; J Fedorko; P A Bunn
Journal:  J Immunol Methods       Date:  1984-08-03       Impact factor: 2.303

4.  89Zr-Trastuzumab PET/CT for Detection of Human Epidermal Growth Factor Receptor 2-Positive Metastases in Patients With Human Epidermal Growth Factor Receptor 2-Negative Primary Breast Cancer.

Authors:  Gary A Ulaner; David M Hyman; Serge K Lyashchenko; Jason S Lewis; Jorge A Carrasquillo
Journal:  Clin Nucl Med       Date:  2017-12       Impact factor: 7.794

5.  H(4)octapa-trastuzumab: versatile acyclic chelate system for 111In and 177Lu imaging and therapy.

Authors:  Eric W Price; Brian M Zeglis; Jacqueline F Cawthray; Caterina F Ramogida; Nicholas Ramos; Jason S Lewis; Michael J Adam; Chris Orvig
Journal:  J Am Chem Soc       Date:  2013-08-15       Impact factor: 15.419

6.  A comprehensively revised strategy that improves the specific activity and long-term stability of clinically relevant 89Zr-immuno-PET agents.

Authors:  Nikunj B Bhatt; Darpan N Pandya; Stephanie Rideout-Danner; Howard D Gage; Frank C Marini; Thaddeus J Wadas
Journal:  Dalton Trans       Date:  2018-09-04       Impact factor: 4.390

7.  A pretargeted PET imaging strategy based on bioorthogonal Diels-Alder click chemistry.

Authors:  Brian M Zeglis; Kuntal K Sevak; Thomas Reiner; Priya Mohindra; Sean D Carlin; Pat Zanzonico; Ralph Weissleder; Jason S Lewis
Journal:  J Nucl Med       Date:  2013-05-24       Impact factor: 10.057

8.  Enzyme-mediated methodology for the site-specific radiolabeling of antibodies based on catalyst-free click chemistry.

Authors:  Brian M Zeglis; Charles B Davis; Robert Aggeler; Hee Chol Kang; Aimei Chen; Brian J Agnew; Jason S Lewis
Journal:  Bioconjug Chem       Date:  2013-05-30       Impact factor: 4.774

9.  Site-specifically labeled CA19.9-targeted immunoconjugates for the PET, NIRF, and multimodal PET/NIRF imaging of pancreatic cancer.

Authors:  Jacob L Houghton; Brian M Zeglis; Dalya Abdel-Atti; Robert Aggeler; Ritsuko Sawada; Brian J Agnew; Wolfgang W Scholz; Jason S Lewis
Journal:  Proc Natl Acad Sci U S A       Date:  2015-12-14       Impact factor: 11.205

10.  Standardized methods for the production of high specific-activity zirconium-89.

Authors:  Jason P Holland; Yiauchung Sheh; Jason S Lewis
Journal:  Nucl Med Biol       Date:  2009-07-29       Impact factor: 2.408

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  5 in total

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Authors:  Karthika J Kadassery; A Paden King; Stanley Fayn; Kwamena E Baidoo; Samantha N MacMillan; Freddy E Escorcia; Justin J Wilson
Journal:  Bioconjug Chem       Date:  2022-06-07       Impact factor: 6.069

Review 2.  Perspectives on metals-based radioimmunotherapy (RIT): moving forward.

Authors:  Jordan M White; Freddy E Escorcia; Nerissa T Viola
Journal:  Theranostics       Date:  2021-04-15       Impact factor: 11.556

3.  Molecular Imaging of Prostate Cancer Targeting CD46 Using ImmunoPET.

Authors:  Sinan Wang; Jun Li; Jun Hua; Yang Su; Denis R Beckford-Vera; Walter Zhao; Mayuri Jayaraman; Tony L Huynh; Ning Zhao; Yung-Hua Wang; Yangjie Huang; Fujun Qin; Sui Shen; Daniel Gioeli; Robert Dreicer; Renuka Sriram; Emily A Egusa; Jonathan Chou; Felix Y Feng; Rahul Aggarwal; Michael J Evans; Youngho Seo; Bin Liu; Robert R Flavell; Jiang He
Journal:  Clin Cancer Res       Date:  2020-12-08       Impact factor: 13.801

4.  In Vitro and In Vivo Characterization of 89Zirconium-Labeled Lintuzumab Molecule.

Authors:  Kevin J H Allen; Rubin Jiao; Jason Li; Denis R Beckford-Vera; Ekaterina Dadachova
Journal:  Molecules       Date:  2022-10-05       Impact factor: 4.927

5.  State of the Art in Radiolabeling of Antibodies with Common and Uncommon Radiometals for Preclinical and Clinical Immuno-PET.

Authors:  Marion Chomet; Guus A M S van Dongen; Danielle J Vugts
Journal:  Bioconjug Chem       Date:  2021-05-11       Impact factor: 4.774

  5 in total

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