Heptadentate chelates for 89Zr-radiolabelling of monoclonal antibodies

被引:4
|
作者
Guillou, Amaury [1 ]
Ouadi, Ali [2 ]
Holland, Jason P. [1 ]
机构
[1] Univ Zurich, Dept Chem, Winterthurerstr 190, CH-8057 Zurich, Switzerland
[2] Univ Strasbourg, CNRS, UMR 7178, IPHC, F-67000 Strasbourg, France
基金
欧洲研究理事会; 瑞士国家科学基金会;
关键词
ZIRCONIUM COMPLEXES; IMMUNO-PET; DESFERRIOXAMINE; STABILITY;
D O I
10.1039/d2qi00442a
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
Herein, we report the synthesis of three new bifunctional heptadentate metal ion binding chelates derived from desferrioxamine B (DFO) linked to a tripeptide unit that comprises of a glutamic acid and two glycine residues. The three DFO derivatives were also functionalised with a photoactivatable aryl azide unit for light-triggered labelling of proteins. The chelates were obtained in 3 synthetic steps in good overall yields by using solid phase peptide synthesis (SPPS). Density Functional Theory (DFT) calculations were used to estimate thermodynamic formation constants (log beta) of the corresponding Zr4+ complexes. Quantitative zirconium-89 radiolabelling (>95%) was obtained in <5 min at room temperature, and the stability of the radioconjugates toward different competitors (human serum, EDTA and Fe3+) was assessed in vitro. One-pot Zr-89-photoradiosynthesis produced [Zr-89]Zr-2-onartuzumab directly from the formulated, clinical-grade sample MetMAb (TM), without pre-purifying the monoclonal antibody (mAb) component, with an isolated decay-corrected radiochemical yield of 36.4 +/- 2.4%. PET imaging and biodistribution studies were performed in female athymic nude mice bearing subcutaneous xenografts derived from the MKN-45 human gastric cancer cell line to assess the pharmacokinetic profile and tumour binding of [Zr-89]Zr-2-onartuzumab. Specific tumour uptake of [(89) Zr]Zr-2-onartuzumab was confirmed by using competitive inhibition (blocking) studies and bone uptake was significantly reduced compared to the parent DFO analogue.
引用
收藏
页码:3071 / 3081
页数:11
相关论文
共 25 条
  • [1] Site-specifically 89Zr-labeled monoclonal antibodies for ImmunoPET
    Tinianow, Jeff N.
    Gill, Herman S.
    Ogasawara, Annie
    Flores, Judith E.
    Vanderbilt, Alexander N.
    Luis, Elizabeth
    Vandlen, Richard
    Darwish, Martine
    Junutula, Jagath R.
    Williams, Simon-P.
    Marik, Jan
    NUCLEAR MEDICINE AND BIOLOGY, 2010, 37 (03) : 289 - 297
  • [2] 89Zr-PET Radiochemistry in the Development and Application of Therapeutic Monoclonal Antibodies and Other Biologicals
    Vugts, Danielle J.
    Visser, Gerard W. M.
    van Dongen, Guus A. M. S.
    CURRENT TOPICS IN MEDICINAL CHEMISTRY, 2013, 13 (04) : 446 - 457
  • [3] The Bioconjugation and Radiosynthesis of 89Zr-DFO-labeled Antibodies
    Zeglis, Brian M.
    Lewis, Jason S.
    JOVE-JOURNAL OF VISUALIZED EXPERIMENTS, 2015, (96):
  • [4] Fully Automated 89Zr Labeling and Purification of Antibodies
    Poot, Alex J.
    Adamzek, Kevin W. A.
    Windhorst, Albert D.
    Vosjan, Maria J. W. D.
    Kropf, Saskia
    Wester, Hans-Jurgen
    van Dongen, Guus A. M. S.
    Vugts, Danielle J.
    JOURNAL OF NUCLEAR MEDICINE, 2019, 60 (05) : 691 - 695
  • [5] Implementation of 89Zr production and in vivo imaging of B-cells in mice with 89Zr-labeled anti-B-cell antibodies by small animal PET/CT
    Walther, Martin
    Gebhardt, Peter
    Grosse-Gehling, Philipp
    Wuerbach, Lydia
    Irmler, Ingo
    Preusche, Stephan
    Khalid, Muhammad
    Opfermann, Thomas
    Kamradt, Thomas
    Steinbach, Joerg
    Saluz, Hans-Peter
    APPLIED RADIATION AND ISOTOPES, 2011, 69 (06) : 852 - 857
  • [6] 89Zr-Immuno-PET: Toward a Noninvasive Clinical Tool to Measure Target Engagement of Therapeutic Antibodies In Vivo
    Jauw, Yvonne W. S.
    O'Donoghue, Joseph A.
    Zijlstra, Josee M.
    Hoekstra, Otto S.
    van Oordt, C. Willemien Menke-van der Houven
    Morschhauser, Franck
    Carrasquillo, Jorge A.
    Zweegman, Sonja
    Pandit-Taskar, Neeta
    Lammertsma, Adriaan A.
    van Dongen, Guus A. M. S.
    Boellaard, Ronald
    Weber, Wolfgang A.
    Huisman, Marc C.
    JOURNAL OF NUCLEAR MEDICINE, 2019, 60 (12) : 1825 - 1832
  • [7] Synthesis and Evaluation of a Zr-89-Labeled Monoclonal Antibody for Immuno-PET Imaging of Amyloid-β Deposition in the Brain
    Fissers, Jens
    Waldron, Ann-Marie
    De Vijlder, Thomas
    Van Broeck, Bianca
    Pemberton, Darrel J.
    Mercken, Marc
    Van der Veken, Pieter
    Joossens, Jurgen
    Augustyns, Koen
    Dedeurwaerdere, Stefanie
    Stroobants, Sigrid
    Staelens, Steven
    wyffels, Leonie
    MOLECULAR IMAGING AND BIOLOGY, 2016, 18 (04) : 598 - 605
  • [8] Conjugation and radiolabeling of monoclonal antibodies with zirconium-89 for PET imaging using the bifunctional chelate p-isothiocyanatobenzyl-desferrioxamine
    Vosjan, Maria J. W. D.
    Perk, Lars R.
    Visser, Gerard W. M.
    Budde, Marianne
    Jurek, Paul
    Kiefer, Garry E.
    van Dongen, Guus A. M. S.
    NATURE PROTOCOLS, 2010, 5 (04) : 739 - 743
  • [9] Application of 89Zr-DFO*-immuno-PET to assess improved target engagement of a bispecific anti-amyloid-ß monoclonal antibody
    N. Stergiou
    T. E. Wuensche
    M. Schreurs
    I. Mes
    M. Verlaan
    E. J. M. Kooijman
    A. D. Windhorst
    L. Helboe
    S. Vergo
    S. Christensen
    A. A. Asuni
    A. Jensen
    G. A. M. S. Van Dongen
    B. Bang-Andersen
    D. J. Vugts
    W. Beaino
    European Journal of Nuclear Medicine and Molecular Imaging, 2023, 50 : 1306 - 1317
  • [10] Imaging of hepatocellular carcinoma patient-derived xenografts using 89Zr-labeled anti-glypican-3 monoclonal antibody
    Yang, Xiaoyang
    Liu, Hongguang
    Sun, Chris K.
    Natarajan, Arutselvan
    Hu, Xiang
    Wang, Xiaolin
    Allegretta, Mark
    Guttmann, Ronald D.
    Gambhir, Sanjiv S.
    Chua, Mei-Sze
    Cheng, Zhen
    So, Samuel K.
    BIOMATERIALS, 2014, 35 (25) : 6964 - 6971