89Zr-PET Radiochemistry in the Development and Application of Therapeutic Monoclonal Antibodies and Other Biologicals

被引:0
|
作者
Vugts, Danielle J. [1 ,2 ]
Visser, Gerard W. M. [2 ]
van Dongen, Guus A. M. S. [1 ,2 ]
机构
[1] Vrije Univ Amsterdam Med Ctr, Dept Otolaryngol Head & Neck Surg, NL-1081 HV Amsterdam, Netherlands
[2] Vrije Univ Amsterdam Med Ctr, Dept Nucl Med & PET Res, NL-1081 HV Amsterdam, Netherlands
关键词
Biologicals; immuno-PET; monoclonal antibodies; PET; positron emission tomography; proteins; radiometal; zirconium-89; POSITRON-EMISSION-TOMOGRAPHY; GROWTH-FACTOR; IMMUNO-PET; BIFUNCTIONAL CHELATE; MEMBRANE ANTIGEN; HYDROXAMIC ACIDS; HSP90; INHIBITOR; CANCER; BIODISTRIBUTION; EXPRESSION;
D O I
暂无
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
Positron emission tomography with Zr-89 can be used to follow the behaviour of therapeutic monoclonal antibodies (mAbs) and other biologicals in vivo. The favourable radiophysical characteristics of Zr-89 allow multiple days PET scanning after injection. For the coupling of Zr-89 to proteins six desferrioxamine (DFO)-based bifunctional chelators have been described, five of which forming stable complexes in vivo. Of the methods that give stable complexes three are based on random lysine modification of mAbs and two on site-specific engineering. Up to now only two methods, random lysine modification with N-suc-DFO or DFO-Bz-NCS, have been used in clinical studies. In this review firstly aspects of the physicochemical properties and production of Zr-89 are emphasized as well as important items that have to be taken into account for current good manufacturing practice (cGMP) compliant production of Zr-89-labeled proteins. Next, the different DFO-based conjugation strategies will be discussed with respect to synthesis, and their (pre)clinical evaluation particularly in the field of oncology.
引用
收藏
页码:446 / 457
页数:12
相关论文
共 50 条
  • [21] 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
  • [22] Preclinical evaluation of 89Zr-labeled human antitransferrin receptor monoclonal antibody as a PET probe using a pancreatic cancer mouse model
    Sugyo, Aya
    Tsuji, Atsushi B.
    Sudo, Hitomi
    Nagatsu, Kotaro
    Koizumi, Mitsuru
    Ukai, Yoshinori
    Kurosawa, Gene
    Zhang, Ming-Rong
    Kurosawa, Yoshikazu
    Saga, Tsuneo
    NUCLEAR MEDICINE COMMUNICATIONS, 2015, 36 (03) : 286 - 294
  • [23] Therapeutic application of monoclonal antibodies in cancer: advances and challenges
    Modjtahedi, Helmout
    Ali, Sumaira
    Essapen, Sharadah
    BRITISH MEDICAL BULLETIN, 2012, 104 (01) : 41 - 59
  • [24] Preloading with Unlabeled CA19.9 Targeted Human Monoclonal Antibody Leads to Improved PET Imaging with 89Zr-5B1
    Houghton, Jacob L.
    Abdel-Atti, Dalya
    Scholz, Wolfgang W.
    Lewis, Jason S.
    MOLECULAR PHARMACEUTICS, 2017, 14 (03) : 908 - 915
  • [25] Advances and challenges in therapeutic monoclonal antibodies drug development
    dos Santos, Mariana Lopes
    Quintilio, Wagner
    Manieri, Tania Maria
    Tsuruta, Lilian Rumi
    Moro, Ana Maria
    BRAZILIAN JOURNAL OF PHARMACEUTICAL SCIENCES, 2018, 54
  • [26] From the discovery of monoclonal antibodies to their therapeutic application: An historical reappraisal
    Ribatti, Domenico
    IMMUNOLOGY LETTERS, 2014, 161 (01) : 96 - 99
  • [27] 89Zr-PET imaging of DNA double-strand breaks for the early monitoring of response following α- and β-particle radioimmunotherapy in a mouse model of pancreatic ductal adenocarcinoma
    Poty, Sophie
    Mandleywala, Komal
    O'Neill, Edward
    Knight, James C.
    Cornelissen, Bart
    Lewis, Jason S.
    THERANOSTICS, 2020, 10 (13): : 5802 - 5814
  • [28] 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
  • [29] Light-induced synthesis of protein conjugates and its application in photoradiosynthesis of89Zr-radiolabeled monoclonal antibodies
    Guillou, Amaury
    Earley, Daniel F.
    Patra, Malay
    Holland, Jason P.
    NATURE PROTOCOLS, 2020, 15 (11) : 3579 - 3594
  • [30] Quantitative 89Zr immuno-PET for in vivo scouting of 90Y-labeled monoclonal antibodies in xenograft-bearing nude mice
    Verel, I
    Visser, GWM
    Boellaard, R
    Boerman, OC
    van Eerd, J
    Snow, GB
    Lammertsma, AA
    van Dongen, GAMS
    JOURNAL OF NUCLEAR MEDICINE, 2003, 44 (10) : 1663 - 1670