Literature DB >> 28575696

Regiospecific radiolabelling of Nanofitin on Ni magnetic beads with [18F]FBEM and in vivo PET studies.

Sylvestre Dammicco1, Marine Goux2, Christian Lemaire2, Guillaume Becker2, Mohamed Ali Bahri2, Alain Plenevaux2, Mathieu Cinier3, André Luxen2.   

Abstract

INTRODUCTION: Nanofitins are low molecular weight, single chain and cysteine-free protein scaffolds able to selectively bind a defined biological target. They derive from Sac7d bacterial protein family and are highly stable over a wide range of pH (0-13) and temperature (Tm ~80°C). Their extreme stability, low cost of production and high tolerability for chemical coupling make Nanofitins a very interesting alternative to antibodies and their fragments. Here, a hexahistidine tagged model Nanofitin (H4) directed against hen egg white lysozyme was radiolabelled and injected in mice to provide a baseline biodistribution and pharmacokinetic profiles to support future Nanofitin development programs.
METHOD: A single cysteine residue has been genetically inserted in a model Nanofitin and its regioselective radiolabelling has been performed with 4-[18F]fluorobenzamido-N-ethylamino-maleimide ([18F]FBEM). The synthesis of [18F]FBEM has been completely implemented on a radiosynthesis unit (FastLab) including HPLC purification and formulation. Coupling with the [18F]FBEM has been achieved on a solid support (Ni magnetic beads) allowing rapid purification at room temperature without organic solvent. PET-MRI studies on C57BL/6 mice were conducted after injection of [18F]FBEM-Cys-H4 in order to access the biodistribution of this Nanofitin model.
RESULTS: Radiochemical yield (decay corrected) of 54±7% (n=4) was obtained after optimization for coupling the [18F]FBEM to Nanofitin. Pharmacokinetics results of [18F]FBEM-Cys-H4 revealed a fast clearance through the liver and the kidneys.
CONCLUSION: An efficient new method on Ni magnetic beads was developed to radiolabelled his-tagged biomolecules with [18F]FBEM. This procedure was applied on a Nanofitin model Cys-H4 and biodistribution kinetic studies were achieved to evaluate the potential use of Nanofitin for diagnostic imaging. Fast clearance indicates that Nanofitins represent very interesting tools for diagnostic imaging.
Copyright © 2017 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Biodistribution; Nanofitin; Ni beads; PET; [(18)F]FBEM

Mesh:

Substances:

Year:  2017        PMID: 28575696     DOI: 10.1016/j.nucmedbio.2017.04.006

Source DB:  PubMed          Journal:  Nucl Med Biol        ISSN: 0969-8051            Impact factor:   2.408


  2 in total

1.  Antibody-drug conjugates: Design and development for therapy and imaging in and beyond cancer, LabEx MAbImprove industrial workshop, July 27-28, 2017, Tours, France.

Authors:  Camille Martin; Claire Kizlik-Masson; André Pèlegrin; Hervé Watier; Marie-Claude Viaud-Massuard; Nicolas Joubert
Journal:  MAbs       Date:  2018-01-09       Impact factor: 5.857

2.  Discovery of APL-1030, a Novel, High-Affinity Nanofitin Inhibitor of C3-Mediated Complement Activation.

Authors:  Joshua Garlich; Mathieu Cinier; Anne Chevrel; Anaëlle Perrocheau; David J Eyerman; Mark Orme; Olivier Kitten; Lukas Scheibler
Journal:  Biomolecules       Date:  2022-03-11
  2 in total

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