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Trans-Cyclooctene-Functionalized PeptoBrushes with Improved Reaction Kinetics of the Tetrazine Ligation for Pretargeted Nuclear Imaging.
Stéen, E Johanna L; Jørgensen, Jesper T; Johann, Kerstin; Nørregaard, Kamilla; Sohr, Barbara; Svatunek, Dennis; Birke, Alexander; Shalgunov, Vladimir; Edem, Patricia E; Rossin, Raffaella; Seidl, Christine; Schmid, Friederike; Robillard, Marc S; Kristensen, Jesper L; Mikula, Hannes; Barz, Matthias; Kjær, Andreas; Herth, Matthias M.
Afiliação
  • Stéen EJL; Department of Drug Design and Pharmacology, Faculty of Health and Medical Sciences , University of Copenhagen , Universitetsparken 2 , 2100 Copenhagen , Denmark.
  • Jørgensen JT; Department of Clinical Physiology, Nuclear Medicine & PET , Rigshospitalet , Blegdamsvej 9 , 2100 Copenhagen , Denmark.
  • Johann K; Department of Clinical Physiology, Nuclear Medicine & PET , Rigshospitalet , Blegdamsvej 9 , 2100 Copenhagen , Denmark.
  • Nørregaard K; Cluster for Molecular Imaging, Department of Biomedical Sciences , University of Copenhagen , Blegdamsvej 3 , 2100 Copenhagen Ø , Denmark.
  • Sohr B; Institute of Organic Chemistry , Johannes Gutenberg University , Duesbergweg 10-14 , D-55099 Mainz , Germany.
  • Svatunek D; Department of Clinical Physiology, Nuclear Medicine & PET , Rigshospitalet , Blegdamsvej 9 , 2100 Copenhagen , Denmark.
  • Birke A; Cluster for Molecular Imaging, Department of Biomedical Sciences , University of Copenhagen , Blegdamsvej 3 , 2100 Copenhagen Ø , Denmark.
  • Shalgunov V; Institute of Applied Synthetic Chemistry , Technische Universität Wien (TU Wien) , Getreidemarkt 9 , 1060 Vienna , Austria.
  • Edem PE; Institute of Applied Synthetic Chemistry , Technische Universität Wien (TU Wien) , Getreidemarkt 9 , 1060 Vienna , Austria.
  • Rossin R; Institute of Organic Chemistry , Johannes Gutenberg University , Duesbergweg 10-14 , D-55099 Mainz , Germany.
  • Seidl C; Department of Drug Design and Pharmacology, Faculty of Health and Medical Sciences , University of Copenhagen , Universitetsparken 2 , 2100 Copenhagen , Denmark.
  • Schmid F; Cluster for Molecular Imaging, Department of Biomedical Sciences , University of Copenhagen , Blegdamsvej 3 , 2100 Copenhagen Ø , Denmark.
  • Robillard MS; Department of Drug Design and Pharmacology, Faculty of Health and Medical Sciences , University of Copenhagen , Universitetsparken 2 , 2100 Copenhagen , Denmark.
  • Kristensen JL; Department of Clinical Physiology, Nuclear Medicine & PET , Rigshospitalet , Blegdamsvej 9 , 2100 Copenhagen , Denmark.
  • Mikula H; Cluster for Molecular Imaging, Department of Biomedical Sciences , University of Copenhagen , Blegdamsvej 3 , 2100 Copenhagen Ø , Denmark.
  • Barz M; Tagworks Pharmaceuticals , Geert Grooteplein 10 , 6525 GA Nijmegen , The Netherlands.
  • Kjær A; Institute of Organic Chemistry , Johannes Gutenberg University , Duesbergweg 10-14 , D-55099 Mainz , Germany.
  • Herth MM; Institute of Physics , Johannes Gutenberg University , Staudingerweg 7-9 , D-55099 Mainz , Germany.
ACS Nano ; 14(1): 568-584, 2020 01 28.
Article em En | MEDLINE | ID: mdl-31820928
ABSTRACT
Tumor targeting using agents with slow pharmacokinetics represents a major challenge in nuclear imaging and targeted radionuclide therapy as they most often result in low imaging contrast and high radiation dose to healthy tissue. To address this challenge, we developed a polymer-based targeting agent that can be used for pretargeted imaging and thus separates tumor accumulation from the imaging step in time. The developed targeting agent is based on polypeptide-graft-polypeptoid polymers (PeptoBrushes) functionalized with trans-cyclooctene (TCO). The complementary 111In-labeled imaging agent is a 1,2,4,5-tetrazine derivative, which can react with aforementioned TCO-modified PeptoBrushes in a rapid bioorthogonal ligation. A high degree of TCO loading (up to 30%) was achieved, without altering the physicochemical properties of the polymeric nanoparticle. The highest degree of TCO loading resulted in significantly increased reaction rates (77-fold enhancement) compared to those with small molecule TCO moieties when using lipophilic tetrazines. Based on computer simulations, we hypothesize that this increase is a result of hydrophobic effects and significant rearrangements within the polymer framework, in which hydrophobic patches of TCO moieties are formed. These patches attract lipophilic tetrazines, leading to increased reaction rates in the bioorthogonal ligation. The most reactive system was evaluated as a targeting agent for pretargeted imaging in tumor-bearing mice. After the setup was optimized, sufficient tumor-to-background ratios were achieved as early as 2 h after administration of the tetrazine imaging agent, which further improved at 22 h, enabling clear visualization of CT-26 tumors. These findings show the potential of PeptoBrushes to be used as a pretargeting agent when an optimized dose of polymer is used.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Peptídeos / Compostos Aza / Derivados de Benzeno / Neoplasias do Colo / Ciclo-Octanos / Peptoides / Imagem Óptica Limite: Animals Idioma: En Revista: ACS Nano Ano de publicação: 2020 Tipo de documento: Article País de afiliação: Dinamarca

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Peptídeos / Compostos Aza / Derivados de Benzeno / Neoplasias do Colo / Ciclo-Octanos / Peptoides / Imagem Óptica Limite: Animals Idioma: En Revista: ACS Nano Ano de publicação: 2020 Tipo de documento: Article País de afiliação: Dinamarca