Nuclear Medicine and Biology
Volume 35, Issue 8 , Pages 875-882, November 2008

Evaluation of novel bifunctional chelates for the development of Cu-64-based radiopharmaceuticals

  • Cara L. Ferreira

      Affiliations

    • MDS Nordion, 4004 Wesbrook Mall, Vancouver, BC, Canada V6T 2A3
    • Corresponding Author InformationCorresponding author. Tel.: +1 604 228 8952; fax: +1 604 228 5590.
  • ,
  • Donald T. Yapp

      Affiliations

    • British Columbia Cancer Agency Research Centre, Vancouver, BC, Canada V5Z 1L3
  • ,
  • Eric Lamsa

      Affiliations

    • MDS Nordion, 4004 Wesbrook Mall, Vancouver, BC, Canada V6T 2A3
  • ,
  • Martin Gleave

      Affiliations

    • Prostrate Centre at Vancouver General Hospital, Vancouver, BC, Canada V6H 3Z6
  • ,
  • Corinne Bensimon

      Affiliations

    • MDS Nordion, 4004 Wesbrook Mall, Vancouver, BC, Canada V6T 2A3
  • ,
  • Paul Jurek

      Affiliations

    • Macrocylics Inc., Dallas, Texas, 75235 USA
  • ,
  • Garry E. Kiefer

      Affiliations

    • Macrocylics Inc., Dallas, Texas, 75235 USA

Received 16 April 2008; received in revised form 25 August 2008; accepted 5 September 2008.

Abstract 

Background

Currently available bifunctional chelates (BFCs) for attaching Cu-64 to a targeting molecule are limited by either their radiolabeling conditions or in vivo stability. With the goal of identifying highly effective BFCs, we compared the properties of two novel BFCs, 1-oxa-4,7,10-triazacyclododecane-S-5-(4-nitrobenzyl)-4,7,10-triacetic acid (p-NO2-Bn-Oxo) and 3,6,9,15-tetraazabicyclo[9.3.1]pentadeca-1(15),11,13-triene-S-4-(4-nitrobenzyl)-3,6,9-triacetic acid (p-NO2-Bn-PCTA), with the commonly used S-2-(4-nitrobenzyl)-1,4,7,10-tetraazacyclododecanetetraacetic acid (p-NO2-Bn-DOTA).

Methods

p-NO2-Bn-DOTA, p-NO2-Bn-Oxo and p-NO2-Bn-PCTA were each radiolabeled with Cu-64 under various conditions to assess the reaction kinetics and robustness of the radiolabeling. Stability of each Cu-64 BFC complex was evaluated at low pH and in serum. Small animal positron emission tomography imaging and biodistribution studies in mice were undertaken.

Results

p-NO2-Bn-Oxo and p-NO2-Bn-PCTA possessed superior reaction kinetics compared to p-NO2-Bn-DOTA under all radiolabeling conditions; >98% radiochemical yields were achieved in <5 min at room temperature even when using near stoichiometric amounts of BFC. Under nonideal conditions, such as low or high pH, high radiochemical yields were still achievable with the novel BFCs. The radiolabeled compounds were stable in serum and at pH 2 for 48 h. The imaging and biodistribution of the Cu-64-radiolabeled BFCs illustrated differences between the BFCs, including preferential clearance via the kidneys for the p-NO2-Bn-PCTA Cu-64 complex.

Conclusions

The novel BFCs facilitated efficient Cu-64 radiolabeling under mild conditions to produce stable complexes at potentially high specific activities. These BFCs may find wide utility in the development of Cu-64-based radiopharmaceuticals.

Keywords: Cu-64, Bifunctional chelates, PET

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PII: S0969-8051(08)00180-7

doi:10.1016/j.nucmedbio.2008.09.001

Nuclear Medicine and Biology
Volume 35, Issue 8 , Pages 875-882, November 2008