| Literature DB >> 25962581 |
Karen Alt1, Brett M Paterson2, Erik Westein3, Stacey E Rudd2, Stan S Poniger4, Shweta Jagdale5, Katie Ardipradja5, Timothy U Connell2, Guy Y Krippner5, Ashish K N Nair3, Xiaowei Wang3, Henri J Tochon-Danguy4, Paul S Donnelly6, Karlheinz Peter3, Christoph E Hagemeyer7.
Abstract
A unique two-step modular system for site-specific antibody modification and conjugation is reported. The first step of this approach uses enzymatic bioconjugation with the transpeptidase Sortase A for incorporation of strained cyclooctyne functional groups. The second step of this modular approach involves the azide-alkyne cycloaddition click reaction. The versatility of the two-step approach has been exemplified by the selective incorporation of fluorescent dyes and a positron-emitting copper-64 radiotracer for fluorescence and positron-emission tomography imaging of activated platelets, platelet aggregates, and thrombi, respectively. This flexible and versatile approach could be readily adapted to incorporate a large array of tailor-made functional groups using reliable click chemistry whilst preserving the activity of the antibody or other sensitive biological macromolecules.Entities:
Keywords: PET imaging; Sortase A; bioconjugation; click chemistry; fluorescence imaging
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Year: 2015 PMID: 25962581 DOI: 10.1002/anie.201411507
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336