Peptide derived from plant defensins: A promising 68Ga radiolabelled agent for diagnostic of infection foci in PET

化学 立体化学 微生物学 分子生物学 生物化学 生物
作者
Jessica Osorio,R. Rosas,Mariana Vega,Ana Laura Reyes,Andrea Paolino,F. Álvarez Menéndez,Maurício Vega-Teijido,Eduardo Savio,Javier Giglio,Gianna Cecchetto,Mariella Terán
出处
期刊:Chemical Biology & Drug Design [Wiley]
卷期号:104 (1)
标识
DOI:10.1111/cbdd.14578
摘要

Abstract The development of new radiopharmaceuticals for the detection of hidden infection foci has great relevance for early detection and the selection of the correct treatment, particularly in immunosuppressed patients. In that sense, the labelling of antimicrobial peptides (AMPs) that are capable of binding specifically to the pathogenic microorganism which causes the infection, should provide a sufficiently specific agent, able to distinguish an infection from a sterile inflammation. Defensins are particularly interesting molecules with antimicrobial activity, the EcgDf1 defensin was identified from the genome of a Uruguayan native plant, Erythrina crista ‐ galli , the ‘Ceibo’ tree. Our group has previously reported a synthetic biologically active short analogue EcgDf21 (ERFTGGHCRGFRRRCFCTKHC) successfully labelled with 99m Tc. Herein we present a shorter analogue which also preserves the γ‐core domain, as a pharmacophore for a potential infection detection agent. This peptide was derivatized with the bifunctional chelating agent 1,4,7‐triazacyclononane‐1,4,7‐triacetic acid (NOTA) through a lysine linker in the amino‐terminal group (NOTA‐KGHCRGFRRRC) and radiolabelled with 68 Ga ([ 68 Ga]Ga‐NOTA‐K‐EcgDf1 (10) ). The [ 68 Ga]Ga‐NOTA‐K‐EcgDf1 (10) labelling procedure rendered a product with high radiochemical purity and stability in the labelling milieu. The Log P value indicated that the complex has a hydrophilic behaviour, confirmed by the biodistribution profile. The [ 68 Ga]Ga‐NOTA‐K‐EcgDf1 (10) complex demonstrated specific binding to cultures of Candida albicans and Aspergillus niger . Its biodistribution showed renal elimination and low accumulation in the rest of the body. It was possible to successfully differentiate sterile inflammation from infection by PET images in nude mice with a target/non‐target ratio of 3.3 for C . albicans and 3.7 for A. niger , respectively.
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