Utilizing Constrained Bicyclic Peptides for In Vitro Diagnostics.

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作者:Shamsabadi André, Creamer Adam, Sadler Christy J, Abdelwahed Aida, Gaynor Katherine U, Demydchuk Yuliya, Ivanova-Berndt Gabriela, Van Rietschoten Katerine, Beswick Paul, Chen Liuhong, Arruda Bezerra Gustavo, Lulla Aleksei, Brear Paul, Hyvönen Marko, Skynner Michael J, Stevens Molly M
Constrained bicyclic peptides (Bicycle molecules) with high affinity for biological targets have emerged as potentially powerful therapeutic agents, particularly for the in vivo targeting of cancer receptors. However, their antibody-mimetic properties have yet to be explored for use in diagnostic immunoassays. These synthetically derived compounds serve as biorecognition scaffolds that allow for facile site-selective modification and large-scale production. A phage display screen against various constructs of the SARS-CoV-2 nucleocapsid (N) protein identified several Bicycle molecules with binding affinities ranging from the micromolar to the low nanomolar range. These Bicycle molecules were validated in the development of enzyme- and nanozyme-linked immunosorbent assays, as well as enzymatic and colorimetric nanoparticle-based lateral flow immunoassays (LFIA) for the detection of ultralow concentrations of the SARS-CoV-2 N protein. We envision that these moieties enable robust, cost-effective, and large-scale development of ultrasensitive biosensors for a diverse range of biomarkers by leveraging their high binding affinity, minimalistic scaffold, and synthetic accessibility.

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