1 research outputs found
Parallel Synthesis and Screening of Peptide Conjugates
Peptide conjugates represent an emerging
class of therapeutics.
However, in contrast to that of small molecules and peptides, the
discovery and optimization of peptide conjugates is low in throughput,
resource intensive, time-consuming, and based on educated decisions
rather than screening. A strategy for the parallel synthesis and screening
of peptide conjugates is presented that (1) reduces variability in
the conjugation steps; (2) provides a new method to rapidly and quantitatively
measure conversion in crude conjugation mixtures; (3) introduces a
purification step using an immobilized chemical scavenger that does
not rely on protein-specific binding; and (4) is supported by robust
analytical methods to characterize the large number of end products.
Copper-free click chemistry is used as the chemoselective ligation
method for conjugation and purification. The productivity in the generation
and screening of peptide conjugates is significantly improved by applying
this strategy as is demonstrated by the optimization of the anti-Angiopoietin-2
(Ang2) CovX-body, CVX-060, a peptide-antibody scaffold conjugate that
has advanced in clinical trials for oncology indications