Bioconjugate Chemistry · 2022 · 19 citations · 19 references
Proteinlipid InteractionPeptide EngineeringAntisense Morpholino OligomersMolecular BiologyPeptide SciencePeptide TherapeuticsAntisense ActivityAnalytical UltracentrifugationHelix-stabilized Arginine-rich PeptidesCell-based Drug DeliveryBiochemistryConjugated PmoBiomolecular EngineeringNatural SciencesHelix-stabilized Cell-penetrating PeptidesCell-penetrating PeptidesPeptide TherapeuticProtein EngineeringMedicine
The secondary structures of cell-penetrating peptides (CPPs) influence their properties including their cell-membrane permeability, tolerability to proteases, and intracellular distribution. Herein, we developed helix-stabilized arginine-rich peptides containing α,α-disubstituted α-amino acids and their conjugates with antisense phosphorodiamidate morpholino oligomers (PMOs), to investigate the relationships among the helicity of the peptides, cellular uptake, and antisense activity of the peptide-conjugated PMOs. We demonstrated that helical CPPs can efficiently deliver the conjugated PMO into cells compared with nonhelical CPPs and that their antisense activities are synergistically enhanced in the presence of an endosomolytic reagent or an endosomal escape domain peptide.
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Samuel H. Gellman · Accounts of Chemical Research · 1998 · 2.5K citations
Engineering, Chemical Analysis, Altmetric Attention Score +17
Enhancing Endosomal Escape for Intracellular Delivery of Macromolecular Biologic Therapeutics
Peter Lönn, Apollo D. Kacsinta, Xian-Shu Cui et al. · Scientific Reports · 2016 · 314 citations · Full text