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Discovery of a dual pathway aggregation mechanism for a therapeutic constrained peptide.

Authors :
Chen, Tao
Tang, Shijia
Hecht, Elizabeth S.
Yen, Chun-Wan
Andersen, Nisana
Chin, Steven
Cadang, Lance
Roper, Brian
Estevez, Alberto
Rohou, Alexis
Chang, Debby
Dai, Lu
Liu, Peter
Al-Sayah, Mohammad
Nagapudi, Karthik
Lin, Fiona
Famili, Amin
Hu, Chloe
Kuhn, Robert
Stella, Cinzia
Source :
Journal of Pharmaceutical Sciences. Jun2021, Vol. 110 Issue 6, p2362-2371. 10p.
Publication Year :
2021

Abstract

Constrained peptides (CPs) have emerged as attractive candidates for drug discovery and development. To fully unlock the therapeutic potential of CPs, it is crucial to understand their physical stability and minimize the formation of aggregates that could induce immune responses. Although amyloid like aggregates have been researched extensively, few studies have focused on aggregates from other peptide scaffolds (e.g., CPs). In this work, a streamlined approach to effectively profile the nature and formation pathway of CP aggregates was demonstrated. Aggregates of various sizes were detected and shown to be amorphous. Though no major changes were found in peptide structure upon aggregation, these aggregates appeared to have mixed natures, consisting of primarily non-covalent aggregates with a low level of covalent species. This co-existence phenomenon was also supported by two kinetic pathways observed in time- and temperature-dependent aggregation studies. Furthermore, a stability study with 8 additional peptide variants exhibited good correlation between aggregation propensity and peptide hydrophobicity. Therefore, a dual aggregation pathway was proposed, with the non-covalent aggregates driven by hydrophobic interactions, whereas the covalent ones formed through disulfide scrambling. Overall, the workflow presented here provides a powerful strategy for comprehensive characterization of peptide aggregates and understanding their mechanisms of formation. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00223549
Volume :
110
Issue :
6
Database :
Academic Search Index
Journal :
Journal of Pharmaceutical Sciences
Publication Type :
Academic Journal
Accession number :
150289412
Full Text :
https://doi.org/10.1016/j.xphs.2020.12.041