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Synthesis and Systematic Study on the Effect of Different PEG Units on Stability of PEGylated, Integrin-αvβ6-Specific A20FMDV2 Analogues in Rat Serum and Human Plasma

A20FMDV2 is a 20-mer peptide that exhibits high selectivity and affinity for the tumour-related αvβ6 integrin that can compete with extracellular ligands for the crucial RGD binding site, playing a role as a promising αvβ6-specific inhibitor for anti-cancer therapies. Unfortunately, the clinical val...

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Autores principales: Hung, Kuo-yuan, Kowalczyk, Renata, Desai, Ami, Brimble, Margaret A., Marshall, John F., Harris, Paul W. R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9316855/
https://www.ncbi.nlm.nih.gov/pubmed/35889207
http://dx.doi.org/10.3390/molecules27144331
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author Hung, Kuo-yuan
Kowalczyk, Renata
Desai, Ami
Brimble, Margaret A.
Marshall, John F.
Harris, Paul W. R.
author_facet Hung, Kuo-yuan
Kowalczyk, Renata
Desai, Ami
Brimble, Margaret A.
Marshall, John F.
Harris, Paul W. R.
author_sort Hung, Kuo-yuan
collection PubMed
description A20FMDV2 is a 20-mer peptide that exhibits high selectivity and affinity for the tumour-related αvβ6 integrin that can compete with extracellular ligands for the crucial RGD binding site, playing a role as a promising αvβ6-specific inhibitor for anti-cancer therapies. Unfortunately, the clinical value of A20FMDV2 is limited by its poor half-life in blood caused by rapid renal excretion and its reported high susceptibility to serum proteases. The incorporation of poly (ethylene glycol) chains, coined PEGylation, is a well-established approach to improve the pharmacokinetic properties of drug molecules. Here, we report a systematic study on the incorporation of a varying number of ethylene glycol units (1–20) into the A20FMDV2 peptide to establish the effects of PEGylation size on the peptide stability in both rat serum and human plasma. In addition, the effect of acetyl and propionyl PEGylation handles on peptide stability is also described. Selected peptide analogues were assessed for integrin-αvβ6-targeted binding, showing good specificity and activity in vitro. Stability studies in rat serum established that all of the PEGylated peptides displayed good stability, and an A20FMDV2 peptide containing twenty ethylene glycol units (PEG(20)) was the most stable. Surprisingly, the stability testing in human plasma identified shorter PEGs (PEG(2) and PEG(5)) as more resistant to degradation than longer PEGs, a trend which was also observed with affinity binding to integrin αvβ6.
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spelling pubmed-93168552022-07-27 Synthesis and Systematic Study on the Effect of Different PEG Units on Stability of PEGylated, Integrin-αvβ6-Specific A20FMDV2 Analogues in Rat Serum and Human Plasma Hung, Kuo-yuan Kowalczyk, Renata Desai, Ami Brimble, Margaret A. Marshall, John F. Harris, Paul W. R. Molecules Article A20FMDV2 is a 20-mer peptide that exhibits high selectivity and affinity for the tumour-related αvβ6 integrin that can compete with extracellular ligands for the crucial RGD binding site, playing a role as a promising αvβ6-specific inhibitor for anti-cancer therapies. Unfortunately, the clinical value of A20FMDV2 is limited by its poor half-life in blood caused by rapid renal excretion and its reported high susceptibility to serum proteases. The incorporation of poly (ethylene glycol) chains, coined PEGylation, is a well-established approach to improve the pharmacokinetic properties of drug molecules. Here, we report a systematic study on the incorporation of a varying number of ethylene glycol units (1–20) into the A20FMDV2 peptide to establish the effects of PEGylation size on the peptide stability in both rat serum and human plasma. In addition, the effect of acetyl and propionyl PEGylation handles on peptide stability is also described. Selected peptide analogues were assessed for integrin-αvβ6-targeted binding, showing good specificity and activity in vitro. Stability studies in rat serum established that all of the PEGylated peptides displayed good stability, and an A20FMDV2 peptide containing twenty ethylene glycol units (PEG(20)) was the most stable. Surprisingly, the stability testing in human plasma identified shorter PEGs (PEG(2) and PEG(5)) as more resistant to degradation than longer PEGs, a trend which was also observed with affinity binding to integrin αvβ6. MDPI 2022-07-06 /pmc/articles/PMC9316855/ /pubmed/35889207 http://dx.doi.org/10.3390/molecules27144331 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Hung, Kuo-yuan
Kowalczyk, Renata
Desai, Ami
Brimble, Margaret A.
Marshall, John F.
Harris, Paul W. R.
Synthesis and Systematic Study on the Effect of Different PEG Units on Stability of PEGylated, Integrin-αvβ6-Specific A20FMDV2 Analogues in Rat Serum and Human Plasma
title Synthesis and Systematic Study on the Effect of Different PEG Units on Stability of PEGylated, Integrin-αvβ6-Specific A20FMDV2 Analogues in Rat Serum and Human Plasma
title_full Synthesis and Systematic Study on the Effect of Different PEG Units on Stability of PEGylated, Integrin-αvβ6-Specific A20FMDV2 Analogues in Rat Serum and Human Plasma
title_fullStr Synthesis and Systematic Study on the Effect of Different PEG Units on Stability of PEGylated, Integrin-αvβ6-Specific A20FMDV2 Analogues in Rat Serum and Human Plasma
title_full_unstemmed Synthesis and Systematic Study on the Effect of Different PEG Units on Stability of PEGylated, Integrin-αvβ6-Specific A20FMDV2 Analogues in Rat Serum and Human Plasma
title_short Synthesis and Systematic Study on the Effect of Different PEG Units on Stability of PEGylated, Integrin-αvβ6-Specific A20FMDV2 Analogues in Rat Serum and Human Plasma
title_sort synthesis and systematic study on the effect of different peg units on stability of pegylated, integrin-αvβ6-specific a20fmdv2 analogues in rat serum and human plasma
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9316855/
https://www.ncbi.nlm.nih.gov/pubmed/35889207
http://dx.doi.org/10.3390/molecules27144331
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