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Chemical modifications designed to improve peptide stability: Incorporation of non-natural amino acids, pseudo-peptide bonds, and cyclization

Gentilucci L.
•
de Marco R.
•
Cerisoli L.
2010
  • journal article

Periodico
CURRENT PHARMACEUTICAL DESIGN
Abstract
Functions and properties of native peptides vary from highly specific antibiotics or cytotoxic antitumor drugs, to hormones, neurotransmitters, immunomodulators, etc. Despite their potential utility as therapeutic agents, there are problems connected with the use of natural peptides, due to the low stability against proteolysis, resulting in a short duration of in vivo activity, and in a low bioavailability. One way to overcome these disadvantages is the use of modified peptides, the so called peptidomimetics. Overall, the less peptide character in a drug candidate, the more stable it is towards protease cleavage. A huge number of non-peptidic scaffolds have been reported in the literature; nevertheless, several cases have failed to reproduce the activity of the precursor peptide when the scaffold itself contains relevant pharmacophore elements. Therefore, quasi-peptides still maintain their appeal for applications in medicinal chemistry. For the large number of different unnatural amino acids and peptidomimetics, the overview cannot be all-inclusive. This review focuses on modified peptides in which the peptide character is still preponderant, with particular emphasis on the chemical methodologies utilized to introduce the modifications. © 2010 Bentham Science Publishers Ltd.
DOI
10.2174/138161210793292555
WOS
WOS:000284642000012
Archivio
http://hdl.handle.net/11390/1201614
info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-78649852683
Diritti
closed access
Soggetti
  • Cyclopeptide

  • Enzymatic degradation...

  • Isoster

  • Metabolism

  • Peptidomimetic

  • Scaffold

  • Unnatural amino acid

Scopus© citazioni
346
Data di acquisizione
Jun 15, 2022
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Web of Science© citazioni
416
Data di acquisizione
Mar 16, 2024
Visualizzazioni
3
Data di acquisizione
Apr 19, 2024
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