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May 8, 2026Gels0 citationsOpen Access

Chirality Effect on Physical and Biological Properties of Peptide-Based Hydrogels

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LRLucía De RosaLDLuca Domenico D’AndreaARAlessandra Romanelli

Key Points

  • This review aims to explore the influence of chirality on peptide self-assembly into hydrogels and their properties.
  • Analyzed peptide systems composed of all L-amino acids, all D-amino acids, and mixtures of both types.
  • Discussed mechanical properties of homochiral and heterochiral peptide-based hydrogels.
  • Illustrated structural features of various peptide configurations in hydrogel formation.
  • Hydrogels formed from homochiral peptides displayed distinct mechanical properties compared to heterochiral peptides.
  • Differences in structure impacted the self-assembly and stability of the hydrogels.
  • Potential applications in biological fields were identified based on the variation in chirality of peptides.

Abstract

The self-assembly of peptide-based building blocks into ordered structures is widely exploited for the development of novel biomaterials, including hydrogels. In this review, we analyze the effect of chirality on the ability of peptides to form hydrogels. We describe systems composed of peptides of opposite chirality i.e., peptides composed of all L- or D-amino acids and peptides composed of amino acids with alternate chirality, i.e., one L- and D-amino acid or one block containing all L-amino acid followed by one block composed of all D-amino acids. Finally, we illustrate systems composed of mixtures of L- and D-peptides. The structural features of these compounds are discussed. We further compare the mechanical properties of hydrogels formed by homochiral and heterochiral peptides. Finally, we discuss the potential biological applications of these systems, focusing on the differences between hydrogels formed from peptides of opposite chirality or mixed chirality.

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Cite This Study

Rosa et al. (2026) studied this question.

synapsesocial.com/papers/69fd7e23bfa21ec5bbf06617https://doi.org/10.3390/gels12050399
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