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The versatility of peptide hydrogels: From self‐assembly to drug delivery applications

Julie Heremans, Steven Ballet, Charlotte Martin

2024Journal of Peptide Science22 citationsDOIOpen Access PDF

Abstract

Pharmaceuticals often suffer from limitations such as low solubility, low stability, and short half-life. To address these challenges and reduce the need for frequent drug administrations, a more efficient delivery is required. In this context, the development of controlled drug delivery systems, acting as a protective depot for the drug, has expanded significantly over the last decades. Among these, injectable hydrogels have emerged as a promising platform, especially in view of the rise of biologicals as therapeutics. Hydrogels are functional, solid-like biomaterials, composed of cross-linked hydrophilic polymers and high water content. Their physical properties, which closely mimic the extracellular matrix, make them suitable for various biomedical applications. This review discusses the different types of hydrogel systems and their self-assembly process, with an emphasis on peptide-based hydrogels. Due to their structural and functional diversity, biocompatibility, synthetic accessibility, and tunability, peptides are regarded as promising and versatile building blocks. A comprehensive overview of the variety of peptide hydrogels is outlined, with β-sheet forming sequences being highlighted. Key factors to consider when using peptide hydrogels as a controlled drug delivery system are reviewed, along with a discussion of the main drug release mechanisms and the emerging trend towards affinity-based systems to further refine drug release profiles.

Topics & Concepts

Self-healing hydrogelsDrug deliveryBiocompatibilityNanotechnologyContext (archaeology)DrugSelf-assembling peptideMaterials scienceChemistryPharmacologyMedicineOrganic chemistryBiologyPaleontologySupramolecular Self-Assembly in MaterialsRNA Interference and Gene DeliveryChemical Synthesis and Analysis
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