Polypeptide The intersection of peptides and polymers has given rise to a dynamic and rapidly expanding field focused on peptide polymers.Protein- and Peptide- Polymer Conjugates by RAFT ... These innovative materials leverage the unique properties of both their constituent peptides and polymers, offering tunable characteristics and a wide array of potential applicationsPeptide-polymer conjugates: from fundamental science to .... Researchers are actively exploring the synthesis, structure, and function of peptide polymers, aiming to unlock their full potential in areas ranging from medicine to advanced materials science.Synthesis, Structure, and Function of Peptide–Polymer ...
At its core, a peptide polymer can be understood as a complex macromolecule where peptides are either incorporated into the polymer backbone or attached as side chains.作者:C Pascouau·2024·被引用次数:5—Peptide–polymer conjugates (PPCs) are of particular interest in the development of responsive, adaptive, and interactive materials due to the benefits ... Peptides themselves are short chains of amino acids linked by peptide bonds, while a polypeptide refers to a longer, continuous, unbranched chain. The precise sequence of amino acids within a peptide dictates its biological activity and structural properties. When associated with polymers, these bioactive peptide sequences can impart their inherent functionalities to the larger macromolecular structure.作者:JY Shu·2013·被引用次数:283—Peptide/protein-polymer conjugatesmake up a new class of soft matter comprising natural and synthetic building blocks. This association can be achieved through various synthetic strategies, leading to peptide/protein-polymer conjugates and hybrid materials.
One significant area of development is in the creation of poly(peptide) materials. These materials offer new properties that can be fine-tuned by the design of the oligopeptide sequence. The synthesis of such materials often involves sophisticated techniques.作者:S Shabani·2024·被引用次数:51—This Review focuses on several facets ofantimicrobial peptide-polymersincluding their synthesis, diversity, physicochemical properties and bacteria-killing ... For instance, RAFT polymerization is a robust and versatile process frequently employed for creating biomolecule-polymer conjugates, allowing for controlled synthesis of well-defined structures. Another approach involves the formation of poly-triazole-poly-peptide hybrid polymers, often referred to as clicked peptide polymers, which are constructed from repeating units of a 1,2,3-triazole and an oligopeptide2020年8月11日—In this work, we combined PISA with SAPs toprepare novel peptide–polymer hybrid nano-objects, thus harnessing the advantages of PISA and the self-assembling ....
The versatility of peptide polymers is further highlighted by the development of self-assembling peptide (SAP)–polymer hybrids作者:S Shabani·2024·被引用次数:51—This Review focuses on several facets ofantimicrobial peptide-polymersincluding their synthesis, diversity, physicochemical properties and bacteria-killing .... These materials combine peptides with defined sequences and polymers with tunable properties, leading to the formation of novel peptide–polymer hybrid nano-objects.2020年8月11日—In this work, we combined PISA with SAPs toprepare novel peptide–polymer hybrid nano-objects, thus harnessing the advantages of PISA and the self-assembling ... The ability of these peptides to self-assemble, forming structures such as homotetrameric, α-helical bundles of low-molecular-weight peptides, contributes to the creation of high-performance nanomaterials with controlled assembly and rigidity.
The applications of peptide polymers are diverse and continue to grow:
* Therapeutic Applications: Peptide–polymer conjugates (PPCs) are showing great promise in therapeutic applications. They are being investigated for use in wound dressing, bone tissue repair, antibacterial coatings for medical devices, nerve repair, tumor treatment, and oral health maintenance. The conjugation of a peptide with a suitably selected polymer can enhance its properties, addressing limitations such as poor solubility or instabilitySynthetic peptide branched polymers for antibacterial and .... Furthermore, polypeptide-based constructs are being established as polymeric nanomedicines for various disease treatments.作者:J Martin·2021·被引用次数:34—Peptides can be associated to polymerscombining the properties of various polymer backbones with those of bioactive peptide sequences.
* Antimicrobial Agents: Antimicrobial peptide-polymers are a key area of research, focusing on their synthesis, diversity, physicochemical properties, and bacteria-killing capabilities.Peptides are short chains of amino acids linked by peptide bonds. A polypeptide is a longer, continuous, unbranched peptide chain. Polypeptides that have a ... The role of polymers in improving the antimicrobial activity, stability, cytotoxicity, and bioavailability of peptides is a critical aspect of this research.
* Biomaterials: Polypeptides are uniquely qualified to serve as biomaterials due to their ability to undergo self-assembly and form structured materials. This makes them valuable in the development of responsive, adaptive, and interactive materials.
The advancement in understanding the structure and function of these complex molecules is also being aided by computational toolsSupramolecular Assembly and Thermogelation Strategies .... For instance, the AlphaFold Server provides highly accurate biomolecular structure predictions, which can be invaluable in designing and analyzing peptide polymer architectures.
In summary, the field of peptide polymers represents a significant frontier in materials science and biotechnology. By judiciously combining the biological specificity of peptides with the structural and functional versatility of polymers, researchers are developing advanced materials with tailored properties for a wide range of applications. The ongoing exploration of novel synthetic strategies, coupled with a deeper understanding of self-assembly and structure-property relationships, promises to unlock even more exciting possibilities for peptide polymers in the future.
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