Literature DB >> 31874224

Topical antimicrobial peptide formulations for wound healing: Current developments and future prospects.

Raj Kumar Thapa1, Dzung B Diep2, Hanne Hjorth Tønnesen3.   

Abstract

Antimicrobial peptides (AMPs) are the natural antibiotics recognized for their potent antibacterial and wound healing properties. Bare AMPs have limited activity following topical application attributable to their susceptibility to environment (hydrolysis, oxidation, photolysis), and wound (alkaline pH, proteolysis) related factors as well as minimal residence time. Therefore, the formulation of AMPs is essential to enhance stability, prolong delivery, and optimize effectiveness at the wound site. Different topical formulations of AMPs have been developed so far including nanoparticles, hydrogels, creams, ointments, and wafers to aid in controlling bacterial infection and enhance wound healing process in vivo. Herein, an overview is provided of the AMPs and current understanding of their formulations for topical wound healing applications along with suitable examples. Furthermore, future prospects for the development of effective combination AMP formulations are discussed. STATEMENT OF SIGNIFICANCE: Chronic wound infection and subsequent development of antibiotic resistance are serious clinical problems affecting millions of people worldwide. Antimicrobial peptides (AMPs) possess great potential in effectively killing the bacteria with minimal risk of resistance development. However, AMPs susceptibility to degradation following topical application limits their antimicrobial and wound healing effects. Therefore, development of an optimized topical formulation with high peptide stability and sustained AMP delivery is necessary to maximize the antimicrobial and wound healing effects. The present review provides an overview of the state-of-art in the field of topical AMP formulations for wound healing. Current developments in the field of topical AMP formulations are reviewed and future prospects for the development of effective combination AMP formulations are discussed.
Copyright © 2019. Published by Elsevier Ltd.

Entities:  

Keywords:  Antimicrobial peptide; Formulation; Infection; Topical application; Wound healing

Year:  2019        PMID: 31874224     DOI: 10.1016/j.actbio.2019.12.025

Source DB:  PubMed          Journal:  Acta Biomater        ISSN: 1742-7061            Impact factor:   8.947


  45 in total

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2.  The effects of incorporation of the counterparts and mimics of L-lysine on the antimicrobial activity, hemolytic activity, cytotoxicity and tryptic stability of antimicrobial peptide polybia-MPII.

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3.  Florfenicol-Polyarginine Conjugates Exhibit Promising Antibacterial Activity Against Resistant Strains.

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4.  Antimicrobial peptide CC34 attenuates intestinal inflammation via downregulation of the NF-κB signaling pathway.

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Journal:  Polymers (Basel)       Date:  2022-04-15       Impact factor: 4.967

Review 6.  Challenges and innovations in treating chronic and acute wound infections: from basic science to clinical practice.

Authors:  Xiaotong Ding; Qinghan Tang; Zeyu Xu; Ye Xu; Hao Zhang; Dongfeng Zheng; Shuqin Wang; Qian Tan; Joanneke Maitz; Peter K Maitz; Shaoping Yin; Yiwei Wang; Jun Chen
Journal:  Burns Trauma       Date:  2022-05-21

7.  Novel antibacterial hydrogels based on gelatin/polyvinyl-alcohol and graphene oxide/silver nanoconjugates: formulation, characterization, and preliminary biocompatibility evaluation.

Authors:  Jorge Luis Patarroyo; Javier Cifuentes; Laura N Muñoz; Juan C Cruz; Luis H Reyes
Journal:  Heliyon       Date:  2022-03-21

8.  LcCCL28-25, Derived from Piscine Chemokine, Exhibits Antimicrobial Activity against Gram-Negative and Gram-Positive Bacteria In Vitro and In Vivo.

Authors:  Juanjuan Su; Haimeng Li; Jingyang Hu; Danni Wang; Fengchao Zhang; Zheng Fu; Feng Han
Journal:  Microbiol Spectr       Date:  2022-05-26

9.  In vitro and in vivo antibacterial properties of peptide AMC-109 impregnated wound dressings and gels.

Authors:  Joakim Håkansson; Jorunn Pauline Cavanagh; Wenche Stensen; Bjarte Mortensen; John-Sigurd Svendsen; Johan Svenson
Journal:  J Antibiot (Tokyo)       Date:  2021-01-25       Impact factor: 2.649

Review 10.  Nanoclay/Polymer-Based Hydrogels and Enzyme-Loaded Nanostructures for Wound Healing Applications.

Authors:  Angel M Villalba-Rodríguez; Sara Martínez-González; Juan Eduardo Sosa-Hernández; Roberto Parra-Saldívar; Muhammad Bilal; Hafiz M N Iqbal
Journal:  Gels       Date:  2021-05-14
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