Cargando…
A facile and general method for synthesis of antibiotic-free protein-based hydrogel: Wound dressing for the eradication of drug-resistant bacteria and biofilms
Antibacterial protein hydrogels are receiving increasing attention in the aspect of bacteria-infected-wound healing. However, bacterial drug resistance and biofilm infections lead to hard healing of wounds, thus the construction of biological agents that can overcome these issues is essential. Here,...
Autores principales: | , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
KeAi Publishing
2022
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8971583/ https://www.ncbi.nlm.nih.gov/pubmed/35415296 http://dx.doi.org/10.1016/j.bioactmat.2022.03.033 |
_version_ | 1784679666615844864 |
---|---|
author | Ouyang, Jiang Bu, Qingyue Tao, Na Chen, Mingkai Liu, Haijun Zhou, Jun Liu, Jinggong Deng, Bo Kong, Na Zhang, Xingcai Chen, Tianfeng Cao, Yihai Tao, Wei |
author_facet | Ouyang, Jiang Bu, Qingyue Tao, Na Chen, Mingkai Liu, Haijun Zhou, Jun Liu, Jinggong Deng, Bo Kong, Na Zhang, Xingcai Chen, Tianfeng Cao, Yihai Tao, Wei |
author_sort | Ouyang, Jiang |
collection | PubMed |
description | Antibacterial protein hydrogels are receiving increasing attention in the aspect of bacteria-infected-wound healing. However, bacterial drug resistance and biofilm infections lead to hard healing of wounds, thus the construction of biological agents that can overcome these issues is essential. Here, a simple and universal method to construct antibiotic-free protein hydrogel with excellent biocompatibility and superior antibacterial activity against drug-resistant bacteria and biofilms was developed. The green industrial microbicide tetrakis (hydroxymethyl) phosphonium sulfate (THPS) as cross-linking agent can be quickly cross-linked with model protein bovine serum albumin (BSA) to form antibacterial hydrogel through simple mixing without any other initiators, subsequently promoting drug-resistance bacteria-infected wound healing. This simple gelatinization strategy allows at least ten different proteins to form hydrogels (e.g. BSA, human serum albumin (HSA), egg albumin, chymotrypsin, trypsin, lysozyme, transferrin, myohemoglobin, hemoglobin, and phycocyanin) under the same conditions, showing prominent universality. Furthermore, drug-resistance bacteria and biofilm could be efficiently destroyed by the representative BSA hydrogel (B-Hydrogel) with antibacterial activity, overcoming biofilm-induced bacterial resistance. The in vivo study demonstrated that the B-Hydrogel as wound dressing can promote reepithelization to accelerate the healing of methicillin-resistant staphylococcus aureus (MRSA)-infected skin wounds without inducing significant side-effect. This readily accessible antibiotic-free protein-based hydrogel not only opens an avenue to provide a facile, feasible and general gelation strategy, but also exhibits promising application in hospital and community MRSA disinfection and treatment. |
format | Online Article Text |
id | pubmed-8971583 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | KeAi Publishing |
record_format | MEDLINE/PubMed |
spelling | pubmed-89715832022-04-11 A facile and general method for synthesis of antibiotic-free protein-based hydrogel: Wound dressing for the eradication of drug-resistant bacteria and biofilms Ouyang, Jiang Bu, Qingyue Tao, Na Chen, Mingkai Liu, Haijun Zhou, Jun Liu, Jinggong Deng, Bo Kong, Na Zhang, Xingcai Chen, Tianfeng Cao, Yihai Tao, Wei Bioact Mater Article Antibacterial protein hydrogels are receiving increasing attention in the aspect of bacteria-infected-wound healing. However, bacterial drug resistance and biofilm infections lead to hard healing of wounds, thus the construction of biological agents that can overcome these issues is essential. Here, a simple and universal method to construct antibiotic-free protein hydrogel with excellent biocompatibility and superior antibacterial activity against drug-resistant bacteria and biofilms was developed. The green industrial microbicide tetrakis (hydroxymethyl) phosphonium sulfate (THPS) as cross-linking agent can be quickly cross-linked with model protein bovine serum albumin (BSA) to form antibacterial hydrogel through simple mixing without any other initiators, subsequently promoting drug-resistance bacteria-infected wound healing. This simple gelatinization strategy allows at least ten different proteins to form hydrogels (e.g. BSA, human serum albumin (HSA), egg albumin, chymotrypsin, trypsin, lysozyme, transferrin, myohemoglobin, hemoglobin, and phycocyanin) under the same conditions, showing prominent universality. Furthermore, drug-resistance bacteria and biofilm could be efficiently destroyed by the representative BSA hydrogel (B-Hydrogel) with antibacterial activity, overcoming biofilm-induced bacterial resistance. The in vivo study demonstrated that the B-Hydrogel as wound dressing can promote reepithelization to accelerate the healing of methicillin-resistant staphylococcus aureus (MRSA)-infected skin wounds without inducing significant side-effect. This readily accessible antibiotic-free protein-based hydrogel not only opens an avenue to provide a facile, feasible and general gelation strategy, but also exhibits promising application in hospital and community MRSA disinfection and treatment. KeAi Publishing 2022-03-29 /pmc/articles/PMC8971583/ /pubmed/35415296 http://dx.doi.org/10.1016/j.bioactmat.2022.03.033 Text en © 2022 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/). |
spellingShingle | Article Ouyang, Jiang Bu, Qingyue Tao, Na Chen, Mingkai Liu, Haijun Zhou, Jun Liu, Jinggong Deng, Bo Kong, Na Zhang, Xingcai Chen, Tianfeng Cao, Yihai Tao, Wei A facile and general method for synthesis of antibiotic-free protein-based hydrogel: Wound dressing for the eradication of drug-resistant bacteria and biofilms |
title | A facile and general method for synthesis of antibiotic-free protein-based hydrogel: Wound dressing for the eradication of drug-resistant bacteria and biofilms |
title_full | A facile and general method for synthesis of antibiotic-free protein-based hydrogel: Wound dressing for the eradication of drug-resistant bacteria and biofilms |
title_fullStr | A facile and general method for synthesis of antibiotic-free protein-based hydrogel: Wound dressing for the eradication of drug-resistant bacteria and biofilms |
title_full_unstemmed | A facile and general method for synthesis of antibiotic-free protein-based hydrogel: Wound dressing for the eradication of drug-resistant bacteria and biofilms |
title_short | A facile and general method for synthesis of antibiotic-free protein-based hydrogel: Wound dressing for the eradication of drug-resistant bacteria and biofilms |
title_sort | facile and general method for synthesis of antibiotic-free protein-based hydrogel: wound dressing for the eradication of drug-resistant bacteria and biofilms |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8971583/ https://www.ncbi.nlm.nih.gov/pubmed/35415296 http://dx.doi.org/10.1016/j.bioactmat.2022.03.033 |
work_keys_str_mv | AT ouyangjiang afacileandgeneralmethodforsynthesisofantibioticfreeproteinbasedhydrogelwounddressingfortheeradicationofdrugresistantbacteriaandbiofilms AT buqingyue afacileandgeneralmethodforsynthesisofantibioticfreeproteinbasedhydrogelwounddressingfortheeradicationofdrugresistantbacteriaandbiofilms AT taona afacileandgeneralmethodforsynthesisofantibioticfreeproteinbasedhydrogelwounddressingfortheeradicationofdrugresistantbacteriaandbiofilms AT chenmingkai afacileandgeneralmethodforsynthesisofantibioticfreeproteinbasedhydrogelwounddressingfortheeradicationofdrugresistantbacteriaandbiofilms AT liuhaijun afacileandgeneralmethodforsynthesisofantibioticfreeproteinbasedhydrogelwounddressingfortheeradicationofdrugresistantbacteriaandbiofilms AT zhoujun afacileandgeneralmethodforsynthesisofantibioticfreeproteinbasedhydrogelwounddressingfortheeradicationofdrugresistantbacteriaandbiofilms AT liujinggong afacileandgeneralmethodforsynthesisofantibioticfreeproteinbasedhydrogelwounddressingfortheeradicationofdrugresistantbacteriaandbiofilms AT dengbo afacileandgeneralmethodforsynthesisofantibioticfreeproteinbasedhydrogelwounddressingfortheeradicationofdrugresistantbacteriaandbiofilms AT kongna afacileandgeneralmethodforsynthesisofantibioticfreeproteinbasedhydrogelwounddressingfortheeradicationofdrugresistantbacteriaandbiofilms AT zhangxingcai afacileandgeneralmethodforsynthesisofantibioticfreeproteinbasedhydrogelwounddressingfortheeradicationofdrugresistantbacteriaandbiofilms AT chentianfeng afacileandgeneralmethodforsynthesisofantibioticfreeproteinbasedhydrogelwounddressingfortheeradicationofdrugresistantbacteriaandbiofilms AT caoyihai afacileandgeneralmethodforsynthesisofantibioticfreeproteinbasedhydrogelwounddressingfortheeradicationofdrugresistantbacteriaandbiofilms AT taowei afacileandgeneralmethodforsynthesisofantibioticfreeproteinbasedhydrogelwounddressingfortheeradicationofdrugresistantbacteriaandbiofilms AT ouyangjiang facileandgeneralmethodforsynthesisofantibioticfreeproteinbasedhydrogelwounddressingfortheeradicationofdrugresistantbacteriaandbiofilms AT buqingyue facileandgeneralmethodforsynthesisofantibioticfreeproteinbasedhydrogelwounddressingfortheeradicationofdrugresistantbacteriaandbiofilms AT taona facileandgeneralmethodforsynthesisofantibioticfreeproteinbasedhydrogelwounddressingfortheeradicationofdrugresistantbacteriaandbiofilms AT chenmingkai facileandgeneralmethodforsynthesisofantibioticfreeproteinbasedhydrogelwounddressingfortheeradicationofdrugresistantbacteriaandbiofilms AT liuhaijun facileandgeneralmethodforsynthesisofantibioticfreeproteinbasedhydrogelwounddressingfortheeradicationofdrugresistantbacteriaandbiofilms AT zhoujun facileandgeneralmethodforsynthesisofantibioticfreeproteinbasedhydrogelwounddressingfortheeradicationofdrugresistantbacteriaandbiofilms AT liujinggong facileandgeneralmethodforsynthesisofantibioticfreeproteinbasedhydrogelwounddressingfortheeradicationofdrugresistantbacteriaandbiofilms AT dengbo facileandgeneralmethodforsynthesisofantibioticfreeproteinbasedhydrogelwounddressingfortheeradicationofdrugresistantbacteriaandbiofilms AT kongna facileandgeneralmethodforsynthesisofantibioticfreeproteinbasedhydrogelwounddressingfortheeradicationofdrugresistantbacteriaandbiofilms AT zhangxingcai facileandgeneralmethodforsynthesisofantibioticfreeproteinbasedhydrogelwounddressingfortheeradicationofdrugresistantbacteriaandbiofilms AT chentianfeng facileandgeneralmethodforsynthesisofantibioticfreeproteinbasedhydrogelwounddressingfortheeradicationofdrugresistantbacteriaandbiofilms AT caoyihai facileandgeneralmethodforsynthesisofantibioticfreeproteinbasedhydrogelwounddressingfortheeradicationofdrugresistantbacteriaandbiofilms AT taowei facileandgeneralmethodforsynthesisofantibioticfreeproteinbasedhydrogelwounddressingfortheeradicationofdrugresistantbacteriaandbiofilms |