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pH responsive superporogen combined with PDT based on poly Ce6 ionic liquid grafted on SiO(2) for combating MRSA biofilm infection

Background: Biofilm infection caused by multidrug-resistant bacteria is difficult to eradicate by conventional therapies. Photodynamic therapy (PDT) is an effective antibacterial method for fighting against biofilm infection. However, the blocked photosensitizers outside of biofilm greatly limit the...

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Autores principales: Wang, Chaoli, Chen, Peng, Qiao, Youbei, Kang, Yuan, Yan, Chaoren, Yu, Zhe, Wang, Jian, He, Xin, Wu, Hong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7163436/
https://www.ncbi.nlm.nih.gov/pubmed/32308750
http://dx.doi.org/10.7150/thno.42922
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author Wang, Chaoli
Chen, Peng
Qiao, Youbei
Kang, Yuan
Yan, Chaoren
Yu, Zhe
Wang, Jian
He, Xin
Wu, Hong
author_facet Wang, Chaoli
Chen, Peng
Qiao, Youbei
Kang, Yuan
Yan, Chaoren
Yu, Zhe
Wang, Jian
He, Xin
Wu, Hong
author_sort Wang, Chaoli
collection PubMed
description Background: Biofilm infection caused by multidrug-resistant bacteria is difficult to eradicate by conventional therapies. Photodynamic therapy (PDT) is an effective antibacterial method for fighting against biofilm infection. However, the blocked photosensitizers outside of biofilm greatly limit the efficacy of PDT. Methods: Herein, a novel acid-responsive superporogen and photosensitizer (SiO(2)-P(Ce6-IL)) was developed. Because of the protonation of the photosensitizer and the high binding energy of the polyionic liquid, SiO(2)-P(Ce6-IL) changed to positive SiO(2)-P(IL)(+) in an acidic microenvironment of biofilm infection. SiO(2)-P(IL)(+) could combine with negatively charged extracellular polymeric substances (EPS) and create holes to remove the biofilm barrier. To strengthen the interaction between SiO(2)-P(IL)(+) and EPS, SiO(2)-P(IL)(+) of high charge density was prepared by grafting the high-density initiation site of ATRP onto the surface of the SiO(2) base. Results: Due to the rapid protonation rate of COO(-) and the strong binding energy of SiO(2)-P(IL)(+) with EPS, SiO(2)-P(Ce6-IL) could release 90% of Ce6 in 10 s. With the stronger electrostatic and hydrophobic interaction of SiO(2)-P(IL)(+) with EPS, the surface potential, hydrophobicity, adhesion and mechanical strength of biofilm were changed, and holes in the biofilm were created in 10 min. Combining with the release of photosensitizers and the porous structure of the biofilm, Ce6 was efficiently concentrated in the biofilm. The in vitro and in vivo antibacterial experiments proved that SiO(2)-P(Ce6-IL) dramatically improved the PDT efficacy against MRSA biofilm infection. Conclusion: These findings suggest that SiO(2)-P(Ce6-IL) could rapidly increase the concentration of photosensitizer in biofilm and it is an effective therapy for combating biofilm infection.
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spelling pubmed-71634362020-04-17 pH responsive superporogen combined with PDT based on poly Ce6 ionic liquid grafted on SiO(2) for combating MRSA biofilm infection Wang, Chaoli Chen, Peng Qiao, Youbei Kang, Yuan Yan, Chaoren Yu, Zhe Wang, Jian He, Xin Wu, Hong Theranostics Research Paper Background: Biofilm infection caused by multidrug-resistant bacteria is difficult to eradicate by conventional therapies. Photodynamic therapy (PDT) is an effective antibacterial method for fighting against biofilm infection. However, the blocked photosensitizers outside of biofilm greatly limit the efficacy of PDT. Methods: Herein, a novel acid-responsive superporogen and photosensitizer (SiO(2)-P(Ce6-IL)) was developed. Because of the protonation of the photosensitizer and the high binding energy of the polyionic liquid, SiO(2)-P(Ce6-IL) changed to positive SiO(2)-P(IL)(+) in an acidic microenvironment of biofilm infection. SiO(2)-P(IL)(+) could combine with negatively charged extracellular polymeric substances (EPS) and create holes to remove the biofilm barrier. To strengthen the interaction between SiO(2)-P(IL)(+) and EPS, SiO(2)-P(IL)(+) of high charge density was prepared by grafting the high-density initiation site of ATRP onto the surface of the SiO(2) base. Results: Due to the rapid protonation rate of COO(-) and the strong binding energy of SiO(2)-P(IL)(+) with EPS, SiO(2)-P(Ce6-IL) could release 90% of Ce6 in 10 s. With the stronger electrostatic and hydrophobic interaction of SiO(2)-P(IL)(+) with EPS, the surface potential, hydrophobicity, adhesion and mechanical strength of biofilm were changed, and holes in the biofilm were created in 10 min. Combining with the release of photosensitizers and the porous structure of the biofilm, Ce6 was efficiently concentrated in the biofilm. The in vitro and in vivo antibacterial experiments proved that SiO(2)-P(Ce6-IL) dramatically improved the PDT efficacy against MRSA biofilm infection. Conclusion: These findings suggest that SiO(2)-P(Ce6-IL) could rapidly increase the concentration of photosensitizer in biofilm and it is an effective therapy for combating biofilm infection. Ivyspring International Publisher 2020-03-26 /pmc/articles/PMC7163436/ /pubmed/32308750 http://dx.doi.org/10.7150/thno.42922 Text en © The author(s) This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Wang, Chaoli
Chen, Peng
Qiao, Youbei
Kang, Yuan
Yan, Chaoren
Yu, Zhe
Wang, Jian
He, Xin
Wu, Hong
pH responsive superporogen combined with PDT based on poly Ce6 ionic liquid grafted on SiO(2) for combating MRSA biofilm infection
title pH responsive superporogen combined with PDT based on poly Ce6 ionic liquid grafted on SiO(2) for combating MRSA biofilm infection
title_full pH responsive superporogen combined with PDT based on poly Ce6 ionic liquid grafted on SiO(2) for combating MRSA biofilm infection
title_fullStr pH responsive superporogen combined with PDT based on poly Ce6 ionic liquid grafted on SiO(2) for combating MRSA biofilm infection
title_full_unstemmed pH responsive superporogen combined with PDT based on poly Ce6 ionic liquid grafted on SiO(2) for combating MRSA biofilm infection
title_short pH responsive superporogen combined with PDT based on poly Ce6 ionic liquid grafted on SiO(2) for combating MRSA biofilm infection
title_sort ph responsive superporogen combined with pdt based on poly ce6 ionic liquid grafted on sio(2) for combating mrsa biofilm infection
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7163436/
https://www.ncbi.nlm.nih.gov/pubmed/32308750
http://dx.doi.org/10.7150/thno.42922
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