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Hydrogel Containing Nanoparticle-Stabilized Liposomes for Topical Antimicrobial Delivery

[Image: see text] Adsorbing small charged nanoparticles onto the outer surfaces of liposomes has become an effective strategy to stabilize liposomes against fusion prior to “seeing” target bacteria, yet allow them to fuse with the bacteria upon arrival at the infection sites. As a result, nanopartic...

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Autores principales: Gao, Weiwei, Vecchio, Drew, Li, Jieming, Zhu, Jingying, Zhang, Qiangzhe, Fu, Victoria, Li, Jiayang, Thamphiwatana, Soracha, Lu, Diannan, Zhang, Liangfang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2014
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4004330/
https://www.ncbi.nlm.nih.gov/pubmed/24483239
http://dx.doi.org/10.1021/nn500110a
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author Gao, Weiwei
Vecchio, Drew
Li, Jieming
Zhu, Jingying
Zhang, Qiangzhe
Fu, Victoria
Li, Jiayang
Thamphiwatana, Soracha
Lu, Diannan
Zhang, Liangfang
author_facet Gao, Weiwei
Vecchio, Drew
Li, Jieming
Zhu, Jingying
Zhang, Qiangzhe
Fu, Victoria
Li, Jiayang
Thamphiwatana, Soracha
Lu, Diannan
Zhang, Liangfang
author_sort Gao, Weiwei
collection PubMed
description [Image: see text] Adsorbing small charged nanoparticles onto the outer surfaces of liposomes has become an effective strategy to stabilize liposomes against fusion prior to “seeing” target bacteria, yet allow them to fuse with the bacteria upon arrival at the infection sites. As a result, nanoparticle-stabilized liposomes have become an emerging drug delivery platform for treatment of various bacterial infections. To facilitate the translation of this platform for clinical tests and uses, herein we integrate nanoparticle-stabilized liposomes with hydrogel technology for more effective and sustained topical drug delivery. The hydrogel formulation not only preserves the structural integrity of the nanoparticle-stabilized liposomes, but also allows for controllable viscoeleasticity and tunable liposome release rate. Using Staphylococcus aureus bacteria as a model pathogen, we demonstrate that the hydrogel formulation can effectively release nanoparticle-stabilized liposomes to the bacterial culture, which subsequently fuse with bacterial membrane in a pH-dependent manner. When topically applied onto mouse skin, the hydrogel formulation does not generate any observable skin toxicity within a 7-day treatment. Collectively, the hydrogel containing nanoparticle-stabilized liposomes hold great promise for topical applications against various microbial infections.
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spelling pubmed-40043302015-02-01 Hydrogel Containing Nanoparticle-Stabilized Liposomes for Topical Antimicrobial Delivery Gao, Weiwei Vecchio, Drew Li, Jieming Zhu, Jingying Zhang, Qiangzhe Fu, Victoria Li, Jiayang Thamphiwatana, Soracha Lu, Diannan Zhang, Liangfang ACS Nano [Image: see text] Adsorbing small charged nanoparticles onto the outer surfaces of liposomes has become an effective strategy to stabilize liposomes against fusion prior to “seeing” target bacteria, yet allow them to fuse with the bacteria upon arrival at the infection sites. As a result, nanoparticle-stabilized liposomes have become an emerging drug delivery platform for treatment of various bacterial infections. To facilitate the translation of this platform for clinical tests and uses, herein we integrate nanoparticle-stabilized liposomes with hydrogel technology for more effective and sustained topical drug delivery. The hydrogel formulation not only preserves the structural integrity of the nanoparticle-stabilized liposomes, but also allows for controllable viscoeleasticity and tunable liposome release rate. Using Staphylococcus aureus bacteria as a model pathogen, we demonstrate that the hydrogel formulation can effectively release nanoparticle-stabilized liposomes to the bacterial culture, which subsequently fuse with bacterial membrane in a pH-dependent manner. When topically applied onto mouse skin, the hydrogel formulation does not generate any observable skin toxicity within a 7-day treatment. Collectively, the hydrogel containing nanoparticle-stabilized liposomes hold great promise for topical applications against various microbial infections. American Chemical Society 2014-02-01 2014-03-25 /pmc/articles/PMC4004330/ /pubmed/24483239 http://dx.doi.org/10.1021/nn500110a Text en Copyright © 2014 American Chemical Society
spellingShingle Gao, Weiwei
Vecchio, Drew
Li, Jieming
Zhu, Jingying
Zhang, Qiangzhe
Fu, Victoria
Li, Jiayang
Thamphiwatana, Soracha
Lu, Diannan
Zhang, Liangfang
Hydrogel Containing Nanoparticle-Stabilized Liposomes for Topical Antimicrobial Delivery
title Hydrogel Containing Nanoparticle-Stabilized Liposomes for Topical Antimicrobial Delivery
title_full Hydrogel Containing Nanoparticle-Stabilized Liposomes for Topical Antimicrobial Delivery
title_fullStr Hydrogel Containing Nanoparticle-Stabilized Liposomes for Topical Antimicrobial Delivery
title_full_unstemmed Hydrogel Containing Nanoparticle-Stabilized Liposomes for Topical Antimicrobial Delivery
title_short Hydrogel Containing Nanoparticle-Stabilized Liposomes for Topical Antimicrobial Delivery
title_sort hydrogel containing nanoparticle-stabilized liposomes for topical antimicrobial delivery
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4004330/
https://www.ncbi.nlm.nih.gov/pubmed/24483239
http://dx.doi.org/10.1021/nn500110a
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