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Poloxam Thermosensitive Hydrogels Loaded with hFGF2-Linked Camelina Lipid Droplets Accelerate Skin Regeneration in Deep Second-Degree Burns

Burn injuries are difficult to manage due to the defect of large skin tissues, leading to major disability or even death. Human fibroblast growth factor 2 (hFGF2) is known to promote burn wound healing. However, direct administration of hFGF2 to the wound area would affect the bioactivity. To provid...

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Autores principales: Zhang, Yuan, He, Wanying, Zhang, Shuhan, Hu, Xingli, Sun, Siming, Gao, Hongtao, Kong, Jie, Liu, Hongxiang, Li, Haiyan, Liu, Xin, Cheng, Yan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9657430/
https://www.ncbi.nlm.nih.gov/pubmed/36361508
http://dx.doi.org/10.3390/ijms232112716
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author Zhang, Yuan
He, Wanying
Zhang, Shuhan
Hu, Xingli
Sun, Siming
Gao, Hongtao
Kong, Jie
Liu, Hongxiang
Li, Haiyan
Liu, Xin
Cheng, Yan
author_facet Zhang, Yuan
He, Wanying
Zhang, Shuhan
Hu, Xingli
Sun, Siming
Gao, Hongtao
Kong, Jie
Liu, Hongxiang
Li, Haiyan
Liu, Xin
Cheng, Yan
author_sort Zhang, Yuan
collection PubMed
description Burn injuries are difficult to manage due to the defect of large skin tissues, leading to major disability or even death. Human fibroblast growth factor 2 (hFGF2) is known to promote burn wound healing. However, direct administration of hFGF2 to the wound area would affect the bioactivity. To provide a supportive environment for hFGF2 and control its release in a steady fashion, in this research, we developed novel thermosensitive poloxam hydrogels delivered with hFGF2-linked Camelina lipid droplets (CLD-hFGF2 hydrogels). Cryopreserved scanning electron microscopy (SEM) results indicated that the incorporation of CLD-hFGF2 does not significantly affect the inner structure of hydrogels. The rheological properties showed that CLD-hFGF2 hydrogels gelated in response to temperature, thus optimizing the delivery method. In vitro, CLD-hFGF2 could be released from hydrogels for 3 days after drug delivery (the release rate was 72%), and the release solution could still promote the proliferation and migration of NIH3T3 cells. In vivo, compared with hydrogels alone or with direct CLD-hFGF2 administration, CLD-hFGF2 hydrogels had the most obvious effect on deep second-degree burn wound healing. This work indicates that CLD-hFGF2 hydrogels have potential application value in burn wound healing.
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spelling pubmed-96574302022-11-15 Poloxam Thermosensitive Hydrogels Loaded with hFGF2-Linked Camelina Lipid Droplets Accelerate Skin Regeneration in Deep Second-Degree Burns Zhang, Yuan He, Wanying Zhang, Shuhan Hu, Xingli Sun, Siming Gao, Hongtao Kong, Jie Liu, Hongxiang Li, Haiyan Liu, Xin Cheng, Yan Int J Mol Sci Article Burn injuries are difficult to manage due to the defect of large skin tissues, leading to major disability or even death. Human fibroblast growth factor 2 (hFGF2) is known to promote burn wound healing. However, direct administration of hFGF2 to the wound area would affect the bioactivity. To provide a supportive environment for hFGF2 and control its release in a steady fashion, in this research, we developed novel thermosensitive poloxam hydrogels delivered with hFGF2-linked Camelina lipid droplets (CLD-hFGF2 hydrogels). Cryopreserved scanning electron microscopy (SEM) results indicated that the incorporation of CLD-hFGF2 does not significantly affect the inner structure of hydrogels. The rheological properties showed that CLD-hFGF2 hydrogels gelated in response to temperature, thus optimizing the delivery method. In vitro, CLD-hFGF2 could be released from hydrogels for 3 days after drug delivery (the release rate was 72%), and the release solution could still promote the proliferation and migration of NIH3T3 cells. In vivo, compared with hydrogels alone or with direct CLD-hFGF2 administration, CLD-hFGF2 hydrogels had the most obvious effect on deep second-degree burn wound healing. This work indicates that CLD-hFGF2 hydrogels have potential application value in burn wound healing. MDPI 2022-10-22 /pmc/articles/PMC9657430/ /pubmed/36361508 http://dx.doi.org/10.3390/ijms232112716 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zhang, Yuan
He, Wanying
Zhang, Shuhan
Hu, Xingli
Sun, Siming
Gao, Hongtao
Kong, Jie
Liu, Hongxiang
Li, Haiyan
Liu, Xin
Cheng, Yan
Poloxam Thermosensitive Hydrogels Loaded with hFGF2-Linked Camelina Lipid Droplets Accelerate Skin Regeneration in Deep Second-Degree Burns
title Poloxam Thermosensitive Hydrogels Loaded with hFGF2-Linked Camelina Lipid Droplets Accelerate Skin Regeneration in Deep Second-Degree Burns
title_full Poloxam Thermosensitive Hydrogels Loaded with hFGF2-Linked Camelina Lipid Droplets Accelerate Skin Regeneration in Deep Second-Degree Burns
title_fullStr Poloxam Thermosensitive Hydrogels Loaded with hFGF2-Linked Camelina Lipid Droplets Accelerate Skin Regeneration in Deep Second-Degree Burns
title_full_unstemmed Poloxam Thermosensitive Hydrogels Loaded with hFGF2-Linked Camelina Lipid Droplets Accelerate Skin Regeneration in Deep Second-Degree Burns
title_short Poloxam Thermosensitive Hydrogels Loaded with hFGF2-Linked Camelina Lipid Droplets Accelerate Skin Regeneration in Deep Second-Degree Burns
title_sort poloxam thermosensitive hydrogels loaded with hfgf2-linked camelina lipid droplets accelerate skin regeneration in deep second-degree burns
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9657430/
https://www.ncbi.nlm.nih.gov/pubmed/36361508
http://dx.doi.org/10.3390/ijms232112716
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