Cargando…

CD54(+) rabbit adipose-derived stem cells overexpressing HIF-1α facilitate vascularized fat flap regeneration

Fat flap transplantation is frequently performed in patients suffering from soft tissue defects resulting from disease or trauma. This study explored the feasibility of constructing vascularized fat flaps using rabbit adipose-derived stem cells (rASCs) and collagen scaffolds in a rabbit model. We ev...

Descripción completa

Detalles Bibliográficos
Autores principales: Li, De-Quan, Lu, Guan-Ming, Liang, Yi-Dan, Liang, Zhi-Jie, Huang, Min-Hong, Peng, Qi-Liu, Zou, Dong-Hua, Gu, Rong-He, Xu, Fang-Tian, Gao, Hui, Chen, Zhen-Dong, Chi, Guang-Yi, Wei, Zhong-Heng, Chen, Li, Li, Hong-Mian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5564529/
https://www.ncbi.nlm.nih.gov/pubmed/28423354
http://dx.doi.org/10.18632/oncotarget.16777
_version_ 1783258249325182976
author Li, De-Quan
Lu, Guan-Ming
Liang, Yi-Dan
Liang, Zhi-Jie
Huang, Min-Hong
Peng, Qi-Liu
Zou, Dong-Hua
Gu, Rong-He
Xu, Fang-Tian
Gao, Hui
Chen, Zhen-Dong
Chi, Guang-Yi
Wei, Zhong-Heng
Chen, Li
Li, Hong-Mian
author_facet Li, De-Quan
Lu, Guan-Ming
Liang, Yi-Dan
Liang, Zhi-Jie
Huang, Min-Hong
Peng, Qi-Liu
Zou, Dong-Hua
Gu, Rong-He
Xu, Fang-Tian
Gao, Hui
Chen, Zhen-Dong
Chi, Guang-Yi
Wei, Zhong-Heng
Chen, Li
Li, Hong-Mian
author_sort Li, De-Quan
collection PubMed
description Fat flap transplantation is frequently performed in patients suffering from soft tissue defects resulting from disease or trauma. This study explored the feasibility of constructing vascularized fat flaps using rabbit adipose-derived stem cells (rASCs) and collagen scaffolds in a rabbit model. We evaluated rASCs proliferation, paracrine function, adipogenesis, vascularization, and CD54 expression, with or without HIF-1α transfection in vitro and in vivo. We observed that adipogenic differentiation potential was greater in rASCs with high CD54 expression (CD54(+)rASCs) than in those with low expression (CD54(–)rASCs), both in vitro and in vivo. HIF-1α overexpression not only augmented this effect, but also enhanced cell proliferation and paracrine function in vitro. We also demonstrated that HIF-1α-transfected CD54(+)rASCs showed enhanced paracrine function and adipogenic capacity, and that paracrine function increases expression of angiogenesis-related markers. Thus, CD54(+)rASCs overexpressing HIF-1α enhanced large volume vascularized fat flap regeneration in rabbits, suggesting CD54 may be an ideal candidate marker for ASCs adipogenic differentiation.
format Online
Article
Text
id pubmed-5564529
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Impact Journals LLC
record_format MEDLINE/PubMed
spelling pubmed-55645292017-08-23 CD54(+) rabbit adipose-derived stem cells overexpressing HIF-1α facilitate vascularized fat flap regeneration Li, De-Quan Lu, Guan-Ming Liang, Yi-Dan Liang, Zhi-Jie Huang, Min-Hong Peng, Qi-Liu Zou, Dong-Hua Gu, Rong-He Xu, Fang-Tian Gao, Hui Chen, Zhen-Dong Chi, Guang-Yi Wei, Zhong-Heng Chen, Li Li, Hong-Mian Oncotarget Research Paper Fat flap transplantation is frequently performed in patients suffering from soft tissue defects resulting from disease or trauma. This study explored the feasibility of constructing vascularized fat flaps using rabbit adipose-derived stem cells (rASCs) and collagen scaffolds in a rabbit model. We evaluated rASCs proliferation, paracrine function, adipogenesis, vascularization, and CD54 expression, with or without HIF-1α transfection in vitro and in vivo. We observed that adipogenic differentiation potential was greater in rASCs with high CD54 expression (CD54(+)rASCs) than in those with low expression (CD54(–)rASCs), both in vitro and in vivo. HIF-1α overexpression not only augmented this effect, but also enhanced cell proliferation and paracrine function in vitro. We also demonstrated that HIF-1α-transfected CD54(+)rASCs showed enhanced paracrine function and adipogenic capacity, and that paracrine function increases expression of angiogenesis-related markers. Thus, CD54(+)rASCs overexpressing HIF-1α enhanced large volume vascularized fat flap regeneration in rabbits, suggesting CD54 may be an ideal candidate marker for ASCs adipogenic differentiation. Impact Journals LLC 2017-04-01 /pmc/articles/PMC5564529/ /pubmed/28423354 http://dx.doi.org/10.18632/oncotarget.16777 Text en Copyright: © 2017 Li et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License 3.0 (http://creativecommons.org/licenses/by/3.0/) (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Li, De-Quan
Lu, Guan-Ming
Liang, Yi-Dan
Liang, Zhi-Jie
Huang, Min-Hong
Peng, Qi-Liu
Zou, Dong-Hua
Gu, Rong-He
Xu, Fang-Tian
Gao, Hui
Chen, Zhen-Dong
Chi, Guang-Yi
Wei, Zhong-Heng
Chen, Li
Li, Hong-Mian
CD54(+) rabbit adipose-derived stem cells overexpressing HIF-1α facilitate vascularized fat flap regeneration
title CD54(+) rabbit adipose-derived stem cells overexpressing HIF-1α facilitate vascularized fat flap regeneration
title_full CD54(+) rabbit adipose-derived stem cells overexpressing HIF-1α facilitate vascularized fat flap regeneration
title_fullStr CD54(+) rabbit adipose-derived stem cells overexpressing HIF-1α facilitate vascularized fat flap regeneration
title_full_unstemmed CD54(+) rabbit adipose-derived stem cells overexpressing HIF-1α facilitate vascularized fat flap regeneration
title_short CD54(+) rabbit adipose-derived stem cells overexpressing HIF-1α facilitate vascularized fat flap regeneration
title_sort cd54(+) rabbit adipose-derived stem cells overexpressing hif-1α facilitate vascularized fat flap regeneration
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5564529/
https://www.ncbi.nlm.nih.gov/pubmed/28423354
http://dx.doi.org/10.18632/oncotarget.16777
work_keys_str_mv AT lidequan cd54rabbitadiposederivedstemcellsoverexpressinghif1afacilitatevascularizedfatflapregeneration
AT luguanming cd54rabbitadiposederivedstemcellsoverexpressinghif1afacilitatevascularizedfatflapregeneration
AT liangyidan cd54rabbitadiposederivedstemcellsoverexpressinghif1afacilitatevascularizedfatflapregeneration
AT liangzhijie cd54rabbitadiposederivedstemcellsoverexpressinghif1afacilitatevascularizedfatflapregeneration
AT huangminhong cd54rabbitadiposederivedstemcellsoverexpressinghif1afacilitatevascularizedfatflapregeneration
AT pengqiliu cd54rabbitadiposederivedstemcellsoverexpressinghif1afacilitatevascularizedfatflapregeneration
AT zoudonghua cd54rabbitadiposederivedstemcellsoverexpressinghif1afacilitatevascularizedfatflapregeneration
AT guronghe cd54rabbitadiposederivedstemcellsoverexpressinghif1afacilitatevascularizedfatflapregeneration
AT xufangtian cd54rabbitadiposederivedstemcellsoverexpressinghif1afacilitatevascularizedfatflapregeneration
AT gaohui cd54rabbitadiposederivedstemcellsoverexpressinghif1afacilitatevascularizedfatflapregeneration
AT chenzhendong cd54rabbitadiposederivedstemcellsoverexpressinghif1afacilitatevascularizedfatflapregeneration
AT chiguangyi cd54rabbitadiposederivedstemcellsoverexpressinghif1afacilitatevascularizedfatflapregeneration
AT weizhongheng cd54rabbitadiposederivedstemcellsoverexpressinghif1afacilitatevascularizedfatflapregeneration
AT chenli cd54rabbitadiposederivedstemcellsoverexpressinghif1afacilitatevascularizedfatflapregeneration
AT lihongmian cd54rabbitadiposederivedstemcellsoverexpressinghif1afacilitatevascularizedfatflapregeneration