A new method of wound treatment: targeted therapy of skin wounds with reactive oxygen species-responsive nanoparticles containing SDF-1α

Tao Tang,1,* Hao Jiang,1,* Yuan Yu,2,* Fang He,1 Shi-zhao Ji,1 Ying-ying Liu,1 Zhong-shan Wang,1 Shi-chu Xiao,1 Cui Tang,3 Guang-Yi Wang,1 Zhao-Fan Xia1 1Department of Burn Surgery, The Second Military Medical University Affiliated Changhai Hospital, 2Department of Pharmaceutics, School of Pharmacy...

Full description

Bibliographic Details
Main Authors: Tang T, Jiang H, Yu Y, He F, Ji SZ, Liu YY, Wang ZS, Xiao SC, Tang C, Wang GY, Xia ZF
Format: Article
Language:English
Published: Dove Medical Press 2015-10-01
Series:International Journal of Nanomedicine
Online Access:https://www.dovepress.com/a-new-method-of-wound-treatment-targeted-therapy-of-skin-wounds-with-r-peer-reviewed-article-IJN
id doaj-ae7a602fe39148f1afa395bc83c1bf21
record_format Article
spelling doaj-ae7a602fe39148f1afa395bc83c1bf212020-11-24T22:08:12ZengDove Medical PressInternational Journal of Nanomedicine1178-20132015-10-012015default6571658524219A new method of wound treatment: targeted therapy of skin wounds with reactive oxygen species-responsive nanoparticles containing SDF-1αTang TJiang HYu YHe FJi SZLiu YYWang ZSXiao SCTang CWang GYXia ZFTao Tang,1,* Hao Jiang,1,* Yuan Yu,2,* Fang He,1 Shi-zhao Ji,1 Ying-ying Liu,1 Zhong-shan Wang,1 Shi-chu Xiao,1 Cui Tang,3 Guang-Yi Wang,1 Zhao-Fan Xia1 1Department of Burn Surgery, The Second Military Medical University Affiliated Changhai Hospital, 2Department of Pharmaceutics, School of Pharmacy, The Second Military Medical University, 3State Key Laboratory of Genetic Engineering, Department of Pharmaceutical Sciences, School of Life Sciences, Fudan University, Shanghai, People’s Republic of China *These authors contributed equally to this work Objective: To accelerate wound healing through promoting vascularization by using reactive oxygen species (ROS)-responsive nanoparticles loaded with stromal cell-derived factor-1α (SDF-1α).Methods: The ROS-reactive nanomaterial poly-(1,4-phenyleneacetone dimethylene thioketal) was synthesized, and its physical and chemical properties were characterized. ROS-responsive nanoparticles containing SDF-1α were prepared through a multiple emulsion solvent evaporation method. The loading capacity, stability, activity of the encapsulated protein, toxicity, and in vivo distribution of these nanoparticles were determined. These nanoparticles were administered by intravenous infusion to mice with full-thickness skin defects to study their effects on the directed chemotaxis of bone marrow mesenchymal stem cells, wound vascularization, and wound healing.Results: The synthesized ROS-reactive organic polymer poly-(1,4-phenyleneacetone dimethylene thioketal) possessed a molecular weight of approximately 11.5 kDa with a dispersity of 1.97. ROS-responsive nanoparticles containing SDF-1α were prepared with an average diameter of 110 nm and a drug loading capacity of 1.8%. The encapsulation process showed minimal effects on the activity of SDF-1α, and it could be effectively released from the nanoparticles in the presence of ROS. Encapsulated SDF-1α could exist for a long time in blood. In mice with full-thickness skin defects, SDF-1α was effectively released and targeted to the wounds, thus promoting the chemotaxis of bone marrow mesenchymal stem cells toward the wound and its periphery, inducing wound vascularization, and accelerating wound healing. Keywords: reactive oxygen species, stromal cell-derived factor-1α, bone marrow mesenchymal stem cells, wound healinghttps://www.dovepress.com/a-new-method-of-wound-treatment-targeted-therapy-of-skin-wounds-with-r-peer-reviewed-article-IJN
collection DOAJ
language English
format Article
sources DOAJ
author Tang T
Jiang H
Yu Y
He F
Ji SZ
Liu YY
Wang ZS
Xiao SC
Tang C
Wang GY
Xia ZF
spellingShingle Tang T
Jiang H
Yu Y
He F
Ji SZ
Liu YY
Wang ZS
Xiao SC
Tang C
Wang GY
Xia ZF
A new method of wound treatment: targeted therapy of skin wounds with reactive oxygen species-responsive nanoparticles containing SDF-1α
International Journal of Nanomedicine
author_facet Tang T
Jiang H
Yu Y
He F
Ji SZ
Liu YY
Wang ZS
Xiao SC
Tang C
Wang GY
Xia ZF
author_sort Tang T
title A new method of wound treatment: targeted therapy of skin wounds with reactive oxygen species-responsive nanoparticles containing SDF-1α
title_short A new method of wound treatment: targeted therapy of skin wounds with reactive oxygen species-responsive nanoparticles containing SDF-1α
title_full A new method of wound treatment: targeted therapy of skin wounds with reactive oxygen species-responsive nanoparticles containing SDF-1α
title_fullStr A new method of wound treatment: targeted therapy of skin wounds with reactive oxygen species-responsive nanoparticles containing SDF-1α
title_full_unstemmed A new method of wound treatment: targeted therapy of skin wounds with reactive oxygen species-responsive nanoparticles containing SDF-1α
title_sort new method of wound treatment: targeted therapy of skin wounds with reactive oxygen species-responsive nanoparticles containing sdf-1α
publisher Dove Medical Press
series International Journal of Nanomedicine
issn 1178-2013
publishDate 2015-10-01
description Tao Tang,1,* Hao Jiang,1,* Yuan Yu,2,* Fang He,1 Shi-zhao Ji,1 Ying-ying Liu,1 Zhong-shan Wang,1 Shi-chu Xiao,1 Cui Tang,3 Guang-Yi Wang,1 Zhao-Fan Xia1 1Department of Burn Surgery, The Second Military Medical University Affiliated Changhai Hospital, 2Department of Pharmaceutics, School of Pharmacy, The Second Military Medical University, 3State Key Laboratory of Genetic Engineering, Department of Pharmaceutical Sciences, School of Life Sciences, Fudan University, Shanghai, People’s Republic of China *These authors contributed equally to this work Objective: To accelerate wound healing through promoting vascularization by using reactive oxygen species (ROS)-responsive nanoparticles loaded with stromal cell-derived factor-1α (SDF-1α).Methods: The ROS-reactive nanomaterial poly-(1,4-phenyleneacetone dimethylene thioketal) was synthesized, and its physical and chemical properties were characterized. ROS-responsive nanoparticles containing SDF-1α were prepared through a multiple emulsion solvent evaporation method. The loading capacity, stability, activity of the encapsulated protein, toxicity, and in vivo distribution of these nanoparticles were determined. These nanoparticles were administered by intravenous infusion to mice with full-thickness skin defects to study their effects on the directed chemotaxis of bone marrow mesenchymal stem cells, wound vascularization, and wound healing.Results: The synthesized ROS-reactive organic polymer poly-(1,4-phenyleneacetone dimethylene thioketal) possessed a molecular weight of approximately 11.5 kDa with a dispersity of 1.97. ROS-responsive nanoparticles containing SDF-1α were prepared with an average diameter of 110 nm and a drug loading capacity of 1.8%. The encapsulation process showed minimal effects on the activity of SDF-1α, and it could be effectively released from the nanoparticles in the presence of ROS. Encapsulated SDF-1α could exist for a long time in blood. In mice with full-thickness skin defects, SDF-1α was effectively released and targeted to the wounds, thus promoting the chemotaxis of bone marrow mesenchymal stem cells toward the wound and its periphery, inducing wound vascularization, and accelerating wound healing. Keywords: reactive oxygen species, stromal cell-derived factor-1α, bone marrow mesenchymal stem cells, wound healing
url https://www.dovepress.com/a-new-method-of-wound-treatment-targeted-therapy-of-skin-wounds-with-r-peer-reviewed-article-IJN
work_keys_str_mv AT tangt anewmethodofwoundtreatmenttargetedtherapyofskinwoundswithreactiveoxygenspeciesresponsivenanoparticlescontainingsdf1alpha
AT jiangh anewmethodofwoundtreatmenttargetedtherapyofskinwoundswithreactiveoxygenspeciesresponsivenanoparticlescontainingsdf1alpha
AT yuy anewmethodofwoundtreatmenttargetedtherapyofskinwoundswithreactiveoxygenspeciesresponsivenanoparticlescontainingsdf1alpha
AT hef anewmethodofwoundtreatmenttargetedtherapyofskinwoundswithreactiveoxygenspeciesresponsivenanoparticlescontainingsdf1alpha
AT jisz anewmethodofwoundtreatmenttargetedtherapyofskinwoundswithreactiveoxygenspeciesresponsivenanoparticlescontainingsdf1alpha
AT liuyy anewmethodofwoundtreatmenttargetedtherapyofskinwoundswithreactiveoxygenspeciesresponsivenanoparticlescontainingsdf1alpha
AT wangzs anewmethodofwoundtreatmenttargetedtherapyofskinwoundswithreactiveoxygenspeciesresponsivenanoparticlescontainingsdf1alpha
AT xiaosc anewmethodofwoundtreatmenttargetedtherapyofskinwoundswithreactiveoxygenspeciesresponsivenanoparticlescontainingsdf1alpha
AT tangc anewmethodofwoundtreatmenttargetedtherapyofskinwoundswithreactiveoxygenspeciesresponsivenanoparticlescontainingsdf1alpha
AT wanggy anewmethodofwoundtreatmenttargetedtherapyofskinwoundswithreactiveoxygenspeciesresponsivenanoparticlescontainingsdf1alpha
AT xiazf anewmethodofwoundtreatmenttargetedtherapyofskinwoundswithreactiveoxygenspeciesresponsivenanoparticlescontainingsdf1alpha
AT tangt newmethodofwoundtreatmenttargetedtherapyofskinwoundswithreactiveoxygenspeciesresponsivenanoparticlescontainingsdf1alpha
AT jiangh newmethodofwoundtreatmenttargetedtherapyofskinwoundswithreactiveoxygenspeciesresponsivenanoparticlescontainingsdf1alpha
AT yuy newmethodofwoundtreatmenttargetedtherapyofskinwoundswithreactiveoxygenspeciesresponsivenanoparticlescontainingsdf1alpha
AT hef newmethodofwoundtreatmenttargetedtherapyofskinwoundswithreactiveoxygenspeciesresponsivenanoparticlescontainingsdf1alpha
AT jisz newmethodofwoundtreatmenttargetedtherapyofskinwoundswithreactiveoxygenspeciesresponsivenanoparticlescontainingsdf1alpha
AT liuyy newmethodofwoundtreatmenttargetedtherapyofskinwoundswithreactiveoxygenspeciesresponsivenanoparticlescontainingsdf1alpha
AT wangzs newmethodofwoundtreatmenttargetedtherapyofskinwoundswithreactiveoxygenspeciesresponsivenanoparticlescontainingsdf1alpha
AT xiaosc newmethodofwoundtreatmenttargetedtherapyofskinwoundswithreactiveoxygenspeciesresponsivenanoparticlescontainingsdf1alpha
AT tangc newmethodofwoundtreatmenttargetedtherapyofskinwoundswithreactiveoxygenspeciesresponsivenanoparticlescontainingsdf1alpha
AT wanggy newmethodofwoundtreatmenttargetedtherapyofskinwoundswithreactiveoxygenspeciesresponsivenanoparticlescontainingsdf1alpha
AT xiazf newmethodofwoundtreatmenttargetedtherapyofskinwoundswithreactiveoxygenspeciesresponsivenanoparticlescontainingsdf1alpha
_version_ 1725817200531472384