Delivery vehicle of muscle-derived irisin based on silk/calcium silicate/sodium alginate composite scaffold for bone regeneration

Xianzhen Xin,1,* Jiannan Wu,1,* Ao Zheng,1 Delong Jiao,1 Yang Liu,2 Lingyan Cao,1 Xinquan Jiang1 1Department of Prosthodontics, Shanghai Engineering Research Center of Advanced Dental Technology and Materials, Shanghai Key Laboratory of Stomatology and Shanghai Research Institute of Stomatology, Na...

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Main Authors: Xin X, Wu J, Zheng A, Jiao D, Liu Y, Cao L, Jiang X
Format: Article
Language:English
Published: Dove Medical Press 2019-02-01
Series:International Journal of Nanomedicine
Subjects:
Online Access:https://www.dovepress.com/delivery-vehicle-of-muscle-derived-irisin-based-on-silkcalcium-silicat-peer-reviewed-article-IJN
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spelling doaj-dab5ed53fc8d4088b76537936aeeece22020-11-25T02:14:53ZengDove Medical PressInternational Journal of Nanomedicine1178-20132019-02-01Volume 141451146744281Delivery vehicle of muscle-derived irisin based on silk/calcium silicate/sodium alginate composite scaffold for bone regenerationXin XWu JZheng AJiao DLiu YCao LJiang XXianzhen Xin,1,* Jiannan Wu,1,* Ao Zheng,1 Delong Jiao,1 Yang Liu,2 Lingyan Cao,1 Xinquan Jiang1 1Department of Prosthodontics, Shanghai Engineering Research Center of Advanced Dental Technology and Materials, Shanghai Key Laboratory of Stomatology and Shanghai Research Institute of Stomatology, National Clinical Research Center for Oral Diseases, Shanghai Ninth People’s Hospital, College of Stomatology, Shanghai Jiao Tong University School of Medicine, Shanghai, China; 2The State Key Laboratory of Bioreactor Engineering, East China University of Science and Technology, Shanghai, China *These authors contributed equally to this work Background: Irisin is a cytokine produced by skeletal muscle and usually plays a pivotal role in inducing fat browning and regulating energy expenditure. In recent years, it was found that irisin might be the molecular entity responsible for muscle–bone connectivity and is useful in osteogenesis induction. Materials and methods: To study its effect on bone regeneration, we developed silk/calcium silicate/sodium alginate (SCS) composite scaffold based on an interpenetrating network hydrogel containing silk fibroin, calcium silicate, sodium alginate. Then we loaded irisin on the SCS before coating it with polyvinyl alcohol (PVA). The SCS/P scaffold was physically characterized and some in vitro and in vivo experiments were carried out to evaluate the scaffold effect on bone regeneration. Results: The SCS/P scaffold was showed a porous sponge structure pursuant to scanning electron microscopy analysis. The release kinetics assay demonstrated that irisin was stably released from the irisin-loaded hybrid system (i/SCS/P system) to 50% within 7 days. Moreover, osteoinductive studies using bone marrow stem cells (BMSCs) in vitro exhibited the i/SCS/P system improved the activity of alkaline phosphatase (ALP) and enhanced the expression levels of a series of osteogenic markers containing Runx-2, ALP, BMP2, Osterix, OCN, and OPN. Alizarin red staining also demonstrated the promotion of osteogenesis induced by i/SCS/P scaffolds. In addition, in vivo studies showed that increased bone regeneration with better mineralization and higher quality was found during the repair of rat calvarial defects through utilizing the i/SCS/P system. Conclusion: These data provided strong evidence that the composite i/SCS/P would be a promising substitute for bone tissue engineering. Keywords: silk fibroin, biocompatible scaffold, bone regeneration, irisin, delivery vehiclehttps://www.dovepress.com/delivery-vehicle-of-muscle-derived-irisin-based-on-silkcalcium-silicat-peer-reviewed-article-IJNSilk fibroinBiocompatible scaffoldBone regenerationIrisinDelivery vehicle
collection DOAJ
language English
format Article
sources DOAJ
author Xin X
Wu J
Zheng A
Jiao D
Liu Y
Cao L
Jiang X
spellingShingle Xin X
Wu J
Zheng A
Jiao D
Liu Y
Cao L
Jiang X
Delivery vehicle of muscle-derived irisin based on silk/calcium silicate/sodium alginate composite scaffold for bone regeneration
International Journal of Nanomedicine
Silk fibroin
Biocompatible scaffold
Bone regeneration
Irisin
Delivery vehicle
author_facet Xin X
Wu J
Zheng A
Jiao D
Liu Y
Cao L
Jiang X
author_sort Xin X
title Delivery vehicle of muscle-derived irisin based on silk/calcium silicate/sodium alginate composite scaffold for bone regeneration
title_short Delivery vehicle of muscle-derived irisin based on silk/calcium silicate/sodium alginate composite scaffold for bone regeneration
title_full Delivery vehicle of muscle-derived irisin based on silk/calcium silicate/sodium alginate composite scaffold for bone regeneration
title_fullStr Delivery vehicle of muscle-derived irisin based on silk/calcium silicate/sodium alginate composite scaffold for bone regeneration
title_full_unstemmed Delivery vehicle of muscle-derived irisin based on silk/calcium silicate/sodium alginate composite scaffold for bone regeneration
title_sort delivery vehicle of muscle-derived irisin based on silk/calcium silicate/sodium alginate composite scaffold for bone regeneration
publisher Dove Medical Press
series International Journal of Nanomedicine
issn 1178-2013
publishDate 2019-02-01
description Xianzhen Xin,1,* Jiannan Wu,1,* Ao Zheng,1 Delong Jiao,1 Yang Liu,2 Lingyan Cao,1 Xinquan Jiang1 1Department of Prosthodontics, Shanghai Engineering Research Center of Advanced Dental Technology and Materials, Shanghai Key Laboratory of Stomatology and Shanghai Research Institute of Stomatology, National Clinical Research Center for Oral Diseases, Shanghai Ninth People’s Hospital, College of Stomatology, Shanghai Jiao Tong University School of Medicine, Shanghai, China; 2The State Key Laboratory of Bioreactor Engineering, East China University of Science and Technology, Shanghai, China *These authors contributed equally to this work Background: Irisin is a cytokine produced by skeletal muscle and usually plays a pivotal role in inducing fat browning and regulating energy expenditure. In recent years, it was found that irisin might be the molecular entity responsible for muscle–bone connectivity and is useful in osteogenesis induction. Materials and methods: To study its effect on bone regeneration, we developed silk/calcium silicate/sodium alginate (SCS) composite scaffold based on an interpenetrating network hydrogel containing silk fibroin, calcium silicate, sodium alginate. Then we loaded irisin on the SCS before coating it with polyvinyl alcohol (PVA). The SCS/P scaffold was physically characterized and some in vitro and in vivo experiments were carried out to evaluate the scaffold effect on bone regeneration. Results: The SCS/P scaffold was showed a porous sponge structure pursuant to scanning electron microscopy analysis. The release kinetics assay demonstrated that irisin was stably released from the irisin-loaded hybrid system (i/SCS/P system) to 50% within 7 days. Moreover, osteoinductive studies using bone marrow stem cells (BMSCs) in vitro exhibited the i/SCS/P system improved the activity of alkaline phosphatase (ALP) and enhanced the expression levels of a series of osteogenic markers containing Runx-2, ALP, BMP2, Osterix, OCN, and OPN. Alizarin red staining also demonstrated the promotion of osteogenesis induced by i/SCS/P scaffolds. In addition, in vivo studies showed that increased bone regeneration with better mineralization and higher quality was found during the repair of rat calvarial defects through utilizing the i/SCS/P system. Conclusion: These data provided strong evidence that the composite i/SCS/P would be a promising substitute for bone tissue engineering. Keywords: silk fibroin, biocompatible scaffold, bone regeneration, irisin, delivery vehicle
topic Silk fibroin
Biocompatible scaffold
Bone regeneration
Irisin
Delivery vehicle
url https://www.dovepress.com/delivery-vehicle-of-muscle-derived-irisin-based-on-silkcalcium-silicat-peer-reviewed-article-IJN
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