Research progress of scaffolds for promoting the vascularization of regenerated dental pulp

Endothelial regeneration is a research hotspot in the field of dental pulp. The regeneration of endodontic blood flow is the bottleneck of dental pulp regeneration, and the applied scaffold material is the key to revascularization. Stent materials were reviewed. The literature review Results show th...

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Main Authors: LIU Huimin, LI Xiangwei
Format: Article
Language:zho
Published: Editorial Department of Journal of Prevention and Treatment for Stomatological Diseases 2020-03-01
Series:口腔疾病防治
Subjects:
Online Access:http://www.kqjbfz.com/CN/10.12016/j.issn.2096-1456.2020.03.012
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spelling doaj-785a52f2744d4e0bbf136f401b3020f62020-11-25T02:40:14ZzhoEditorial Department of Journal of Prevention and Treatment for Stomatological Diseases口腔疾病防治2096-14562096-14562020-03-0128320020410.12016/j.issn.2096-1456.2020.03.012Research progress of scaffolds for promoting the vascularization of regenerated dental pulpLIU Huimin0LI Xiangwei1Department of Conservative Dentistry and Endodontics, School and Hospital of Stomatology, Jilin UniversityDepartment of Conservative Dentistry and Endodontics, School and Hospital of Stomatology, Jilin UniversityEndothelial regeneration is a research hotspot in the field of dental pulp. The regeneration of endodontic blood flow is the bottleneck of dental pulp regeneration, and the applied scaffold material is the key to revascularization. Stent materials were reviewed. The literature review Results show that, depending on the source of the stent material used for endodontic revascularization, there are mainly natural, synthetic and composite materials. The natural scaffold materials used for vascular regeneration include chitosan, hyaluronic acid, bacterial cellulose, and proanthocyanidin; artificial scaffold materials include hydrogel, cryogel, and electrospinning. The bionic composite scaffold system with a double-layer tubular structure is low immunogenicity and good biocompatibility. Studies on the scaffold materials of bionic extracellular matrix, such as injectable hydrogels/microspheres, have promoted the development of dental pulp regeneration, that is, uniformly distributed scaffold materials in the root canal promote the generation of pulp-like tissue; Whether dental pulp tissue can establish effective blood circulation through the apical foramen remains a great challenge.http://www.kqjbfz.com/CN/10.12016/j.issn.2096-1456.2020.03.012dental pulp vasculardental pulp regenerationvascularizationtissue engineeringscaffold materialchitosaninjectable hydrogels/microspheresbiomimetic scaffolds
collection DOAJ
language zho
format Article
sources DOAJ
author LIU Huimin
LI Xiangwei
spellingShingle LIU Huimin
LI Xiangwei
Research progress of scaffolds for promoting the vascularization of regenerated dental pulp
口腔疾病防治
dental pulp vascular
dental pulp regeneration
vascularization
tissue engineering
scaffold material
chitosan
injectable hydrogels/microspheres
biomimetic scaffolds
author_facet LIU Huimin
LI Xiangwei
author_sort LIU Huimin
title Research progress of scaffolds for promoting the vascularization of regenerated dental pulp
title_short Research progress of scaffolds for promoting the vascularization of regenerated dental pulp
title_full Research progress of scaffolds for promoting the vascularization of regenerated dental pulp
title_fullStr Research progress of scaffolds for promoting the vascularization of regenerated dental pulp
title_full_unstemmed Research progress of scaffolds for promoting the vascularization of regenerated dental pulp
title_sort research progress of scaffolds for promoting the vascularization of regenerated dental pulp
publisher Editorial Department of Journal of Prevention and Treatment for Stomatological Diseases
series 口腔疾病防治
issn 2096-1456
2096-1456
publishDate 2020-03-01
description Endothelial regeneration is a research hotspot in the field of dental pulp. The regeneration of endodontic blood flow is the bottleneck of dental pulp regeneration, and the applied scaffold material is the key to revascularization. Stent materials were reviewed. The literature review Results show that, depending on the source of the stent material used for endodontic revascularization, there are mainly natural, synthetic and composite materials. The natural scaffold materials used for vascular regeneration include chitosan, hyaluronic acid, bacterial cellulose, and proanthocyanidin; artificial scaffold materials include hydrogel, cryogel, and electrospinning. The bionic composite scaffold system with a double-layer tubular structure is low immunogenicity and good biocompatibility. Studies on the scaffold materials of bionic extracellular matrix, such as injectable hydrogels/microspheres, have promoted the development of dental pulp regeneration, that is, uniformly distributed scaffold materials in the root canal promote the generation of pulp-like tissue; Whether dental pulp tissue can establish effective blood circulation through the apical foramen remains a great challenge.
topic dental pulp vascular
dental pulp regeneration
vascularization
tissue engineering
scaffold material
chitosan
injectable hydrogels/microspheres
biomimetic scaffolds
url http://www.kqjbfz.com/CN/10.12016/j.issn.2096-1456.2020.03.012
work_keys_str_mv AT liuhuimin researchprogressofscaffoldsforpromotingthevascularizationofregenerateddentalpulp
AT lixiangwei researchprogressofscaffoldsforpromotingthevascularizationofregenerateddentalpulp
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