Extracellular matrix derived from human urine-derived stem cells enhances the expansion, adhesion, spreading, and differentiation of human periodontal ligament stem cells

Abstract Background Human periodontal ligament stem cells (hPDLSCs) are one of the most promising types of seed cells in periodontal tissue regeneration. Suitable biomaterials are additional essential components that must cooperate with seed cells for in vivo expansion or in vitro implantation. Extr...

Full description

Bibliographic Details
Main Authors: Xue Xiong, Xiao Yang, Hongwei Dai, Gang Feng, Yuanyuan Zhang, Jianping Zhou, Wenwen Zhou
Format: Article
Language:English
Published: BMC 2019-12-01
Series:Stem Cell Research & Therapy
Subjects:
Online Access:https://doi.org/10.1186/s13287-019-1483-7
id doaj-99934f0fe5954c2ebd9ecdd202358771
record_format Article
spelling doaj-99934f0fe5954c2ebd9ecdd2023587712020-12-20T12:06:57ZengBMCStem Cell Research & Therapy1757-65122019-12-0110111610.1186/s13287-019-1483-7Extracellular matrix derived from human urine-derived stem cells enhances the expansion, adhesion, spreading, and differentiation of human periodontal ligament stem cellsXue Xiong0Xiao Yang1Hongwei Dai2Gang Feng3Yuanyuan Zhang4Jianping Zhou5Wenwen Zhou6Department of Orthodontics, Stomatological Hospital of Chongqing Medical UniversityDepartment of Orthodontics, Stomatological Hospital of Chongqing Medical UniversityDepartment of Orthodontics, Stomatological Hospital of Chongqing Medical UniversityDepartment of Orthodontics, Stomatological Hospital of Chongqing Medical UniversityThe Institute for Regenerative Medicine, School of Medicine, Wake Forest UniversityDepartment of Orthodontics, Stomatological Hospital of Chongqing Medical UniversityDepartment of Orthodontics, Stomatological Hospital of Chongqing Medical UniversityAbstract Background Human periodontal ligament stem cells (hPDLSCs) are one of the most promising types of seed cells in periodontal tissue regeneration. Suitable biomaterials are additional essential components that must cooperate with seed cells for in vivo expansion or in vitro implantation. Extracellular matrix (ECM) derived from mesenchymal stem cells (MSCs) was recently reported to be a promising substrate with which to culture MSCs that could be applied in biomaterial scaffolds or bioink. Human urine-derived stem cells (hUSCs) have several advantages; their collection is non-invasive and easy, and hUSCs are low in cost, potentially making them a suitable and efficient source of ECM. The purpose of this study was to characterize the biological properties of ECM derived from hUSCs (UECM) and evaluate the effects of UECM on hPDLSCs. Methods hPDLSCs grown on ECM derived from hPDLSCs (PECM) and fibronectin-coated tissue culture plastic (TCP) served as control groups. Both hUSCs and hPDLSCs were seeded on TCP and stimulated to produce ECM. After 8 days of stimulation, the samples were decellularized, leaving only ECM. Then, hPDLSCs were seeded onto UECM-, PECM-, and fibronectin-coated TCP and untreated TCP. Results UECM consists of dense bundles of fibers which contain abundant fibronectin. Both UECM and PECM promoted hPDLSC proliferation, attachment, spreading, and differentiation. Between UECM and PECM, UECM enhanced proliferation, osteogenesis, and angiogenesis to a greater extent. Though fibronectin appeared to be the abundant component of UECM, its performance was inferior to that of UECM. Conclusions Our study provides an original perspective on different cell-specific ECMs and suggests UECM as a suitable biomaterial in which to culture hPDLSCs as UECM enhances their biological functions.https://doi.org/10.1186/s13287-019-1483-7Extracellular matrixHuman urine-derived stem cellsHuman periodontal ligament stem cellsTissue culture plasticFibronectinCell expansion
collection DOAJ
language English
format Article
sources DOAJ
author Xue Xiong
Xiao Yang
Hongwei Dai
Gang Feng
Yuanyuan Zhang
Jianping Zhou
Wenwen Zhou
spellingShingle Xue Xiong
Xiao Yang
Hongwei Dai
Gang Feng
Yuanyuan Zhang
Jianping Zhou
Wenwen Zhou
Extracellular matrix derived from human urine-derived stem cells enhances the expansion, adhesion, spreading, and differentiation of human periodontal ligament stem cells
Stem Cell Research & Therapy
Extracellular matrix
Human urine-derived stem cells
Human periodontal ligament stem cells
Tissue culture plastic
Fibronectin
Cell expansion
author_facet Xue Xiong
Xiao Yang
Hongwei Dai
Gang Feng
Yuanyuan Zhang
Jianping Zhou
Wenwen Zhou
author_sort Xue Xiong
title Extracellular matrix derived from human urine-derived stem cells enhances the expansion, adhesion, spreading, and differentiation of human periodontal ligament stem cells
title_short Extracellular matrix derived from human urine-derived stem cells enhances the expansion, adhesion, spreading, and differentiation of human periodontal ligament stem cells
title_full Extracellular matrix derived from human urine-derived stem cells enhances the expansion, adhesion, spreading, and differentiation of human periodontal ligament stem cells
title_fullStr Extracellular matrix derived from human urine-derived stem cells enhances the expansion, adhesion, spreading, and differentiation of human periodontal ligament stem cells
title_full_unstemmed Extracellular matrix derived from human urine-derived stem cells enhances the expansion, adhesion, spreading, and differentiation of human periodontal ligament stem cells
title_sort extracellular matrix derived from human urine-derived stem cells enhances the expansion, adhesion, spreading, and differentiation of human periodontal ligament stem cells
publisher BMC
series Stem Cell Research & Therapy
issn 1757-6512
publishDate 2019-12-01
description Abstract Background Human periodontal ligament stem cells (hPDLSCs) are one of the most promising types of seed cells in periodontal tissue regeneration. Suitable biomaterials are additional essential components that must cooperate with seed cells for in vivo expansion or in vitro implantation. Extracellular matrix (ECM) derived from mesenchymal stem cells (MSCs) was recently reported to be a promising substrate with which to culture MSCs that could be applied in biomaterial scaffolds or bioink. Human urine-derived stem cells (hUSCs) have several advantages; their collection is non-invasive and easy, and hUSCs are low in cost, potentially making them a suitable and efficient source of ECM. The purpose of this study was to characterize the biological properties of ECM derived from hUSCs (UECM) and evaluate the effects of UECM on hPDLSCs. Methods hPDLSCs grown on ECM derived from hPDLSCs (PECM) and fibronectin-coated tissue culture plastic (TCP) served as control groups. Both hUSCs and hPDLSCs were seeded on TCP and stimulated to produce ECM. After 8 days of stimulation, the samples were decellularized, leaving only ECM. Then, hPDLSCs were seeded onto UECM-, PECM-, and fibronectin-coated TCP and untreated TCP. Results UECM consists of dense bundles of fibers which contain abundant fibronectin. Both UECM and PECM promoted hPDLSC proliferation, attachment, spreading, and differentiation. Between UECM and PECM, UECM enhanced proliferation, osteogenesis, and angiogenesis to a greater extent. Though fibronectin appeared to be the abundant component of UECM, its performance was inferior to that of UECM. Conclusions Our study provides an original perspective on different cell-specific ECMs and suggests UECM as a suitable biomaterial in which to culture hPDLSCs as UECM enhances their biological functions.
topic Extracellular matrix
Human urine-derived stem cells
Human periodontal ligament stem cells
Tissue culture plastic
Fibronectin
Cell expansion
url https://doi.org/10.1186/s13287-019-1483-7
work_keys_str_mv AT xuexiong extracellularmatrixderivedfromhumanurinederivedstemcellsenhancestheexpansionadhesionspreadinganddifferentiationofhumanperiodontalligamentstemcells
AT xiaoyang extracellularmatrixderivedfromhumanurinederivedstemcellsenhancestheexpansionadhesionspreadinganddifferentiationofhumanperiodontalligamentstemcells
AT hongweidai extracellularmatrixderivedfromhumanurinederivedstemcellsenhancestheexpansionadhesionspreadinganddifferentiationofhumanperiodontalligamentstemcells
AT gangfeng extracellularmatrixderivedfromhumanurinederivedstemcellsenhancestheexpansionadhesionspreadinganddifferentiationofhumanperiodontalligamentstemcells
AT yuanyuanzhang extracellularmatrixderivedfromhumanurinederivedstemcellsenhancestheexpansionadhesionspreadinganddifferentiationofhumanperiodontalligamentstemcells
AT jianpingzhou extracellularmatrixderivedfromhumanurinederivedstemcellsenhancestheexpansionadhesionspreadinganddifferentiationofhumanperiodontalligamentstemcells
AT wenwenzhou extracellularmatrixderivedfromhumanurinederivedstemcellsenhancestheexpansionadhesionspreadinganddifferentiationofhumanperiodontalligamentstemcells
_version_ 1724377099587813376