4.2 Article

Investigating the Vascularization of Tissue-Engineered Bone Constructs Using Dental Pulp Cells and 45S5 Bioglass® Scaffolds

期刊

TISSUE ENGINEERING PART A
卷 21, 期 13-14, 页码 2034-2043

出版社

MARY ANN LIEBERT, INC
DOI: 10.1089/ten.tea.2014.0485

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资金

  1. Worldwide Universities Network (WUN)
  2. NIHR Leeds Musculoskeletal Biomedical Research Unit (LMBRU)
  3. WELMEC, a center of Excellence in Medical Engineering - Wellcome Trust [WT088908/Z/09/Z]
  4. WELMEC, a center of Excellence in Medical Engineering - EPSRC [WT088908/Z/09/Z]
  5. University of Suez Canal through the Egyptian Ministry of Higher Education
  6. European Union Seventh Framework Programme [318553]
  7. EPSRC [EP/J017620/1, EP/N00941X/1] Funding Source: UKRI
  8. Engineering and Physical Sciences Research Council [EP/N00941X/1, 1366855, EP/J017620/1, 1504842] Funding Source: researchfish

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Identification of a suitable cell source combined with an appropriate 3D scaffold is an essential prerequisite for successful engineering of skeletal tissues. Both osteogenesis and angiogenesis are key processes for bone regeneration. This study investigated the vascularization potential of a novel combination of human dental pulp stromal cells (HDPSCs) with 45S5 Bioglass((R)) scaffolds for tissue-engineered mineral constructs in vivo and in vitro. 45S5 Bioglass scaffolds were produced by the foam replication technique with the standard composition of 45wt% SiO2, 24.5wt% Na2O, 24.5wt% CaO, and 6wt% P2O5. HDPSCs were cultured in monolayers and on porous 45S5 Bioglass scaffolds under angiogenic and osteogenic conditions for 2-4 weeks. HDPSCs expressed endothelial gene markers (CD34, CD31/PECAM1, and VEGFR2) under both conditions in the monolayer. A combination of HDPSCs with 45S5 Bioglass enhanced the expression of these gene markers. Positive immunostaining for CD31/PECAM1 and VEGFR2 and negative staining for CD34 supported the gene expression data, while histology revealed evidence of endothelial cell-like morphology within the constructs. More organized tubular structures, resembling microvessels, were seen in the constructs after 8 weeks of implantation in vivo. In conclusion, this study suggests that the combination of HDPSCs with 45S5 Bioglass scaffolds offers a promising strategy for regenerating vascularized bone grafts.

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