4.8 Article

The osteogenic differentiation of human bone marrow MSCs on HUVEC-derived ECM and β-TCP scaffold

期刊

BIOMATERIALS
卷 33, 期 29, 页码 6998-7007

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.biomaterials.2012.06.061

关键词

Extracellular matrix; HUVEC; hMSC; Osteogenesis; beta-TCP

资金

  1. NIH [R01AR057837, R01DE021468]
  2. DOD [W81XWH-10-1-0966, W81XWH-10-200-10, W81XWH-11-2-0168-P4]
  3. Wallace H. Coulter Foundation

向作者/读者索取更多资源

Extracellular matrix (ECM) serves a key role in cell migration, attachment, and cell development. Here we report that ECM derived from human umbilical vein endothelial cells (HUVEC) promoted osteogenic differentiation of human bone marrow mesenchymal stem cells (hMSC). We first produced an HUVEC-derived ECM on a three-dimensional (3D) beta-tricalcium phosphate (beta-TCP) scaffold by HUVEC seeding, incubation, and decellularization. The HUVEC-derived ECM was then characterized by SEM, FTIR, XPS, and immunofluorescence staining. The effect of HUVEC-derived ECM-containing beta-TCP scaffold on hMSC osteogenic differentiation was subsequently examined. SEM images indicate a dense matrix layer deposited on the surface of struts and pore walls. FTIR and XPS measurements show the presence of new functional groups (amide and hydroxyl groups) and elements (C and N) in the ECM/beta-TCP scaffold when compared to the beta-TCP scaffold alone. Immunofluorescence images indicate that high levels of fibronectin and collagen IV and low level of laminin were present on the scaffold. ECM-containing beta-TCP scaffolds significantly increased alkaline phosphatase (ALP) specific activity and up-regulated expression of osteogenesis-related genes such as runx2, alkaline phosphatase, osteopontin and osteocalcin in hMSC, compared to beta-TCP scaffolds alone. This increased effect was due to the activation of MAPK/ERK signaling pathway since disruption of this pathway using an ERK inhibitor PD98059 results in down-regulation of these osteogenic genes. Cell-derived ECM-containing calcium phosphate scaffolds is a promising osteogenic-promoting bone void filler in bone tissue regeneration. (C) 2012 Elsevier Ltd. All rights reserved.

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