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Tytuł pozycji:

Will mesenchymal stem cells differentiate into osteoblasts on allograft?

Tytuł:
Will mesenchymal stem cells differentiate into osteoblasts on allograft?
Autorzy:
Rust PA; Royal National Orthopaedic Hospital, Stanmore, Middlesex, UK. />Kalsi P
Briggs TW
Cannon SR
Blunn GW
Źródło:
Clinical orthopaedics and related research [Clin Orthop Relat Res] 2007 Apr; Vol. 457, pp. 220-6.
Typ publikacji:
Journal Article
Język:
English
Imprint Name(s):
Publication: 2018- : [New York, NY] : Wolters Kluwer
Original Publication: Philadelphia : Lippincott,
MeSH Terms:
Cell Differentiation*
Mesenchymal Stem Cells/*cytology
Osteoblasts/*cytology
Tissue Engineering/*methods
Alkaline Phosphatase/metabolism ; Cells, Cultured ; Collagen Type I ; Humans ; Mesenchymal Stem Cell Transplantation ; Mesenchymal Stem Cells/metabolism ; Mesenchymal Stem Cells/ultrastructure ; Microscopy, Electron, Scanning ; Microscopy, Electron, Transmission ; Osteoblasts/metabolism ; Osteoblasts/ultrastructure ; Osteopontin/metabolism ; Transplantation, Homologous
Substance Nomenclature:
0 (Collagen Type I)
106441-73-0 (Osteopontin)
EC 3.1.3.1 (Alkaline Phosphatase)
Entry Date(s):
Date Created: 20061206 Date Completed: 20070515 Latest Revision: 20181201
Update Code:
20240104
DOI:
10.1097/BLO.0b013e31802e7e8f
PMID:
17146367
Czasopismo naukowe
Tissue engineering approaches for bone blocks previously have used synthetic scaffolds. Bone graft (allograft) is used to fill bone defects, but standard processing can lessen this scaffold's osteoinductive potential. We wanted to test if allografts could be used to produce a viable bone block using mesenchymal stem cells. We hypothesized that mesenchymal stem cells differentiate into osteoblasts producing extracellular matrix when cultured on allografts. We also hypothesized that the addition of osteogenic supplements would increase the rate of differentiation. To test these hypotheses, mesenchymal stem cells were isolated from bone marrow aspirated from 10 patients and cultured on allografts from five donors (Group 2), producing 50 samples. This was repeated on allografts heat-treated to denature bioactive proteins (Group 1), and repeated again on allografts to which osteogenic supplements (Group 3) were added. Group 2 mesenchymal stem cells differentiated into osteoblasts producing higher levels of alkaline phosphatase, osteopontin, and Type I collagen matrix protein than Group 1. The rate of differentiation of Group 3 mesenchymal stem cells increased with the supplements. Overall, it was established that the bioactive proteins in the allograft stimulated mesenchymal stem cell differentiation into osteoblasts, with production of extracellular matrix, and that this differentiation increased with the addition of osteogenic supplements.

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