We envision the use of human fetal bone cells for engineered regeneration of adult skeletal tissue. A description of their cellular function is then necessary. To our knowledge, there is no description of human primary fetal bone cells treated with differentiation factors. The characterization of fetal bone cells is particularly important as the pattern of secreted proteins from osteoblasts has been shown to change during aging. In the first part of this work, human primary fetal bone cells were compared to adult bone cells and mesenchymal stem cells for their ability to proliferate and to differentiate into osteoblasts in vitro. Cell proliferation, gene expression of bone markers, alkaline phosphatase (ALP) activity, and mineralization wer...
Skeletal stem and progenitor populations provide a platform for cell-based tissue regeneration strat...
Regulation of proliferation and differentiation of human fetal bone cells KRATTINGER, Nathalie, et a...
To date, the plasticity, multipotentiality and characteristics of progenitor cells from fetal skelet...
We envision the use of human fetal bone cells for engineered regeneration of adult skeletal tissue. ...
BACKGROUND. Human primary fetal bone cells (hFBC) are being characterized for use in bone tissue reg...
During the last decade, extensive research has been performed in the field of orthopedic medicine to...
During the last decade, extensive research has been performed in the field of orthopedic medicine to...
We describe herein some immunological properties of human fetal bone cells recently tested for bone ...
Different cell sources for bone tissue engineering are reviewed. In particular, adult cell source st...
Tissue-specific stem cells found in adult tissues can participate in the repair process following in...
Tissue-specific stem cells found in adult tissues can participate to the repair process following in...
To date, the plasticity, multipotentiality, and characteristics of progenitor cells from fetal skele...
Mesenchymal stem cells (MSCs) from human adult bone marrow (haMSCs) represent a promising source for...
The aim of this study was to culture human fetal bone cells (dedicated cell banks of fetal bone deri...
Different cell sources for bone tissue engineering are reviewed. In particular, adult cell source st...
Skeletal stem and progenitor populations provide a platform for cell-based tissue regeneration strat...
Regulation of proliferation and differentiation of human fetal bone cells KRATTINGER, Nathalie, et a...
To date, the plasticity, multipotentiality and characteristics of progenitor cells from fetal skelet...
We envision the use of human fetal bone cells for engineered regeneration of adult skeletal tissue. ...
BACKGROUND. Human primary fetal bone cells (hFBC) are being characterized for use in bone tissue reg...
During the last decade, extensive research has been performed in the field of orthopedic medicine to...
During the last decade, extensive research has been performed in the field of orthopedic medicine to...
We describe herein some immunological properties of human fetal bone cells recently tested for bone ...
Different cell sources for bone tissue engineering are reviewed. In particular, adult cell source st...
Tissue-specific stem cells found in adult tissues can participate in the repair process following in...
Tissue-specific stem cells found in adult tissues can participate to the repair process following in...
To date, the plasticity, multipotentiality, and characteristics of progenitor cells from fetal skele...
Mesenchymal stem cells (MSCs) from human adult bone marrow (haMSCs) represent a promising source for...
The aim of this study was to culture human fetal bone cells (dedicated cell banks of fetal bone deri...
Different cell sources for bone tissue engineering are reviewed. In particular, adult cell source st...
Skeletal stem and progenitor populations provide a platform for cell-based tissue regeneration strat...
Regulation of proliferation and differentiation of human fetal bone cells KRATTINGER, Nathalie, et a...
To date, the plasticity, multipotentiality and characteristics of progenitor cells from fetal skelet...