The aim of this study was to culture human fetal bone cells (dedicated cell banks of fetal bone derived from 14 week gestation femurs) within both hyaluronic acid gel and collagen foam, to compare the biocompatibility of both matrices as potential delivery systems for bone engineering and particularly for oral application. Fetal bone cell banks were prepared from one organ donation and cells were cultured for up to 4 weeks within hyaluronic acid (Mesolis(®)) and collagen foams (TissueFleece(®)). Cell survival and differentiation were assessed by cell proliferation assays and histology of frozen sections stained with Giemsa, von Kossa and ALP at 1, 2 and 4 weeks of culture. Within both materials, fetal bone cells could proliferate in three-d...
Cultured primary fetal cells from one organ donation could possibly meet the exigent and stringent t...
AbstractCell based therapies for bone regeneration are an exciting emerging technology, but the avai...
Different cell sources for bone tissue engineering are reviewed. In particular, adult cell source st...
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...
We envision the use of human fetal bone cells for engineered regeneration of adult skeletal tissue. ...
During the last decade, extensive research has been performed in the field of orthopedic medicine to...
Fetal bone cells were shown to have an interesting potential for therapeutic use in bone tissue engi...
To date, the plasticity, multipotentiality, and characteristics of progenitor cells from fetal skele...
Bone regenerative medicine, based on the combined use of cells and scaffolds, represents a promising...
Human foetal cells were expanded in basal conditions from explant cultures of femurs from foetal tis...
ABSTRACT. The aim of our research was to obtain porous matrices from collagen and collagen-hyaluroni...
In order to derive the maximum potential benefit of stem cell therapy, two of the key challenges are...
To date, the plasticity, multipotentiality and characteristics of progenitor cells from fetal skelet...
Cultured primary fetal cells from one organ donation could possibly meet the exigent and stringent t...
AbstractCell based therapies for bone regeneration are an exciting emerging technology, but the avai...
Different cell sources for bone tissue engineering are reviewed. In particular, adult cell source st...
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...
We envision the use of human fetal bone cells for engineered regeneration of adult skeletal tissue. ...
During the last decade, extensive research has been performed in the field of orthopedic medicine to...
Fetal bone cells were shown to have an interesting potential for therapeutic use in bone tissue engi...
To date, the plasticity, multipotentiality, and characteristics of progenitor cells from fetal skele...
Bone regenerative medicine, based on the combined use of cells and scaffolds, represents a promising...
Human foetal cells were expanded in basal conditions from explant cultures of femurs from foetal tis...
ABSTRACT. The aim of our research was to obtain porous matrices from collagen and collagen-hyaluroni...
In order to derive the maximum potential benefit of stem cell therapy, two of the key challenges are...
To date, the plasticity, multipotentiality and characteristics of progenitor cells from fetal skelet...
Cultured primary fetal cells from one organ donation could possibly meet the exigent and stringent t...
AbstractCell based therapies for bone regeneration are an exciting emerging technology, but the avai...
Different cell sources for bone tissue engineering are reviewed. In particular, adult cell source st...