Many studies in the field of cell-based cartilage repair have focused on identifying markers associated with the differentiation status of human articular chondrocytes (HAC) that could predict their chondrogenic potency. A previous study from our group showed a correlation between the expression of S100 protein in HAC and their chondrogenic potential. The aims of the current study were to clarify which S100 proteins are associated with HAC differentiation status and to provide an S100-based assay for measuring HAC chondrogenic potential. The expression patterns of S100A1 and S100B were investigated in cartilage and in HAC cultured under conditions promoting dedifferentiation (monolayer culture) or redifferentiation (pellet culture or BMP4 t...
OBJECTIVE: S100A8 and S100A9 are two Ca(2+) binding proteins classified as damage-associated molecul...
Contains fulltext : 70945.pdf (publisher's version ) (Closed access)OBJECTIVE: To ...
SummaryObjectiveWhen primary chondrocytes are cultured in monolayer, they undergo dedifferentiation ...
During monolayer expansion, a necessary step in autologous chondrocyte implantation, human articular...
The aim of this study was to investigate the interconnection between the processes of proliferation,...
INTRODUCTION: The objective was to evaluate the changes in S100A8 S100A9, and their complex (S100A8/...
OBJECTIVE: To investigate whether S100A8 is actively involved in matrix metalloproteinase (MMP)-medi...
AbstractS100 proteins are low molecular weight calcium binding proteins expressed in vertebrates. Th...
OBJECTIVE: To identify markers associated with the chondrogenic capacity of expanded human articular...
S100A8 and S100A9 are calcium-binding proteins expressed in myeloid cells and are markers of numerou...
In this study, a time-course comparison of human articular chondrocytes (HAC) and bone marrow-derive...
In this study, we investigated if monolayer expansion of adult human articular chondrocytes (AHAC) o...
In this study, we investigated if monolayer expansion of adult human articular chondrocytes (AHAC) o...
Objective When primary chondrocytes are cultured in monolayer, they undergo dedifferentiation during...
SummaryObjectiveWe aimed to evaluate expression levels of nine candidate surface markers for chondro...
OBJECTIVE: S100A8 and S100A9 are two Ca(2+) binding proteins classified as damage-associated molecul...
Contains fulltext : 70945.pdf (publisher's version ) (Closed access)OBJECTIVE: To ...
SummaryObjectiveWhen primary chondrocytes are cultured in monolayer, they undergo dedifferentiation ...
During monolayer expansion, a necessary step in autologous chondrocyte implantation, human articular...
The aim of this study was to investigate the interconnection between the processes of proliferation,...
INTRODUCTION: The objective was to evaluate the changes in S100A8 S100A9, and their complex (S100A8/...
OBJECTIVE: To investigate whether S100A8 is actively involved in matrix metalloproteinase (MMP)-medi...
AbstractS100 proteins are low molecular weight calcium binding proteins expressed in vertebrates. Th...
OBJECTIVE: To identify markers associated with the chondrogenic capacity of expanded human articular...
S100A8 and S100A9 are calcium-binding proteins expressed in myeloid cells and are markers of numerou...
In this study, a time-course comparison of human articular chondrocytes (HAC) and bone marrow-derive...
In this study, we investigated if monolayer expansion of adult human articular chondrocytes (AHAC) o...
In this study, we investigated if monolayer expansion of adult human articular chondrocytes (AHAC) o...
Objective When primary chondrocytes are cultured in monolayer, they undergo dedifferentiation during...
SummaryObjectiveWe aimed to evaluate expression levels of nine candidate surface markers for chondro...
OBJECTIVE: S100A8 and S100A9 are two Ca(2+) binding proteins classified as damage-associated molecul...
Contains fulltext : 70945.pdf (publisher's version ) (Closed access)OBJECTIVE: To ...
SummaryObjectiveWhen primary chondrocytes are cultured in monolayer, they undergo dedifferentiation ...