The aim of this study was to investigate the interconnection between the processes of proliferation, dedifferentiation, and intrinsic redifferentiation (chondrogenic) capacities of human articular chondrocyte (HAC), and to identify markers linking HAC dedifferentiation status with their chondrogenic potential. Cumulative population doublings (PD) of HAC expanded in monolayer culture were determined, and a threshold range of 3.57-4.19 PD was identified as indicative of HAC loss of intrinsic chondrogenic capacity in pellets incubated without added chondrogenic factors. While several specific gene and surface markers defined early HAC dedifferentiation process, no clear correlation with the loss of intrinsic chondrogenic potential could be est...
Objective: Expansion of autologous chondrocytes is a common step in procedures for cartilage defect ...
Objective: Three-dimensional (3D) cultures are widely used to redifferentiate chondrocytes. However,...
Objective: Three-dimensional (3D) cultures are widely used to redifferentiate chondrocytes. However,...
OBJECTIVE: To identify markers associated with the chondrogenic capacity of expanded human articular...
During monolayer expansion, a necessary step in autologous chondrocyte implantation, human articular...
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...
Many studies in the field of cell-based cartilage repair have focused on identifying markers associa...
In this study, a time-course comparison of human articular chondrocytes (HAC) and bone marrow-derive...
OBJECTIVE: This study aimed to investigate the regenerative capacity of chondrocytes derived from de...
Autologous chondrocyte implantation is currently applied in clinics as an innovative tool for articu...
Autologous chondrocyte implantation is currently applied in clinics as an innovative tool for articu...
Objective: This study aimed to investigate the regenerative capacity of chondrocytes derived from de...
SummaryObjectiveWhen primary chondrocytes are cultured in monolayer, they undergo dedifferentiation ...
Objective When primary chondrocytes are cultured in monolayer, they undergo dedifferentiation during...
Objective: Expansion of autologous chondrocytes is a common step in procedures for cartilage defect ...
Objective: Three-dimensional (3D) cultures are widely used to redifferentiate chondrocytes. However,...
Objective: Three-dimensional (3D) cultures are widely used to redifferentiate chondrocytes. However,...
OBJECTIVE: To identify markers associated with the chondrogenic capacity of expanded human articular...
During monolayer expansion, a necessary step in autologous chondrocyte implantation, human articular...
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...
Many studies in the field of cell-based cartilage repair have focused on identifying markers associa...
In this study, a time-course comparison of human articular chondrocytes (HAC) and bone marrow-derive...
OBJECTIVE: This study aimed to investigate the regenerative capacity of chondrocytes derived from de...
Autologous chondrocyte implantation is currently applied in clinics as an innovative tool for articu...
Autologous chondrocyte implantation is currently applied in clinics as an innovative tool for articu...
Objective: This study aimed to investigate the regenerative capacity of chondrocytes derived from de...
SummaryObjectiveWhen primary chondrocytes are cultured in monolayer, they undergo dedifferentiation ...
Objective When primary chondrocytes are cultured in monolayer, they undergo dedifferentiation during...
Objective: Expansion of autologous chondrocytes is a common step in procedures for cartilage defect ...
Objective: Three-dimensional (3D) cultures are widely used to redifferentiate chondrocytes. However,...
Objective: Three-dimensional (3D) cultures are widely used to redifferentiate chondrocytes. However,...