<div><p>During endochondral ossification, chondrocyte growth and differentiation is controlled by many local signalling pathways. Due to crosstalks and feedback mechanisms, these interwoven pathways display a network like structure. In this study, a large-scale literature based logical model of the growth plate network was developed. The network is able to capture the different states (resting, proliferating and hypertrophic) that chondrocytes go through as they progress within the growth plate. In a first corroboration step, the effect of mutations in various signalling pathways of the growth plate network was investigated.</p> </div
The specialization of cartilage cells, or chondrogenic differentiation, is an intricate and meticulo...
Purpose: Cartilage homeostasis relies on an intricate balance between anabolic and catabolic process...
Overall height and body proportions in humans are determined primarily by bone growth. Linear bone g...
During endochondral ossification, chondrocyte growth and differentiation is controlled by many local...
During endochondral ossification, chondrocyte growth and differentiation is controlled by many local...
In vivo, long bones are formed by the developmental process of endochondral ossification. This devel...
The specialization of cartilage cells, or chondrogenic differentiation, is an intricate and meticulo...
Introduction: In the growth plate a continuing process where cartilage is replaced by bone provides ...
Differentiation of chondrocytes towards hypertrophy is a natural process whose control is essential ...
Differentiation of chondrocytes towards hypertrophy is a natural process whose control is essential ...
Introduction: The pathways and genes/proteins orchestrating postnatal fracture repair and those invo...
Cell-based tissue engineering constructs are a promising avenue for the treatment of long bone defec...
Introduction Chondrocyte hypertrophy entails the switching of a genetic program driven by Sox9 to o...
Chondrocytes undergoing hypertrophy show a major switch in phenotype underlied by a change in expres...
AbstractThe majority of the vertebrate skeleton develops through the process of endochondral ossific...
The specialization of cartilage cells, or chondrogenic differentiation, is an intricate and meticulo...
Purpose: Cartilage homeostasis relies on an intricate balance between anabolic and catabolic process...
Overall height and body proportions in humans are determined primarily by bone growth. Linear bone g...
During endochondral ossification, chondrocyte growth and differentiation is controlled by many local...
During endochondral ossification, chondrocyte growth and differentiation is controlled by many local...
In vivo, long bones are formed by the developmental process of endochondral ossification. This devel...
The specialization of cartilage cells, or chondrogenic differentiation, is an intricate and meticulo...
Introduction: In the growth plate a continuing process where cartilage is replaced by bone provides ...
Differentiation of chondrocytes towards hypertrophy is a natural process whose control is essential ...
Differentiation of chondrocytes towards hypertrophy is a natural process whose control is essential ...
Introduction: The pathways and genes/proteins orchestrating postnatal fracture repair and those invo...
Cell-based tissue engineering constructs are a promising avenue for the treatment of long bone defec...
Introduction Chondrocyte hypertrophy entails the switching of a genetic program driven by Sox9 to o...
Chondrocytes undergoing hypertrophy show a major switch in phenotype underlied by a change in expres...
AbstractThe majority of the vertebrate skeleton develops through the process of endochondral ossific...
The specialization of cartilage cells, or chondrogenic differentiation, is an intricate and meticulo...
Purpose: Cartilage homeostasis relies on an intricate balance between anabolic and catabolic process...
Overall height and body proportions in humans are determined primarily by bone growth. Linear bone g...