Bone development is influenced by the local mechanical environment. Experimental evidence suggests that altered loading can change cell proliferation and differentiation in chondro- and osteogenesis during endochondral ossification. This study investigated the effects of three-point bending of murine fetal metatarsal bone anlagen in vitro on cartilage differentiation, matrix mineralization and bone collar formation. This is of special interest because endochondral ossification is also an important process in bone healing and regeneration. Metatarsal preparations of 15 mouse fetuses stage 17.5 dpc were dissected en bloc and cultured for 7 days. After 3 days in culture to allow adherence they were stimulated 4 days for 20 min twice daily by ...
The role of mechanical forces in regulation of skeletal multi-potent cell differentiation, and conse...
International audienceChondrogenesis and mechanical stimulation of the cartilage template are essent...
Embryonic stem cells can provide an unlimited supply of pluripotent cells for tissue engineering app...
Bone development is influenced by the local mechanical environment. Experimental evidence suggests t...
Bone development is influenced by the local mechanical environment. Experimental evidence suggests t...
Bone development is influenced by the local mechanical environment. Experimental evidence suggests t...
Endochondral ossification is an indirect path of bone formation involving the condensation of progen...
The purpose of this study was to examine the effect of mineralization on the mechanical properties o...
Contains fulltext : 59366.pdf (publisher's version ) (Closed access)The purpose of...
The fundamental process of endochondral ossification is under tight regulation in the healthy indivi...
This study addressed the theory that local mechanical loading may influence the development of embry...
Mechanical cues play a vital role in limb skeletal development, yet their influence and underpinning...
Large bone defects cannot form a callus and exhibit high complication rates even with the best treat...
Successfully regenerating damaged or diseased bone and other joint tissues will require a detailed u...
The role of mechanical forces in regulation of skeletal multi-potent cell differentiation, and conse...
International audienceChondrogenesis and mechanical stimulation of the cartilage template are essent...
Embryonic stem cells can provide an unlimited supply of pluripotent cells for tissue engineering app...
Bone development is influenced by the local mechanical environment. Experimental evidence suggests t...
Bone development is influenced by the local mechanical environment. Experimental evidence suggests t...
Bone development is influenced by the local mechanical environment. Experimental evidence suggests t...
Endochondral ossification is an indirect path of bone formation involving the condensation of progen...
The purpose of this study was to examine the effect of mineralization on the mechanical properties o...
Contains fulltext : 59366.pdf (publisher's version ) (Closed access)The purpose of...
The fundamental process of endochondral ossification is under tight regulation in the healthy indivi...
This study addressed the theory that local mechanical loading may influence the development of embry...
Mechanical cues play a vital role in limb skeletal development, yet their influence and underpinning...
Large bone defects cannot form a callus and exhibit high complication rates even with the best treat...
Successfully regenerating damaged or diseased bone and other joint tissues will require a detailed u...
The role of mechanical forces in regulation of skeletal multi-potent cell differentiation, and conse...
International audienceChondrogenesis and mechanical stimulation of the cartilage template are essent...
Embryonic stem cells can provide an unlimited supply of pluripotent cells for tissue engineering app...