Altered hypertrophic chondrocyte kinetics in GDF-5 deficient murine tibial growth plates.
نویسندگان
چکیده
The growth/differentiation factors (GDFs) are a subgroup of the bone morphogenetic proteins best known for their role in joint formation and chondrogenesis. Mice deficient in one of these signaling proteins, GDF-5, exhibit numerous skeletal abnormalities, including shortened limb bones. The primary aim of this study was determine whether GDF-5 deficiency would alter the growth rate in growth plates from the long bones in mice and, if so, how this is achieved. Stereologic and cell kinetic parameters in proximal tibial growth plates from 5-week-old female GDF-5 -/- mice and control littermates were examined. GDF-5 deficiency resulted in a statistically significant reduction in growth rate (-14%, p=0.03). The effect of genotype on growth rate was associated with an altered hypertrophic phase duration, with hypertrophic cells from GDF-5 deficient mice exhibiting a significantly longer phase duration compared to control littermates (+25%, p=0.006). These data suggest that one way in which GDF-5 might modulate the rate of endochondral bone growth could be by affecting the duration of the hypertrophic phase in growth plate chondrocytes.
منابع مشابه
Accelerated hypertrophic chondrocyte kinetics in GDF-7 deficient murine tibial growth plates.
The Growth/Differentiation Factors (GDFs) are a subgroup of the Bone Morphogenetic Proteins (BMPs) well known for their role in joint formation and chondrogenesis. Mice deficient in one of these signaling molecules, GDF-5, have recently been shown to exhibit a decreased rate of endochondral bone growth in the proximal tibia due to a significantly longer hypertrophic phase duration. GDF-7 is a r...
متن کاملAltered Hypertrophic Chondrocyte Kinetics in Gdf-5 Deficient Murine Growth Plates
INTRODUCTION The growth/differentiation factors (GDFs) are a subgroup of the Bone Morphogenetic Proteins (BMPs) best known for their role in joint formation and chondrogenesis [1,2]. Mice deficient in one of these signaling proteins, GDF-5, exhibit numerous skeletal abnormalities, including shortened limb bones [3]. Because longitudinal bone growth is achieved via the process of endochondral os...
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متن کاملModulation of vertebral and tibial growth by compression loading: diurnal versus full-time loading.
PURPOSE This study was designed to determine whether the amount of endochondral growth response to mechanical compression and the underlying growth mechanism differed with night-time or day-time loading, relative to full-time loading. METHODS Mechanical compression (nominally 0.1 MPa stress) was applied across tibial and tail vertebral growth plates of growing Sprague-Dawley rats. Four groups...
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عنوان ژورنال:
- Journal of orthopaedic research : official publication of the Orthopaedic Research Society
دوره 22 3 شماره
صفحات -
تاریخ انتشار 2004