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Endurance exercise and growth hormone improve bone formation in young and growth-retarded chronic kidney disease rats
Ariel Troib1, Mayan Guterman1, Ralph Rabkin2
1The Shraga Segal Department of Microbiology and Immunology, Faculty of Health Sciences, Ben Gurion University of the Negev, Beer Sheva, Israel.
Insights
Exercise combined with growth hormone (GH) treatment benefits bone growth in young rats with chronic kidney disease (CKD). This combination improves tibial length and trabecular bone, addressing short stature and bone disease in pediatric CKD.
Area of Science:
- Pediatric Nephrology
- Endocrinology
- Bone Biology
Background:
- Childhood chronic kidney disease (CKD) causes short stature and abnormal bone mineralization.
- Longitudinal growth relies on epiphyseal growth plate (EGP) chondrocyte maturation.
- Previous research linked CKD growth impairment to reduced EGP growth hormone (GH) receptor signaling and exercise benefits for muscle IGF-I.
Purpose of the Study:
- To investigate the effects of treadmill exercise and GH supplementation on growth and bone health in a rat model of CKD.
- To assess the impact of combined interventions on EGP maturation and bone formation markers.
Main Methods:
- 20-day-old rats underwent 5/6 nephrectomy (CKD) or sham surgery.
- Animals were subjected to treadmill exercise, with or without GH supplementation.
- Evaluated EGP morphology, tibial length, and expression of key bone and growth factors.
Main Results:
- CKD induced growth retardation and widened EGP hypertrophic zones, partially improved by exercise.
- Exercise increased expression of EGP factors like IGF-I, VEGF, RANKL, and osteocalcin in CKD rats.
- Combined GH treatment and exercise significantly improved trabecular bone volume and expression of factors like RUNX2, RANKL, MMP13, and VEGF in CKD rats, an effect not seen with GH alone.
Conclusions:
- Treadmill exercise enhances tibial bone growth and local IGF-I in the growth plate.
- Combining GH treatment with exercise demonstrates synergistic benefits for trabecular bone formation in CKD.
- This combined approach holds potential for treating short stature and bone disease associated with pediatric CKD.
Background:
Childhood chronic kidney disease (CKD) is associated with both short stature and abnormal bone mineralization. Normal longitudinal growth depends on proper maturation of epiphyseal growth plate (EGP) chondrocytes, leading to the formation of trabecular bone in the primary ossification centre. We have recently shown that linear growth impairment in CKD is associated with impaired EGP growth hormone (GH) receptor signalling and that exercise improved insulin-like growth factor I (IGF-I) signalling in CKD-related muscle atrophy.
Methods:
In this study, 20-day-old rats underwent 5/6 nephrectomy (CKD) or sham surgery (C) and were exercised with treadmill, with or without GH supplementation.
Results:
CKD-related growth retardation was associated with a widened EGP hypertrophic zone. This was not fully corrected by exercise (except for tibial length). Exercise in CKD improved the expression of EGP key factors of endochondral ossification such as IGF-I, vascular endothelial growth factor (VEGF), receptor activator of nuclear factor kappa-B ligand (RANKL) and osteocalcin. Combining GH treatment with treadmill exercise for 2 weeks improved the decreased trabecular bone volume in CKD, as well as the expression of growth plate runt-related transcription factor 2, RANKL, metalloproteinase 13 and VEGF, while GH treatment alone could not do that.
Conclusions:
Treadmill exercise improves tibial bone linear growth, as well as growth plate local IGF-I. When combined with GH treatment, running exercise shows beneficial effects on trabecular bone formation, suggesting the potential benefit of this combination for CKD-related short stature and bone disease.
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