Serum PTH, PTH1R/ATF4 pathway, and the sRANKL/OPG system in bone as a new link between bone growth, cross-sectional geometry, and strength in young rats with experimental chronic kidney disease
•Cross-sectional bone geometry was better in young rats with CKD than in controls.•Mild increase of PTH and bone PTH1R/ATF4 axis positively affect bone geometry.•Low bone sRANKL and sRANKL/OPG ratio was positively associated with bone geometry.•Bone geometry was related to biomechanical properties o...
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Veröffentlicht in: | Cytokine (Philadelphia, Pa.) Pa.), 2021-12, Vol.148, p.155685-155685, Article 155685 |
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Zusammenfassung: | •Cross-sectional bone geometry was better in young rats with CKD than in controls.•Mild increase of PTH and bone PTH1R/ATF4 axis positively affect bone geometry.•Low bone sRANKL and sRANKL/OPG ratio was positively associated with bone geometry.•Bone geometry was related to biomechanical properties of the femoral diaphysis.•Alterations of bone geometry affect bone growth and strength in young uremic rats.
The progression of chronic kidney disease (CKD) in children is associated with deregulated parathyroid hormone (PTH), growth retardation, and low bone accrual. PTH can cause both catabolic and anabolic impact on bone, and the activating transcription factor 4 (ATF4), a downstream target gene of PTH, is related to its anabolic effect. Osteoprotegerin (OPG) and receptor activator of NF-κB ligand (RANKL) are PTH-dependent cytokines, which may play an important role in the regulation of bone remodeling. This study aimed to evaluate the impact of endogenous PTH and the bone RANKL/OPG system on bone growth, cross-sectional geometry and strength utilizing young, nephrectomized rats. The parameters of cross-sectional geometry were significantly elevated in rats with CKD during the three-month experimental period compared with the controls, and they were strongly associated with serum PTH levels and the expression of parathyroid hormone 1 receptor (PTH1R)/ATF4 genes in bone. Low bone soluble RANKL (sRANKL) levels and sRANKL/OPG ratios were also positively correlated with cross-sectional bone geometry and femoral length. Moreover, the analyzed geometric parameters were strongly related to the biomechanical properties of femoral diaphysis. In summary, the mild increase in endogenous PTH, its anabolic PTH1R/ATF4 axis and PTH-dependent alterations in the bone RANKL/OPG system may be one of the possible mechanisms responsible for the favorable impact on bone growth, cross-sectional geometry and strength in young rats with experimental CKD. |
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ISSN: | 1043-4666 1096-0023 |
DOI: | 10.1016/j.cyto.2021.155685 |