Parathyroid hormone 1 (1–34) acts on the scales and involves calcium metabolism in goldfish
0303 health sciences
Receptor Activator of Nuclear Factor-kappa B
Muscles
Acid Phosphatase
RANK Ligand
Animal Structures
Osteoclasts
Cell Differentiation
Alkaline Phosphatase
Giant Cells
Isoenzymes
03 medical and health sciences
Gene Expression Regulation
Parathyroid Hormone
Goldfish
Animals
Humans
Receptors, Parathyroid Hormone
Calcium
Amino Acid Sequence
RNA, Messenger
Cells, Cultured
DOI:
10.1016/j.bone.2011.02.004
Publication Date:
2011-02-18T10:26:23Z
AUTHORS (20)
ABSTRACT
The effect of fugu parathyroid hormone 1 (fugu PTH1) on osteoblasts and osteoclasts in teleosts was examined with an assay system using teleost scale and the following markers: alkaline phosphatase (ALP) for osteoblasts and tartrate-resistant acid phosphatase (TRAP) for osteoclasts. Synthetic fugu PTH1 (1-34) (100pg/ml-10ng/ml) significantly increased ALP activity at 6h of incubation. High-dose (10ng/ml) fugu PTH1 significantly increased ALP activity even after 18h of incubation. In the case of TRAP activity, fugu PTH1 did not change at 6h of incubation, but fugu PTH1 (100pg/ml-10ng/ml) significantly increased TRAP activity at 18h. Similar results were obtained for human PTH (1-34), but there was an even greater response with fugu PTH1 than with human PTH. In vitro, we demonstrated that both the receptor activator of the NF-κB ligand in osteoblasts and the receptor activator NF-κB mRNA expression in osteoclasts increased significantly by fugu PTH1 treatment. In an in vivo experiment, fugu PTH1 induced hypercalcemia resulted from the increase of both osteoblastic and osteoclastic activities in the scale as well as the decrease of scale calcium contents after fugu PTH1 injection. In addition, an in vitro experiment with intramuscular autotransplanted scale indicated that the ratio of multinucleated osteoclasts/mononucleated osteoclasts in PTH-treated scales was significantly higher than that in the control scales. Thus, we concluded that PTH acts on osteoblasts and osteoclasts in the scales and regulates calcium metabolism in goldfish.
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