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PMID: 18264976 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Transient receptor potential vanilloid 4 deficiency suppresses unloading-induced bone loss.

Journal of cellular physiology ·Vol. 216 ·No. 1 ·2008-07-00 ·Pages 47-53

Mizoguchi F, Mizuno A, Hayata T, Nakashima K, Heller S, Ushida T, Sokabe M, Miyasaka N, Suzuki M, Ezura Y, Noda M

Abstract

Mechanosensing is one of the crucial components of the biological events. In bone, as observed in unloading-induced osteoporosis in bed ridden patients, mechanical stress determines the levels of bone mass. Many molecules have been suggested to be involved in sensing mechanical stress in bone, while the full pathways for this event has not yet been identified. We examined the role of TRPV4 in unloading-induced bone loss. Hind limb unloading induced osteopenia in wild-type mice. In contrast, TRPV4 deficiency suppressed such unloading-induced bone loss. As underlying mechanism for such effects, TRPV4 deficiency suppressed unloading-induced reduction in the levels of mineral apposition rate and bone formation rate. In these mice, unloading-induced increase in the number of osteoclasts in the primary trabecular bone was suppressed by TRPV4 deficiency. Unloading-induced reduction in the longitudinal length of primary trabecular bone was also suppressed by TRPV4 deficiency. TRPV4 protein is expressed in both osteoblasts and osteoclasts. These results indicated that TRPV4 plays a critical role in unloading-induced bone loss.

MeSH Terms
3T3 Cells Animals Bone Resorption/metabolism Female Femur/anatomy & histology,metabolism,pathology Hindlimb Suspension/adverse effects Humans Mice Mice, Inbred C57BL Mice, Knockout Osteoblasts/cytology,metabolism Osteoclasts/cytology,metabolism Random Allocation TRPV Cation Channels/genetics,metabolism Tomography, X-Ray Computed
Chemicals
TRPV Cation Channels Trpv4 protein, mouse
Authors & Affiliations
11 authors, click to expand affiliations / ORCID
Mizoguchi Fumitaka
Department of Molecular Pharmacology, Medical Research Institute, Tokyo Medical and Dental University, Tokyo, Japan.
Mizuno Atsuko
Hayata Tadayoshi
Nakashima Kazuhisa
Heller Stefan
Ushida Takashi
Sokabe Masahiro
Miyasaka Nobuyuki
Suzuki Makoto
Ezura Yoichi
Noda Masaki
Article Info
Journal
Journal of cellular physiology
Abbr.
J Cell Physiol
ISSN
1097-4652
Published
2008-07-00
Pages
47-53
Language
English
Region
United States
NLM ID
0050222
Subset
IM
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