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Sost deficiency does not alter bones lacunar or vascular porosity in mice

Title: Sost deficiency does not alter bones lacunar or vascular porosity in mice
Authors: Mosey, Henry; Nunez, Juan A.; Goring, Alice; Clarkin, Claire; Staines, Katherine A.; Lee, Peter D.; Pitsillides, Andrew A.; Javaheri, Behzad
Publication Year: 2017
Collection: University of Southampton: e-Prints Soton
Description: SCLEROSTIN (Sost) is expressed predominantly in osteocytes acting as a negative regulator of bone formation. In humans, mutations in the SOST gene lead to skeletal overgrowth and increased bone mineral density, suggesting that SCLEROSTIN is a key regulator of bone mass. The function of SCLEROSTIN as an inhibitor of bone formation is further supported by Sost knockout (KO) mice which display a high bone mass with elevated bone formation. Previous studies have indicated that Sost exerts its effect on bone formation through Wnt-mediated regulation of osteoblast differentiation, proliferation, and activity. Recent in vitro studies have also suggested that SCLEROSTIN regulates angiogenesis and osteoblast-to-osteocyte transition. Despite this wealth of knowledge of the mechanisms responsible for SCLEROSTIN action, no previous studies have examined whether SCLEROSTIN regulates osteocyte and vascular configuration in cortices of mouse tibia. Herein, we image tibiae from Sost KO mice and their wild-type (WT) counterparts with high-resolution CT to examine whether lack of SCLEROSTIN influences the morphometric properties of lacunae and vascular canal porosity relating to osteocytes and vessels within cortical bone. Male Sost KO and WT mice (n = 6/group) were sacrificed at 12 weeks of age. Fixed tibiae were analyzed using microCT to examine cortical bone mass and architecture. Then, samples were imaged by using benchtop and synchrotron nano-computed tomography at the tibiofibular junction. Our data, consistent with previous studies show that, Sost deficiency leads to significant enhancement of bone mass by cortical thickening and bigger cross-sectional area and we find that this occurs without modifications of tibial ellipticity, a measure of bone shape. In addition, our data show that there are no significant differences in any lacunar or vascular morphometric or geometric parameters between Sost KO mouse tibia and WT counterparts. We, therefore, conclude that the significant increases in bone mass induced by Sost ...
Document Type: article in journal/newspaper
File Description: text
Language: English
Relation: https://eprints.soton.ac.uk/415175/1/fmats_04_00027.pdf; Mosey, Henry, Nunez, Juan A., Goring, Alice, Clarkin, Claire, Staines, Katherine A., Lee, Peter D., Pitsillides, Andrew A. and Javaheri, Behzad (2017) Sost deficiency does not alter bones lacunar or vascular porosity in mice. Frontiers in Materials, 4 (27). (doi:10.3389/fmats.2017.00027 ).
Availability: https://eprints.soton.ac.uk/415175/; https://eprints.soton.ac.uk/415175/1/fmats_04_00027.pdf
Rights: cc_by_4
Accession Number: edsbas.64F906A1
Database: BASE