4.6 Article

Mineralisation of collagen rich soft tissues and osteocyte lacunae in Enpp1-/- mice

期刊

BONE
卷 69, 期 -, 页码 139-147

出版社

ELSEVIER SCIENCE INC
DOI: 10.1016/j.bone.2014.09.016

关键词

NPP1; Osteocytes; Osteoclasts; Soft tissue mineralisation; Pyrophosphate

资金

  1. Arthritis Research UK (Career Developmental Fellowship) [19205]
  2. Biotechnology and Biological Sciences Research Council (BBSRC
  3. Institute Strategic Programme Grant and Institute Career Path Fellowship)
  4. BBSRC [BB/F023928/1, BBS/E/D/20221657] Funding Source: UKRI
  5. Biotechnology and Biological Sciences Research Council [BBS/E/D/20221657, BB/F023928/1] Funding Source: researchfish
  6. Versus Arthritis [19205] Funding Source: researchfish

向作者/读者索取更多资源

Ecto-nucleotide pyrophosphatase/phosphodiesterases (NPPs) hydrolyse nucleotide triphosphates to the corresponding nucleotide monophosphates and the mineralisation inhibitor, pyrophosphate (PPi). This study examined the role of NPP1 in osteocytes, osteoclasts and cortical bone, using a mouse model lacking NPP1 (Enpp1(-/-)). We used microcomputed tomography (mu CT) to investigate how NPP1 deletion affects cortical bone structure; excised humerus bones from 8, 15 and 22-week old mice were scanned at 0.9 mu m. Although no changes were evident in the cortical bone of 8-week old Enpp1(-/-) mice, significant differences were observed in older animals. Cortical bone volume was decreased 28% in 22-week Enpp1(-/-) mice, whilst cortical porosity was reduced 30% and 60% at 15 and 22-weeks, respectively. This was accompanied by up to a 15% decrease in closed pore diameter and a 55% reduction in the number of pores. Cortical thickness was reduced up to 35% in 15 and 22-week Enpp1(-/-) animals and the endosteal diameter was increased up to 23%. Thus, the cortical bone from Enpp1(-/-) mice was thinner and less porous, with a larger marrow space. Scanning electron microscopy (SEM) revealed a decrease in the size and number of blood vessel channels in the cortical bone as well as a 40% reduction in the mean plan area of osteocyte lacunae. We noted that the number of viable osteocytes isolated from the long bones of Enpp1(-/-) mice was decreased <= 50%. In contrast, osteoclast formation and resorptive activity were unaffected by NPP1 deletion. mu CT and histological analysis of Enpp1(-/-) mice also revealed calcification of the joints and vertebrae as well as soft tissues including the whisker follicles, ear pinna and trachea. This calcification worsened as the animals aged. Together, these data highlight the key role of NPP1 in regulating calcification of both soft and skeletal tissues. 2014 The Authors. Published by Elsevier Inc. This is an open access article under the CC BY license (httpl/creativecommons.org/licenses/by/3.0/).

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