Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5889301 | Bone | 2015 | 12 Pages |
Abstract
Scl-Ab generally effected greater increases in cancellous and cortical bone mass than PTH, correlating with higher bone formation rates (BFR) at 4Â weeks in the spine and mid-femur without corresponding increases in bone resorption indices. The increases in vertebral BFR/BS at 4Â weeks attenuated with continued treatment to a greater extent with Scl-Ab than with PTH. At 4Â weeks, both Scl-Ab and PTH effected equivalent increases in total Ob number (Ob.N). Ob density on the formative surfaces (Ob.N/Ob.S) remained similar across groups while mineral apposition rate (MAR) was significantly higher with Scl-Ab at week 4, reflecting an increase in individual Ob vigor relative to vehicle and PTH. After 26Â weeks, Scl-Ab maintained BFR/BS with fewer Ob and lower Ob.N/Ob.S by increasing the Ob footprint (bone surface area occupied by an Ob) and increasing MAR, compared with PTH. The lower Ob.N and Ob.N/Ob.S with Scl-Ab at 26Â weeks were associated with decreased osteoprogenitor numbers compared with both vehicle and PTH, an effect not evident at week 4. Osteoprogenitor numbers were generally positively correlated with Ob.N across groups and timepoints, suggesting dynamic coordination between the progenitor and Ob populations. The time-dependent reductions in subpopulations of the Ob lineage with Scl-Ab may be integral to the greater attenuation or self-regulation of bone formation observed at the vertebra, as PTH required more Ob at the formative site with correlative increased numbers of progenitors compared with Scl-Ab indicating potentially greater stimulus for progenitor pool proliferation or differentiation.
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Authors
Michael S. Ominsky, Danielle L. Brown, Gwyneth Van, David Cordover, Efrain Pacheco, Emily Frazier, Linda Cherepow, Marnie Higgins-Garn, J. Ignacio Aguirre, Thomas J. Wronski, Marina Stolina, Lei Zhou, Ian Pyrah, Rogely Waite Boyce,