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Isolating Mesangiogenic Progenitor Cells MPCs from Human Bone Marrow
Published on: July 15, 2016
Conditional Loss of Nmp4 in Mesenchymal Stem Progenitor Cells Enhances PTH-Induced Bone Formation
Emily G Atkinson1, Michele Adaway1, Daniel J Horan1,2
1Department of Anatomy, Cell Biology, and Physiology, Indiana University School of Medicine (IUSM), Indianapolis, IN, USA.
Abstract:
Activation of bone anabolic pathways is a fruitful approach for treating severe osteoporosis, yet FDA-approved osteoanabolics, eg, parathyroid hormone (PTH), have limited efficacy. Improving their potency is a promising strategy for maximizing bone anabolic output. Nmp4 (Nuclear Matrix Protein 4) global knockout mice exhibit enhanced PTH-induced increases in trabecular bone but display no overt baseline skeletal phenotype. Nmp4 is expressed in all tissues; therefore, to determine which cell type is responsible for driving the beneficial effects of Nmp4 inhibition, we conditionally removed this gene from cells at distinct stages of osteogenic differentiation. Nmp4-floxed (Nmp4fl/fl ) mice were crossed with mice bearing one of three Cre drivers including (i) Prx1Cre+ to remove Nmp4 from mesenchymal stem/progenitor cells (MSPCs) in long bones; (ii) BglapCre+ targeting mature osteoblasts, and (iii) Dmp1Cre+ to disable Nmp4 in osteocytes. Virgin female Cre+ and Cre- mice (10 weeks of age) were sorted into cohorts by weight and genotype. Mice were administered daily injections of either human PTH 1-34 at 30 μg/kg or vehicle for 4 weeks or 7 weeks. Skeletal response was assessed using dual-energy X-ray absorptiometry, micro-computed tomography, bone histomorphometry, and serum analysis for remodeling markers. Nmp4fl/fl ;Prx1Cre+ mice virtually phenocopied the global Nmp4-/- skeleton in the femur, ie, a mild baseline phenotype but significantly enhanced PTH-induced increase in femur trabecular bone volume/total volume (BV/TV) compared with their Nmp4fl/fl ;Prx1Cre- controls. This was not observed in the spine, where Prrx1 is not expressed. Heightened response to PTH was coincident with enhanced bone formation. Conditional loss of Nmp4 from the mature osteoblasts (Nmp4fl/fl ;BglapCre+ ) failed to increase BV/TV or enhance PTH response. However, conditional disabling of Nmp4 in osteocytes (Nmp4fl/fl ;Dmp1Cre+ ) increased BV/TV without boosting response to hormone under our experimental regimen. We conclude that Nmp4-/- Prx1-expressing MSPCs drive the improved response to PTH therapy and that this gene has stage-specific effects on osteoanabolism. © 2022 American Society for Bone and Mineral Research (ASBMR).
Insights
Inhibiting Nuclear Matrix Protein 4 (Nmp4) in mesenchymal stem/progenitor cells enhances parathyroid hormone (PTH) therapy for osteoporosis. This targeted approach boosts bone formation more effectively than current treatments.
Area of Science:
- Bone Biology and Metabolism
- Osteoporosis Therapeutics
- Cellular Differentiation
Background:
- Parathyroid hormone (PTH) therapy shows limited efficacy for severe osteoporosis.
- Nuclear Matrix Protein 4 (Nmp4) knockout mice exhibit improved PTH response.
- Nmp4's role in specific cell types driving PTH response is unclear.
Purpose of the Study:
- To identify the specific cell type responsible for Nmp4's beneficial effects on PTH-induced bone anabolism.
- To investigate the stage-specific roles of Nmp4 in osteogenic differentiation and response to anabolic therapy.
Main Methods:
- Conditional knockout mouse models were generated using Nmp4-floxed mice crossed with Prx1Cre, BglapCre, or Dmp1Cre drivers.
- Mice received daily injections of human PTH 1-34 or vehicle for 4–7 weeks.
- Skeletal responses were evaluated using DXA, micro-CT, bone histomorphometry, and serum markers.
Main Results:
- Conditional Nmp4 deletion in mesenchymal stem/progenitor cells (MSPCs) phenocopied global knockout, significantly enhancing PTH-induced bone formation in the femur.
- Loss of Nmp4 in mature osteoblasts did not improve bone mass or PTH response.
- Nmp4 deletion in osteocytes increased bone mass but did not enhance PTH response.
Conclusions:
- Nmp4-expressing MSPCs are critical for mediating the enhanced anabolic response to PTH therapy.
- Nmp4 exhibits stage-specific functions in osteoanabolism, highlighting its potential as a therapeutic target.
- Targeting Nmp4 in specific progenitor cells offers a promising strategy to improve osteoporosis treatment efficacy.
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