Journal article

Altered ultrastructure, density and cathepsin K expression in bone of female muscarinic acetylcholine receptor M3 knockout mice


Authors listLips, Katrin Susanne; Kneffel, Mathias; Willscheid, Fee; Mathies, Frank Martin; Kampschulte, Marian; Hartmann, Sonja; Panzer, Imke; Duerselen, Lutz; Heiss, Christian; Kauschke, Vivien

Publication year2015

Pages201-207

JournalInternational Immunopharmacology

Volume number29

Issue number1

ISSN1567-5769

eISSN1878-1705

DOI Linkhttps://doi.org/10.1016/j.intimp.2015.05.012

PublisherElsevier


Abstract

High frequency of osteoporosis is found in postmenopausal women where several molecular components were identified to be involved in bone loss that subsequently leads to an increased fracture risk. Bone loss has already been determined in male mice with gene deficiency of muscarinic acetylcholine receptor M3 (M3R-KO). Here we asked whether bone properties of female 16-week old M3R-KO present similarities to osteoporotic bone loss by means of biomechanical, radiological, electron microscopic, cell- and molecular biological methods.

Reduced biomechanical strength of M3R-KO correlated with cortical thickness and decreased bone mineral density (BMD). Femur and vertebrae of M3R-KO demonstrated a declined trabecular bone volume, surface, and a higher trabecular pattern factor and structure model index (SMI) compared to wild type (WT) mice. In M3R-KO, the number of osteoclasts as well as the cathepsin K mRNA expression was increased. Osteoclasts of M3R-KO showed an estimated increase in cytoplasmic vesicles. Further, histomorphometrical analysis revealed up-regulation of alkaline phosphatase. Osteoblasts and osteocytes showed a swollen cytoplasm with an estimated increase in the amount of rough endoplasmatic reticulum and in case of osteocytes a reduced pericellular space.

Thus, current results on bone properties of 16-week old female M3R-KO are related to postmenopausal osteoporotic phenotype. Stimulation and up-regulation of muscarinic acetylcholine receptor subtype M3 expression in osteoblasts might be a possible new option for prevention and therapy of osteoporotic fractures. Pharmacological interventions and the risk of side effects have to be determined in upcoming studies. (C) 2015 Elsevier B.V. All rights reserved.




Citation Styles

Harvard Citation styleLips, K., Kneffel, M., Willscheid, F., Mathies, F., Kampschulte, M., Hartmann, S., et al. (2015) Altered ultrastructure, density and cathepsin K expression in bone of female muscarinic acetylcholine receptor M3 knockout mice, International Immunopharmacology, 29(1), pp. 201-207. https://doi.org/10.1016/j.intimp.2015.05.012

APA Citation styleLips, K., Kneffel, M., Willscheid, F., Mathies, F., Kampschulte, M., Hartmann, S., Panzer, I., Duerselen, L., Heiss, C., & Kauschke, V. (2015). Altered ultrastructure, density and cathepsin K expression in bone of female muscarinic acetylcholine receptor M3 knockout mice. International Immunopharmacology. 29(1), 201-207. https://doi.org/10.1016/j.intimp.2015.05.012



Keywords


Bone mineral densityCholinergic receptorOSTEOBLASTTransmission electron microscopyTRAP

Last updated on 2025-18-06 at 13:48