» Articles » PMID: 25158197

A Novel Way to Statistically Analyze Morphologic Changes in Dmp1-null Osteocytes

Overview
Publisher Informa Healthcare
Date 2014 Aug 27
PMID 25158197
Citations 23
Authors
Affiliations
Soon will be listed here.
Abstract

Recent studies have revealed multiple roles of osteocytes in bone metabolism. However, detailed analyses of the embedded osteocytes in bone structure are still limited because of the high mineral content around these cells. In this study, we developed an innovative technique, the "FITC-Imaris technique", which combines FITC ([2, 5]-Fluorescein isothiocyanate), confocal microscopy and Imaris software. With this method, we could not only visualize the 3-D morphology of embedded osteocytes, but more importantly, we were able to statistically quantitate the osteocyte structure in the cell surface area, total cell volume, and dendrite numbers. Furthermore, we made a side-by-side comparison of the new method with the acid-etched SEM imaging technique, a common imaging method for studies of osteocyte morphology with a much smaller cell depth (< 3 μm). Finally, we used the FITC-Imaris technique to show both the morphological and statistical differences in the osteocyte structure between the Dmp1-null mice (the osteomalacia model) and their age-matched control littermates. We expect that this newly developed technique will become a powerful tool to disclose more roles that osteocytes play in bone health and diseases.

Citing Articles

FGF23 directly inhibits osteoprogenitor differentiation in Dmp1-knockout mice.

Courbon G, Kentrup D, Thomas J, Wang X, Tsai H, Spindler J JCI Insight. 2023; 8(24).

PMID: 37943605 PMC: 10807721. DOI: 10.1172/jci.insight.156850.


Short-term effects of mechanical loading on the transdifferentiation of condylar chondrocytes.

Gross A, Buschang P, Shakya A, Jing Y Am J Orthod Dentofacial Orthop. 2023; 164(2):201-214.

PMID: 36922241 PMC: 10659147. DOI: 10.1016/j.ajodo.2022.12.011.


Contributions of Resin Cast Etching to Visualising the Osteocyte Lacuno-Canalicular Network Architecture in Bone Biology and Tissue Engineering.

Sato M, Shah F Calcif Tissue Int. 2023; 112(5):525-542.

PMID: 36611094 PMC: 10106349. DOI: 10.1007/s00223-022-01058-9.


Tendon Cells Root Into (Instead of Attach to) Humeral Bone Head via Fibrocartilage-Enthesis.

Wang Z, Ma C, Chen D, Haslett C, Xu C, Dong C Int J Biol Sci. 2023; 19(1):183-203.

PMID: 36594083 PMC: 9760439. DOI: 10.7150/ijbs.79007.


Sirt3 mediates the benefits of exercise on bone in aged mice.

Li Q, Wang R, Zhang Z, Wang H, Lu X, Zhang J Cell Death Differ. 2022; 30(1):152-167.

PMID: 36153410 PMC: 9883264. DOI: 10.1038/s41418-022-01053-5.


References
1.
Feng J, Ward L, Liu S, Lu Y, Xie Y, Yuan B . Loss of DMP1 causes rickets and osteomalacia and identifies a role for osteocytes in mineral metabolism. Nat Genet. 2006; 38(11):1310-5. PMC: 1839871. DOI: 10.1038/ng1905. View

2.
Bellido T . Downregulation of SOST/sclerostin by PTH: a novel mechanism of hormonal control of bone formation mediated by osteocytes. J Musculoskelet Neuronal Interact. 2006; 6(4):358-9. View

3.
Erben R . Embedding of bone samples in methylmethacrylate: an improved method suitable for bone histomorphometry, histochemistry, and immunohistochemistry. J Histochem Cytochem. 1997; 45(2):307-13. DOI: 10.1177/002215549704500215. View

4.
Ye L, Mishina Y, Chen D, Huang H, Dallas S, Dallas M . Dmp1-deficient mice display severe defects in cartilage formation responsible for a chondrodysplasia-like phenotype. J Biol Chem. 2004; 280(7):6197-203. PMC: 2647591. DOI: 10.1074/jbc.M412911200. View

5.
Nakashima T, Hayashi M, Fukunaga T, Kurata K, Oh-Hora M, Feng J . Evidence for osteocyte regulation of bone homeostasis through RANKL expression. Nat Med. 2011; 17(10):1231-4. DOI: 10.1038/nm.2452. View