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Updated: Jan 28, 2026

Obtaining Primary Osteocytes Through Murine Calvarial Fractionation of GFP-Expressing Osteocytes
Published on: June 2, 2020
Characterization of a novel murine Sost ERT2 Cre model targeting osteocytes
Delphine B Maurel1,2, Tsutomu Matsumoto3, Julian A Vallejo1
11Department of Oral and Craniofacial Sciences, University of Missouri-Kansas City School of Dentistry, Kansas City, MO USA.
Abstract:
Transgenic mice are widely used to delete or overexpress genes in a cell specific manner to advance knowledge of bone biology, function and disease. While numerous Cre models exist to target gene recombination in osteoblasts and osteoclasts, few target osteocytes specifically, particularly mature osteocytes. Our goal was to create a spatial and temporal conditional Cre model using tamoxifen to induce Cre activity in mature osteocytes using a Bac construct containing the 5' and 3' regions of the Sost gene (Sost ERT2 Cre). Four founder lines were crossed with the Ai9 Cre reporter mice. One founder line showed high and specific activity in mature osteocytes. Bones and organs were imaged and fluorescent signal quantitated. While no activity was observed in 2 day old pups, by 2 months of age some osteocytes were positive as osteocyte Cre activity became spontaneous or 'leaky' with age. The percentage of positive osteocytes increased following tamoxifen injection, especially in males, with 43% to 95% positive cells compared to 19% to 32% in females. No signal was observed in any bone surface cell, bone marrow, nor in muscle with or without tamoxifen injection. No spontaneous signal was observed in any other organ. However, with tamoxifen injection, a few positive cells were observed in kidney, eye, lung, heart and brain. All other organs, 28 in total, were negative with tamoxifen injection. However, with age, a muscle phenotype was apparent in the Sost-ERT2 Cre mice. Therefore, although this mouse model may be useful for targeting gene deletion or expression to mature osteocytes, the muscle phenotype may restrict the use of this model to specific applications and should be considered when interpreting data.
Insights
A new transgenic mouse model allows tamoxifen-inducible Cre activity in mature osteocytes. While effective for bone research, age-related
Area of Science:
- Bone Biology and Genetics
- Transgenic Animal Models
- Osteocyte Function
Background:
- Osteocytes are crucial for bone health, but specific genetic targeting remains challenging.
- Existing Cre models primarily target osteoblasts and osteoclasts, not mature osteocytes.
Purpose of the Study:
- To develop a spatial and temporal conditional Cre mouse model for targeting mature osteocytes.
- To utilize a bacterial artificial chromosome (BAC) construct of the Sost gene regulatory regions for Cre expression.
Main Methods:
- Generated Sost-ERT2 Cre transgenic mice.
- Crossed founder lines with Ai9 Cre reporter mice to assess Cre activity.
- Quantified fluorescent signal in bones and organs after tamoxifen induction.
Main Results:
- One founder line exhibited high and specific Cre activity in mature osteocytes.
- Tamoxifen injection increased recombination in osteocytes, particularly in males.
- Age-related 'leakiness' and a muscle phenotype were observed in the model.
Conclusions:
- The Sost-ERT2 Cre mouse model shows promise for mature osteocyte-specific gene manipulation.
- Potential users must consider the observed muscle phenotype and age-dependent 'leakiness'.
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