Related Experiment Video
Updated: Jan 31, 2026

Differentiation of Functional Osteoclasts from Human Peripheral Blood CD14+ Monocytes
Published on: January 27, 2023
LYN, a key mediator in estrogen-dependent suppression of osteoclast differentiation, survival, and function
Shubhangi Gavali1, Manoj Kumar Gupta2, Bhavna Daswani1
1National Institute for Research in Reproductive Health, (ICMR), Mumbai 400012, India.
Abstract:
Estrogen insufficiency at menopause cause accelerated bone loss due to unwarranted differentiation and function of osteoclasts. Unraveling the underlying mechanism/s may identify mediators of estrogen action which can be targeted for improved management of osteoporosis. Towards this, we analyzed the effect of 17β-estradiol on the proteomes of differentiating human osteoclasts. The major proteomic changes observed included upregulation of LYN by estrogen. We, therefore, investigated the effect of estrogen on osteoclast differentiation, survival, and function in control and LYN knockdown conditions. In control condition, estrogen treatment increased the apoptosis rate and suppressed the calcium signaling by reducing the intracellular Ca2+ levels as well as expression and activation of NFATc1 and c-Src during differentiation, resulting in reduced osteoclastogenesis. These osteoclasts were smaller in size with reduced extent of multinuclearity and produced significantly low levels of bone resorbing enzymes. They also exhibited disrupted sealing zone formation with low podosome density, impaired cell polarization and reduced resorption of dentine slices. Interestingly, in LYN knockdown condition, estrogen failed to induce apoptosis and inhibit activation of NFATc1 and c-Src. Compared to effect of estrogen on osteoclast in control condition, LYN knockdown osteoclasts did not show reduction in production of bone resorbing enzymes and had defined sealing zone formation with high podosome density with no impairment in cell polarization. They resorbed significant area on dentine slices. Thus, the inhibitory action of estrogen on osteoclast was severely restrained in LYN knockdown condition, demonstrating the importance of LYN as a key mediator of the effect of estrogen on osteoclastogenesis.
Insights
Estrogen
Area of Science:
- Bone Biology
- Endocrinology
- Molecular Cell Biology
Background:
- Estrogen deficiency accelerates bone loss post-menopause by increasing osteoclast activity.
- Understanding estrogen's mechanisms is crucial for developing osteoporosis treatments.
Purpose of the Study:
- To investigate the role of LYN in mediating estrogen's effects on osteoclast differentiation and function.
- To identify potential therapeutic targets for osteoporosis management.
Main Methods:
- Proteomic analysis of human osteoclasts treated with 17β-estradiol.
- Investigated estrogen's impact on osteoclast differentiation, survival, and function in control and LYN knockdown cells.
- Assessed osteoclast size, multinuclearity, bone resorption enzyme production, sealing zone formation, and resorption activity.
Main Results:
- Estrogen upregulated LYN in osteoclasts.
- In control cells, estrogen reduced osteoclastogenesis, induced apoptosis, suppressed calcium signaling, and impaired bone resorption.
- LYN knockdown significantly inhibited estrogen's effects, with osteoclasts showing increased apoptosis resistance, preserved NFATc1/c-Src activation, and enhanced resorption.
Conclusions:
- LYN is a key mediator of estrogen's inhibitory effects on osteoclastogenesis.
- Targeting LYN may offer a novel strategy for managing osteoporosis by restoring estrogen's bone-protective actions.
Related Concept Videos
Key Elements for Plant Nutrition
Osteoclasts in Bone Remodeling
Key Techniques in Microbiology
Survival Curves
The Kaplan-Meier estimator is the most common method for constructing survival curves. This...
Survival Tree
Building a Survival Tree
Constructing a...
Introduction To Survival Analysis
The primary goal of survival analysis is to estimate survival time—the time...

