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γ-Mangostin attenuates osteoclastogenesis and bone resorption by suppressing the PI3K/AKT/NF-κB pathway
Jian Wei1, Jiayue Xie1, Zhiyang He1
1Department of Joint Orthopedics, Liuzhou People's Hospital Affiliated to Guangxi Medical University, Liuzhou, China.
Background:
Postmenopausal osteoporosis (PMOP), driven predominantly by estrogen deficiency-induced hyperactivation of osteoclasts, represents a critical public health burden. The pursuit of naturally sourced inhibitors of osteoclast function with minimized adverse effects remains a pivotal research endeavor. γ-Mangostin (γ-Mag), a natural xanthone derived from the pericarp of mangosteen, possesses broad anti-inflammatory and anti-tumor activities. Nevertheless, its influence on bone metabolic homeostasis, particularly osteoclast biology, remains entirely unexplored. This study aims to elucidate the impact of γ-Mag on osteoclast differentiation and function, and to evaluate its therapeutic potential for PMOP.
Methods:
Primary rat bone marrow-derived macrophages (BMMs) were isolated and stimulated with RANKL to establish an in vitro osteoclastogenesis model. The effects of γ-Mag on osteoclast formation and function were assessed through TRAP staining, F-actin ring immunofluorescence, and bone slice resorption pit assays. Mechanistic insights were gained by examining the PI3K/Akt/NF-κB pathway and downstream osteoclastogenic factors (C-FOS, NFATc1) using qRT-PCR, Western blot, and immunofluorescence. The in vivo efficacy was validated in an ovariectomized (OVX) rat model of PMOP, with bone microarchitecture and remodeling parameters analyzed via Micro-CT and bone histomorphometry.
Results:
At non-cytotoxic concentrations (≤4 μM), γ-Mag potently and concentration-dependently suppressed RANKL-induced osteoclast formation, disrupted F-actin ring integrity, and impaired bone resorptive activity. Mechanistically, γ-Mag significantly attenuated the RANKL-triggered activation of the PI3K/AKT/NF-κB signaling axis, as demonstrated by reduced phosphorylation of PI3K, AKT, p65, and IκB. This upstream suppression consequently led to the downregulation of the pivotal transcription factors C-FOS and NFATc1, and inhibited NFATc1 nuclear translocation. In vivo, γ-Mag administration (10 mg/kg, i.p., every other day for 8 weeks) markedly ameliorated bone loss and restored compromised bone microarchitecture in OVX rats, which was associated with reduced osteoclast numbers and decreased expression of ACP5, CTSK, C-FOS, and NFATc1 in bone tissue.
Conclusion:
Our findings demonstrate that γ-Mag inhibits osteoclastogenesis and bone resorption by targeting the PI3K/AKT/NF-κB pathway, thereby blunting the C-FOS/NFATc1 transcriptional program. This study establishes γ-Mag as a promising natural lead compound for the treatment of postmenopausal osteoporosis.
Insights
Gamma-mangostin (γ-Mag) effectively inhibits osteoclast formation and bone resorption by targeting the PI3K/AKT/NF-κB pathway. This natural compound shows promise for treating postmenopausal osteoporosis (PMOP).
Area of Science:
- Biochemistry
- Pharmacology
- Bone Biology
Background:
- Postmenopausal osteoporosis (PMOP) is a significant health issue driven by estrogen deficiency and osteoclast hyperactivation.
- Natural compounds inhibiting osteoclast function with minimal side effects are highly sought after.
- Gamma-mangostin (γ-Mag), a xanthone from mangosteen, has known anti-inflammatory and anti-tumor properties, but its effect on bone metabolism was unexplored.
Purpose of the Study:
- To investigate the impact of γ-Mag on osteoclast differentiation and function.
- To evaluate the therapeutic potential of γ-Mag for treating PMOP.
- To elucidate the molecular mechanisms underlying γ-Mag's effects on osteoclasts.
Main Methods:
- Established an in vitro osteoclastogenesis model using rat bone marrow-derived macrophages stimulated with RANKL.
- Assessed γ-Mag's effects on osteoclast formation, actin ring integrity, and bone resorption.
- Analyzed the PI3K/Akt/NF-κB pathway, key transcription factors (C-FOS, NFATc1), and in vivo efficacy in an ovariectomized (OVX) rat model.
Main Results:
- γ-Mag suppressed RANKL-induced osteoclast formation and bone resorption at non-cytotoxic concentrations.
- γ-Mag inhibited the PI3K/AKT/NF-κB signaling pathway, reducing phosphorylation of key proteins and downstream factors C-FOS and NFATc1.
- In vivo, γ-Mag treatment ameliorated bone loss and improved bone microarchitecture in OVX rats, reducing osteoclast markers.
Conclusions:
- γ-Mag inhibits osteoclastogenesis and bone resorption by targeting the PI3K/AKT/NF-κB pathway and downregulating C-FOS/NFATc1.
- γ-Mag demonstrates significant therapeutic potential as a natural compound for managing postmenopausal osteoporosis.
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