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Neuropeptide Y Y2 antagonist treated ovariectomized mice exhibit greater bone mineral density
K L Seldeen1, P G Halley2, C H Volmar2
1Division of Geriatrics and Palliative Medicine, Jacobs School of Medicine and Biomedical Sciences, University at Buffalo, Buffalo, NY, USA; Research Service, Veterans Affairs Western New York Healthcare System, Buffalo, NY, USA.
Abstract:
Osteoporosis, a disease characterized by progressive bone loss and increased risk of fracture, often results from menopausal loss of estrogen in women. Neuropeptide Y has been shown to negatively regulate bone formation, with amygdala specific deletion of the Y2 receptor resulting in increased bone mass in mice. In this study, ovariectomized (OVX) mice were injected once daily with JNJ-31020028, a brain penetrant Y2 receptor small molecule antagonist to determine the effects on bone formation. Antagonist treated mice had reduced weight and showed increased whole-body bone mineral density compared to vehicle-injected mice. Micro computerized tomography (micro-CT) demonstrated increased vertebral trabecular bone volume, connectivity density and trabecular thickness. Femoral micro-CT analysis revealed increased bone volume within trabecular regions and greater trabecular number, without significant difference in other parameters or within cortical regions. A decrease was seen in serum P1NP, a measure used to confirm positive treatment outcomes in bisphosphonate treated patients. C-terminal telopeptide 1 (CTX-1), a blood biomarker of bone resorption, was decreased in treated animals. The higher bone mineral density observed following Y2 antagonist treatment, as determined by whole-body DEXA scanning, is indicative of either enhanced mineralization or reduced bone loss. Additionally, our findings that ex vivo treatment of bone marrow cells with the Y2 antagonist did not affect osteoblast and osteoclast formation suggests the inhibitor is not affecting these cells directly, and suggests a central role for compound action in this system. Our results support the involvement of Y2R signalling in bone metabolism and give credence to the hypothesis that selective pharmacological manipulation of Y2R may provide anabolic benefits for treating osteoporosis.
Insights
A novel Y2 receptor antagonist, JNJ-31020028, increased bone mineral density and improved bone structure in osteoporosis models. This suggests potential for Y2 receptor signaling in treating bone loss diseases.
Area of Science:
- Endocrinology
- Bone Biology
- Pharmacology
Background:
- Osteoporosis is characterized by bone loss and fracture risk, often linked to estrogen deficiency.
- Neuropeptide Y (NPY) signaling, particularly through Y2 receptors (Y2R), negatively impacts bone formation.
- Targeting Y2R presents a potential therapeutic strategy for osteoporosis.
Purpose of the Study:
- To investigate the effects of a brain-penetrant Y2 receptor antagonist (JNJ-31020028) on bone formation in an ovariectomized mouse model of osteoporosis.
- To assess the impact of Y2R antagonism on bone mineral density, bone structure, and bone turnover markers.
Main Methods:
- Ovariectomized (OVX) mice were treated daily with JNJ-31020028 or vehicle.
- Bone mineral density was assessed using DEXA and micro-CT.
- Bone turnover markers (P1NP and CTX-1) were measured in serum.
- Ex vivo studies assessed the effect of the antagonist on osteoblast and osteoclast formation.
Main Results:
- JNJ-31020028 treatment led to increased whole-body bone mineral density and improved vertebral trabecular bone parameters (volume, connectivity, thickness).
- Femoral micro-CT showed increased trabecular bone volume and number.
- Serum markers indicated reduced bone resorption (CTX-1) and a trend towards reduced formation (P1NP).
- Ex vivo cell culture showed no direct effect on osteoblast or osteoclast differentiation, suggesting a central mechanism of action.
Conclusions:
- Pharmacological antagonism of Y2 receptor signaling increases bone mass and improves bone microarchitecture in an OVX mouse model.
- The Y2 receptor antagonist JNJ-31020028 demonstrates potential as an anabolic agent for osteoporosis treatment.
- Targeting Y2R signaling offers a promising therapeutic avenue for managing osteoporosis and preventing fractures.
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