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Osteoclast-derived IGF1 is required for pagetic lesion formation in vivo
Kazuaki Miyagawa1, Yasuhisa Ohata1, Jesus Delgado-Calle1
1Division of Hematology and Oncology, Department of Medicine, Indiana University (IU), Indianapolis, Indiana, USA.
Abstract:
We report that transgenic mice expressing measles virus nucleocapsid protein (MVNP) in osteoclasts (OCLs) (MVNP mice) are Paget's disease (PD) models and that OCLs from patients with PD and MVNP mice express high levels of OCL-derived IGF1 (OCL-IGF1). To determine OCL-IGF1's role in PD and normal bone remodeling, we generated WT and MVNP mice with targeted deletion of Igf1 in OCLs (Igf1-cKO) and MVNP/Igf1-cKO mice, and we assessed OCL-IGF1's effects on bone mass, bone formation rate, EphB2/EphB4 expression on OCLs and osteoblasts (OBs), and pagetic bone lesions (PDLs). A total of 40% of MVNP mice, but no MVNP/Igf1-cKO mice, had PDLs. Bone volume/tissue volume (BV/TV) was decreased by 60% in lumbar vertebrae and femurs of MVNP/Igf1-cKO versus MVNP mice with PDLs and by 45% versus all MVNP mice tested. Bone formation rates were decreased 50% in Igf1-cKO and MVNP/Igf1-cKO mice versus WT and MVNP mice. MVNP mice had increased EphB2 and EphB4 levels in OCLs/OBs versus WT and MVNP/Igf1-cKO, with none detectable in OCLs/OBs of Igf1-cKO mice. Mechanistically, IL-6 induced the increased OCL-IGF1 in MVNP mice. These results suggest that high OCL-IGF1 levels increase bone formation and PDLs in PD by enhancing EphB2/EphB4 expression in vivo and suggest OCL-IGF1 may contribute to normal bone remodeling.
Insights
Osteoclast-derived IGF1 (OCL-IGF1) plays a key role in Paget's disease (PD) pathogenesis and normal bone remodeling. Deleting OCL-IGF1 in Paget's disease models prevents bone lesions and normalizes bone mass.
Area of Science:
- Bone Biology
- Endocrinology
- Pathology
Background:
- Paget's disease (PD) is a chronic bone disorder characterized by abnormal bone remodeling.
- Osteoclasts (OCLs) play a crucial role in bone resorption.
- Increased OCL-derived IGF1 (OCL-IGF1) has been observed in PD.
Purpose of the Study:
- To investigate the role of OCL-IGF1 in PD pathogenesis and normal bone remodeling.
- To determine the effects of OCL-IGF1 on bone mass, formation rate, and specific molecular signaling pathways.
Main Methods:
- Generated wild-type (WT), MVNP, Igf1-cKO, and MVNP/Igf1-cKO mice models.
- Assessed bone mass (BV/TV), bone formation rates, and EphB2/EphB4 expression in OCLs and osteoblasts (OBs).
- Analyzed pagetic bone lesions (PDLs) and the role of IL-6 in OCL-IGF1 induction.
Main Results:
- MVNP mice, a PD model, showed high OCL-IGF1 levels.
- Deletion of OCL-Igf1 in MVNP mice prevented PDLs and normalized bone mass.
- Bone formation rates were reduced in Igf1-cKO and MVNP/Igf1-cKO mice.
- OCL-IGF1 enhanced EphB2/EphB4 expression in OCLs/OBs, and IL-6 induced OCL-IGF1.
Conclusions:
- High OCL-IGF1 levels contribute to PD pathogenesis by increasing bone formation and PDLs via enhanced EphB2/EphB4 signaling.
- OCL-IGF1 is implicated in normal bone remodeling processes.
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