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GDF15 induces excessive activation of osteoclasts within the vertebral endplates leading to early endplate degeneration
Xiaoqun Li, Jinhui Wu, Qingjie Kong, Miao Hu, Yuhong Li, Ziheng Wei, Heng Jiang, Xuhui Zhou, Jun Ma
Xiaoqun Li, Jinhui Wu, Qingjie Kong, Miao Hu, Yuhong Li, Ziheng Wei, Heng Jiang, Xuhui Zhou, Jun Ma
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Research Article Aging Bone biology

GDF15 induces excessive activation of osteoclasts within the vertebral endplates leading to early endplate degeneration

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Abstract

Modic type 1 and 2 changes (MC-1 and MC-2) are highly prevalent in individuals with chronic low back pain, yet the cellular and molecular mechanisms underlying vertebral endplate degeneration remain poorly defined. Here, we report that osteoclastogenesis is markedly elevated in MC-1 and MC-2 lesions compared with MC-3 lesions, suggesting an active role for osteoclasts in the early stages of degeneration. Using a lumbar spine instability (LSI) mouse model, we demonstrate enhanced osteoclast activity in degenerating endplates. RNA sequencing of mononuclear cells isolated from the endplate and adjacent subchondral bone identified Gdf15 as a potential upstream regulator of this process. Conditional knockout of Gdf15 in monocytes reduced osteoclast formation, aberrant CD31hiEmcnhi angiogenesis, and pain-associated neurogenesis, ultimately mitigating endplate degeneration and mechanical allodynia. Mechanistically, GDF15 promoted the fusion of preosteoclasts by modulating the expression of Rho family small GTPases. In a humanized GDF15 knockin mouse model, therapeutic neutralization of GDF15 led to a reduction in osteoclast burden, improved endplate structure, and attenuated pain behavior. Together, these findings uncover a previously unrecognized role for GDF15 in driving osteoclast-mediated endplate degeneration and highlight its potential as a therapeutic target for the treatment of endplate-related chronic low back pain.

Authors

Xiaoqun Li, Jinhui Wu, Qingjie Kong, Miao Hu, Yuhong Li, Ziheng Wei, Heng Jiang, Xuhui Zhou, Jun Ma

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Figure 6

Conditional knockout of Gdf15 attenuates endplate degeneration in mice.

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Conditional knockout of Gdf15 attenuates endplate degeneration in mice.
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(A) Representative T2-weighted MRI images of lumbar spines in Gdf15fl/fl and Gdf15 cKO mice after LSI surgery. Arrows indicate the high signal. (B) Quantitative analysis of MRI signal intensity reflecting inflammatory changes in the endplates. (C) Representative 3D micro-CT reconstructions of lumbar endplates. (D and E) Quantitative micro-CT analysis of endplate total porosity and trabecular separation (Tb.Sp). (F) Representative histological images of endplates stained with safranin O/fast green. Scale bars: 100 μm. (G) Histological scoring of endplate degeneration based on safranin O/fast green staining. (H) Representative images of COX2 staining. Scale bars: 50 μm. (I) Quantitative analysis of COX2+ cells. (J) Representative images of MMP13 staining after treatment with control IgG or anti-GDF15 mAb of sham mice and mice after LSI surgery. Scale bars: 100 μm. (K) Quantitative analysis of MMP13+ cells. Data are presented as mean ± SD. Statistical analysis was performed using 2-tailed Student’s t tests. **P < 0.01, ***P < 0.001.

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