Related Experiment Videos
Adipose-derived CLEC3B promotes osteogenesis through a CLEC3B-IGFBP4-related paracrine axis associated with
Zhihao Xia1,2,3, Liangliang Wei1,2,3, Jiajia Ji4
1Department of Spine Surgery, Honghui Hospital, Xi'an Jiaotong University, Xi'an, 710054, Shaanxi, China.
Abstract:
Postmenopausal osteoporosis (PMOP) develops within a complex metabolic milieu, but the adipose-derived cues that regulate osteoblast function are not fully defined. Here, plasma ELISA analysis showed preferential elevation of circulating C-type lectin domain family 3 member B (CLEC3B) in the high-BMI PMOP subgroup. CLEC3B was enriched in adipose tissue and negatively regulated by estradiol. In vivo, adipose-targeted overexpression of Clec3b increased trabecular bone mass and promoted osteoblast-associated bone formation without markedly altering osteoclast-related parameters. To investigate the underlying mode of action, we used an adipocyte-osteoblast conditioned-medium model. Conditioned medium from Clec3b-overexpressing adipocytes promoted osteogenic differentiation of primary calvarial osteoblasts, whereas conditioned medium from Clec3b-silenced adipocytes produced the opposite effect. Adipocyte transcriptomic analysis nominated Igfbp4 as a secretome-associated candidate reduced after Clec3b overexpression. Recombinant insulin-like growth factor-binding protein 4 (IGFBP4) reduced the increases in osteogenic gene expression, RUNX2 abundance, and matrix deposition induced by Clec3b-enriched conditioned medium. In parallel, recombinant IGFBP4 (rIGFBP4) partially attenuated the associated changes in mitochondrial superoxide-related fluorescence, intracellular oxidative fluorescence, mitochondrial membrane potential, and PINK1/PRKN-related signaling. Collectively, the data are consistent with a model whereby adipose-derived CLEC3B promotes osteogenesis through a CLEC3B-IGFBP4-related paracrine axis associated with mitochondrial adaptation in osteoblasts. These findings define a testable adipose-to-bone signaling mechanism relevant to osteoblast dysfunction in PMOP.
Related Concept Videos
Osteoclasts in Bone Remodeling
Hormones and Bone Tissue
Hormones That Influence Osteoblasts and/or Maintain the Matrix
Several hormones are necessary for controlling bone growth and maintaining the bone matrix. The pituitary gland secretes growth hormone (GH), which, as its name implies, controls bone growth. This happens in several ways: first, it triggers chondrocyte...