Department of Orthopedic Surgery, Medical School, University of Minnesota, Minneapolis, MN, USA.
Comparative Molecular Biosciences, School of Veterinary Medicine, St. Paul, MN, USA.
J Cell Mol Med. 2024 Sep;28(17):e70081. doi: 10.1111/jcmm.70081.
Diet-induced obesity is associated with enhanced systemic inflammation that limits bone regeneration. HDAC inhibitors are currently being explored as anti-inflammatory agents. Prior reports show that myeloid progenitor-directed Hdac3 ablation enhances intramembranous bone healing in female mice. In this study, we determined if Hdac3 ablation increased intramembranous bone regeneration in mice fed a high-fat/high-sugar (HFD) diet. Micro-CT analyses demonstrated that HFD-feeding enhanced the formation of periosteal reaction tissue of control littermates, reflective of suboptimal bone healing. We confirmed enhanced bone volume within the defect of Hdac3-ablated females and showed that Hdac3 ablation reduced the amount of periosteal reaction tissue following HFD feeding. Osteoblasts cultured in a conditioned medium derived from Hdac3-ablated cells exhibited a four-fold increase in mineralization and enhanced osteogenic gene expression. We found that Hdac3 ablation elevated the secretion of several chemokines, including CCL2. We then confirmed that Hdac3 deficiency increased the expression of Ccl2. Lastly, we show that the proportion of CCL2-positve cells within bone defects was significantly higher in Hdac3-deficient mice and was further enhanced by HFD. Overall, our studies demonstrate that Hdac3 deletion enhances intramembranous bone healing in a setting of diet-induced obesity, possibly through increased production of CCL2 by macrophages within the defect.
饮食诱导的肥胖与全身炎症增强有关,而炎症会限制骨骼再生。目前正在探索组蛋白去乙酰化酶(HDAC)抑制剂作为抗炎药物。先前的报告表明,髓系祖细胞定向的 Hdac3 缺失可增强雌性小鼠膜内骨愈合。在这项研究中,我们确定了 Hdac3 缺失是否会增加高脂肪/高糖(HFD)饮食喂养小鼠的膜内骨再生。微 CT 分析表明,HFD 喂养增强了对照组同窝仔鼠的骨膜反应组织的形成,这反映了骨愈合不佳。我们证实 Hdac3 缺失的雌性小鼠骨缺损内的骨量增加,并表明 Hdac3 缺失可减少 HFD 喂养后的骨膜反应组织量。在源自 Hdac3 缺失细胞的条件培养基中培养的成骨细胞,其矿化增加了四倍,并增强了成骨基因的表达。我们发现 Hdac3 缺失可增加几种趋化因子的分泌,包括 CCL2。然后我们证实了 Hdac3 缺乏会增加 Ccl2 的表达。最后,我们发现骨缺损中 CCL2 阳性细胞的比例在 Hdac3 缺陷型小鼠中明显更高,并且在 HFD 作用下进一步增强。总体而言,我们的研究表明,Hdac3 缺失可增强饮食诱导肥胖小鼠的膜内骨愈合,这可能是通过缺陷内巨噬细胞中 CCL2 的产生增加所致。