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C3a-C3aR信号传导是骨骼内环境稳定的一种新型调节因子。

C3a-C3aR signaling is a novel modulator of skeletal homeostasis.

作者信息

Kuhn Megan B, VandenBerg Hayden S, Reynolds Andrew J, Carson Matthew D, Warner Amy J, LaRue Amanda C, Novince Chad M, Hathaway-Schrader Jessica D

机构信息

Department of Oral Health Sciences, College of Dental Medicine, Medical University of South Carolina, Charleston, SC, USA.

Department of Stomatology-Div. of Periodontics, College of Dental Medicine, Medical University of South Carolina, Charleston, SC, USA.

出版信息

Bone Rep. 2023 Feb 16;18:101662. doi: 10.1016/j.bonr.2023.101662. eCollection 2023 Jun.

Abstract

Osteoimmune studies have identified complement signaling as an important regulator of the skeleton. Specifically, complement anaphylatoxin receptors (i.e., C3aR, C5aR) are expressed on osteoblasts and osteoclasts, implying that C3a and/or C5a may be candidate mediators of skeletal homeostasis. The study aimed to determine how complement signaling influences bone modeling/remodeling in the young skeleton. Female C57BL/6J C3aRC5aR vs. wildtype and C3aR vs. wildtype mice were examined at age 10 weeks. Trabecular and cortical bone parameters were analyzed by micro-CT. In situ osteoblast and osteoclast outcomes were determined by histomorphometry. Osteoblast and osteoclast precursors were assessed in vitro. C3aRC5aR mice displayed an increased trabecular bone phenotype at age 10 weeks. In vitro studies revealed C3aRC5aR vs. wildtype cultures had less bone-resorbing osteoclasts and increased bone-forming osteoblasts, which were validated in vivo. To determine whether C3aR alone was critical for the enhanced skeletal outcomes, wildtype vs. C3aR mice were evaluated for osseous tissue outcomes. Paralleling skeletal findings in C3aRC5aR mice, C3aR vs. wildtype mice had an enhanced trabecular bone volume fraction, which was attributed to increased trabecular number. There was elevated osteoblast activity and suppressed osteoclastic cells in C3aR vs. wildtype mice. Furthermore, primary osteoblasts derived from wildtype mice were stimulated with exogenous C3a, which more profoundly upregulated and the pro-osteoclastic chemokine . This study introduces the C3a/C3aR signaling axis as a novel regulator of the young skeleton.

摘要

骨免疫学研究已确定补体信号传导是骨骼的重要调节因子。具体而言,补体过敏毒素受体(即C3aR、C5aR)在成骨细胞和破骨细胞上表达,这意味着C3a和/或C5a可能是骨骼稳态的候选介质。该研究旨在确定补体信号传导如何影响幼龄骨骼的骨建模/重塑。在10周龄时对雌性C57BL/6J C3aRC5aR与野生型小鼠以及C3aR与野生型小鼠进行了检查。通过显微CT分析小梁骨和皮质骨参数。通过组织形态计量学确定原位成骨细胞和破骨细胞的结果。在体外评估成骨细胞和破骨细胞前体。C3aRC5aR小鼠在10周龄时表现出小梁骨表型增加。体外研究表明,与野生型培养物相比,C3aRC5aR培养物中的骨吸收破骨细胞较少,而成骨的成骨细胞增加,这在体内得到了验证。为了确定单独的C3aR是否对增强的骨骼结果至关重要,对野生型与C3aR小鼠的骨组织结果进行了评估。与C3aRC5aR小鼠的骨骼发现相似,C3aR与野生型小鼠相比,小梁骨体积分数增加,这归因于小梁数量增加。C3aR与野生型小鼠的成骨细胞活性升高,破骨细胞受到抑制。此外,用外源性C3a刺激源自野生型小鼠的原代成骨细胞,其更显著地上调了 和促破骨细胞趋化因子 。本研究引入了C3a/C3aR信号轴作为幼龄骨骼的新型调节因子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3cf0/9969257/8478de8132a6/gr1.jpg

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