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H 型血管在实验性脊柱关节炎模型中病理性骨生成和炎症中的作用。

Contribution of Type H Blood Vessels to Pathologic Osteogenesis and Inflammation in an Experimental Spondyloarthritis Model.

机构信息

Amsterdam Rheumatology & Immunology Center, and Department of Experimental Immunology, Amsterdam UMC/University of Amsterdam, The Netherlands.

Department of Internal Medicine 3-Rheumatology and Immunology, Friedrich Alexander University Erlangen-Nuremberg and Universitaetsklinikum Erlangen, Erlangen, Germany, and Leibniz-Institut für Analytische Wissenschaften-ISAS-E.V., Dortmund, Germany.

出版信息

Arthritis Rheumatol. 2023 Jul;75(7):1152-1165. doi: 10.1002/art.42449. Epub 2023 Apr 23.

Abstract

OBJECTIVE

Spondyloarthritis (SpA) is characterized by pathologic osteogenesis, inflammation, and extensive angiogenesis in axial and peripheral tissues. Current therapies effectively target inflammation, but these therapies lack efficacy in preventing pathologic osteogenesis. Transgenic mice overexpressing transmembrane tumor necrosis factor (tmTNF-Tg mice) exhibit SpA-like features. We hypothesized that type H blood vessels, which are implicated in osteogenesis, are increased and contribute to pathology in this experimental SpA model.

METHODS

We analyzed ankles, femora, and vertebrae of tmTNF-Tg mice and nontransgenic littermates and tmTNF-Tg mice on either a TNF receptor type I (TNFRI)-deficient or TNF receptor type II (TNFRII)-deficient background for osteogenesis, angiogenesis, and inflammation using advanced imaging technologies at various stages of disease.

RESULTS

Compared to nontransgenic littermates, tmTNF-Tg mice exhibited an increase in vertebral type H vessels and osteoprogenitor cells in subchondral bone. These features of increased angiogenesis and osteogenesis were already present before onset of clinical disease symptoms. Type H vessels and osteoprogenitor cells were in close proximity to inflammatory lesions and ectopic lymphoid structures. The tmTNF-Tg mice also showed perivertebral ectopic type H vessels and osteogenesis, an increased number of vertebral transcortical vessels, and enhanced entheseal angiogenesis. In tmTNF-Tg mice crossed on a TNFRI- or TNFRII-deficient background, no clear reduction in type H vessels was shown, suggesting that type H vessel formation is not exclusively mediated via TNFRI or TNFRII.

CONCLUSION

The contribution of type H vessels to pathologic osteogenesis in experimental SpA advances our knowledge of the pathophysiology of this disease and may also provide a novel opportunity for targeted intervention.

摘要

目的

脊柱关节炎(SpA)的特征是轴性和外周组织中的病理性成骨、炎症和广泛的血管生成。目前的治疗方法能有效靶向炎症,但这些疗法在预防病理性成骨方面效果不佳。过表达跨膜肿瘤坏死因子(tmTNF-Tg 小鼠)的转基因小鼠表现出 SpA 样特征。我们假设参与成骨作用的 H 型血管增加,并促成这种实验性 SpA 模型中的病理学改变。

方法

我们分析了 tmTNF-Tg 小鼠及其非转基因同窝仔鼠以及在 TNF 受体Ⅰ型(TNFRI)缺陷或 TNF 受体Ⅱ型(TNFRII)缺陷背景下的 tmTNF-Tg 小鼠的踝关节、股骨和椎体,使用先进的成像技术在疾病的各个阶段分析骨生成、血管生成和炎症。

结果

与非转基因同窝仔鼠相比,tmTNF-Tg 小鼠的椎体 H 型血管和软骨下骨中的成骨前体细胞增加。这些血管生成和骨生成增加的特征在临床疾病症状出现之前就已经存在。H 型血管和成骨前体细胞与炎症病变和异位淋巴样结构接近。tmTNF-Tg 小鼠还表现出椎旁异位 H 型血管和骨生成、椎体皮质下血管数量增加以及腱膜血管生成增强。在 TNFRI 或 TNFRII 缺陷背景下杂交的 tmTNF-Tg 小鼠中,未显示出 H 型血管明显减少,表明 H 型血管形成并非完全通过 TNFRI 或 TNFRII 介导。

结论

H 型血管对实验性 SpA 中病理性成骨的贡献增进了我们对这种疾病病理生理学的认识,也可能为靶向干预提供新的机会。

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