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GM-CSF 导致 SMAD3 缺陷型主动脉瘤的发生。

GM-CSF contributes to aortic aneurysms resulting from SMAD3 deficiency.

机构信息

Department of Cardiovascular Surgery, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, People’s Republic of China.

出版信息

J Clin Invest. 2013 May;123(5):2317-31. doi: 10.1172/JCI67356. Epub 2013 Apr 15.

Abstract

Heterozygous loss-of-function SMAD3 (Mothers against decapentaplegic homolog 3) mutations lead to aneurysm-osteoarthritis syndrome (AOS). In the present study, we found that mice lacking Smad3 had a vascular phenotype similar to AOS, marked by the progressive development of aneurysms. These aneurysms were associated with various pathological changes in transmural inflammatory cell infiltration. Bone marrow transplants from Smad3-/- mice induced aortitis and aortic root dilation in irradiated WT recipient mice. Transplantation of CD4+ T cells from Smad3-/- mice also induced aortitis in Smad3+/+ recipient mice, while depletion of CD4+ T cells in Smad3-/- mice reduced the infiltration of inflammatory cells in the aortic root. Furthermore, IFN-γ deficiency increased, while IL-17 deficiency decreased, disease severity in Smad3+/- mice. Cytokine secretion was measured using a cytokine quantibody array, and Smad3-/- CD4+ T cells secreted more GM-CSF than Smad3+/+ CD4+ T cells. GM-CSF induced CD11b+Gr-1+Ly-6Chi inflammatory monocyte accumulation in the aortic root, but administration of anti-GM-CSF mAb to Smad3-/- mice resulted in significantly less inflammation and dilation in the aortic root. We also identified a missense mutation (c.985A>G) in a family of thoracic aortic aneurysms. Intense inflammatory infiltration and GM-CSF expression was observed in aortas specimens of these patients, suggesting that GM-CSF is potentially involved in the development of AOS.

摘要

杂合性 SMAD3(Mothers against decapentaplegic homolog 3)功能丧失突变导致动脉瘤-骨关节炎综合征(AOS)。在本研究中,我们发现 Smad3 缺失的小鼠具有类似于 AOS 的血管表型,其特征是动脉瘤的进行性发展。这些动脉瘤与炎症细胞向血管壁浸润的各种病理变化有关。从 Smad3-/- 小鼠中移植骨髓会在照射 WT 受体小鼠中诱导主动脉炎和主动脉根部扩张。从 Smad3-/- 小鼠中移植 CD4+ T 细胞也会在 Smad3+/+ 受体小鼠中诱导主动脉炎,而在 Smad3-/- 小鼠中耗尽 CD4+ T 细胞会减少主动脉根部炎症细胞的浸润。此外,IFN-γ 缺陷会增加,而 IL-17 缺陷会减少 Smad3+/- 小鼠的疾病严重程度。使用细胞因子定量抗体阵列测量细胞因子分泌,Smad3-/- CD4+ T 细胞分泌的 GM-CSF 多于 Smad3+/+ CD4+ T 细胞。GM-CSF 诱导 CD11b+Gr-1+Ly-6Chi 炎症性单核细胞在主动脉根部积聚,但向 Smad3-/- 小鼠施用抗 GM-CSF mAb 可导致主动脉根部炎症和扩张明显减少。我们还在一个胸主动脉瘤家族中鉴定出一个错义突变(c.985A>G)。这些患者的主动脉标本中观察到强烈的炎症浸润和 GM-CSF 表达,表明 GM-CSF 可能参与了 AOS 的发展。

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