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首页> 外文期刊>Stem cells translational medicine. >CD11b+ and Sca-1+ Cells Exert the Main Beneficial Effects of Systemically Administered Bone Marrow-Derived Mononuclear Cells in a Murine Model of Mixed Th2/Th17 Allergic Airway Inflammation
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CD11b+ and Sca-1+ Cells Exert the Main Beneficial Effects of Systemically Administered Bone Marrow-Derived Mononuclear Cells in a Murine Model of Mixed Th2/Th17 Allergic Airway Inflammation

机译:CD11b +和Sca-1 +细胞在混合Th2 / Th17过敏性气道炎症的小鼠模型中发挥系统性管理的骨髓衍生单核细胞的主要有益作用

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Systemic administration of bone marrow-derived mononuclear cells (BMDMCs) or bone marrow-derived mesenchymal stromal cells (MSCs) reduces inflammation and airway hyperresponsiveness (AHR) in a murine model of Th2-mediated eosinophilic allergic airway inflammation. However, since BMDMCs are a heterogeneous population that includes MSCs, it is unclear whether the MSCs alone are responsible for the BMDMC effects. To determine which BMDMC population(s) is responsible for ameliorating AHR and lung inflammation in a model of mixed Th2-eosinophilic and Th17-neutrophilic allergic airway inflammation, reminiscent of severe clinical asthma, BMDMCs obtained from normal C57Bl/6 mice were serially depleted of CD45, CD34, CD11b, CD3, CD19, CD31, or Sca-1 positive cells. The different resulting cell populations were then assessed for ability to reduce lung inflammation and AHR in mixed Th2/Th17 allergic airway inflammation induced by mucosal sensitization to and challenge with Aspergillus hyphal extract (AHE) in syngeneic C56Bl/6 mice. BMDMCs depleted of either CD11b-positive (CD11b+) or Sca-1-positive (Sca-1+) cells were unable to ameliorate AHR or lung inflammation in this model. Depletion of the other cell types did not diminish the ameliorating effects of BMDMC administration. In conclusion, in the current model of allergic inflammation, CD11b+ cells (monocytes, macrophages, dendritic cells) and Sca-1+ cells (MSCs) are responsible for the beneficial effects of BMDMCs.This study shows that bone marrow-derived mononuclear cells (BMDMCs) are as effective as bone marrow-derived mesenchymal stromal cells (MSCs) in ameliorating experimental asthma. It also demonstrates that not only MSCs present in the pool of BMDMCs are responsible for BMDMCs’ beneficial effects but also monocytes, which are the most important cell population to trigger these effects. All of this is in the setting of a clinically relevant model of severe allergic airways inflammation and thus provides further support for potential clinical use of cell therapy using MSCs, BMDMCs, and also adult cells such as monocytes in patients with severe asthma.
机译:在Th2介导的嗜酸性变应性气道炎症的鼠模型中,全身性应用骨髓源性单核细胞(BMDMCs)或骨髓源性间充质基质细胞(MSCs)可减少炎症和气道高反应性(AHR)。但是,由于BMDMC是包括MSC在内的异质种群,因此尚不清楚MSC是否单独负责BMDMC的作用。为了确定在混合的Th2-嗜酸性和Th17-中性变应性气道炎症的模型中,哪个BMDMC人群负责缓解AHR和肺部炎症,使人联想到严重的临床哮喘,从正常C57Bl / 6小鼠中获得的BMDMC被连续消耗CD45,CD34,CD11b,CD3,CD19,CD31或Sca-1阳性细胞。然后评估不同的所得细胞群在同系C56Bl / 6小鼠中由粘膜致敏和用曲霉菌菌丝提取物(AHE)攻击而诱导的混合的Th2 / Th17过敏性气道炎症中减轻肺部炎症和AHR的能力。在该模型中,耗尽CD11b阳性(CD11b +)或Sca-1阳性(Sca-1 +)细胞的BMDMC无法改善AHR或肺部炎症。其他细胞类型的消耗并没有减弱BMDMC施用的改善作用。总之,在当前的过敏性炎症模型中,CD11b +细胞(单核细胞,巨噬细胞,树突状细胞)和Sca-1 +细胞(MSC)负责BMDMC的有益作用。这项研究表明,骨髓来源的单核细胞( BMDMCs在缓解实验性哮喘方面与骨髓间充质基质细胞(MSCs)一样有效。它还表明,不仅存在于BMDMC中的MSC负责BMDMC的有益作用,而且还引起单核细胞,这是触发这些作用的最重要的细胞群。所有这些都是在建立严重的过敏性气道炎症的临床相关模型的过程中,从而为患有严重哮喘的患者使用MSC,BMDMC和成年细胞(如单核细胞)的细胞疗法的潜在临床应用提供了进一步的支持。

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