Identification and Modulation of Microenvironment Is Crucial for Effective Mesenchymal Stromal Cell Therapy in Acute Lung Injury

急性呼吸窘迫综合征 医学 间充质干细胞 肝细胞生长因子 间质细胞 癌症研究 免疫学 药理学 病理 内科学 受体
作者
Diana Islam,Yongbo Huang,Vito Fanelli,Luisa Delsedime,Sulong Wu,Julie Khang,Bing Han,Alice Grassi,Manshu Li,Yonghao Xu,Alice Luo,Jianfeng Wu,Xiaoqing Liu,Montey McKillop,Jeffrey A. Medin,Haibo Qiu,Nanshan Zhong,Mingyao Liu,John G. Laffey,Yimin Li
出处
期刊:American Journal of Respiratory and Critical Care Medicine [American Thoracic Society]
卷期号:199 (10): 1214-1224 被引量:140
标识
DOI:10.1164/rccm.201802-0356oc
摘要

Rationale: There are controversial reports on applications of mesenchymal stromal cells (MSCs) in patients with acute respiratory distress syndrome (ARDS). Objectives: We hypothesized that lung microenvironment was the main determinant of beneficial versus detrimental effects of MSCs during ARDS. Methods: Lung proteome was profiled in three models of injury induced by acid instillation and/or mechanical ventilation in mice. Human gene of glutathione peroxidase-1 was delivered before MSC administration; or MSCs carrying human gene of IL-10 or hepatocyte growth factor were administered after lung injury. An inhibitory cocktail against IL-6, fibronectin, and oxidative stress was used in in vitro studies using human small airway epithelial cells and human MSCs after exposure to plasma of patients with ARDS. Measurements and Main Results: Distinct proteomic profiles were observed in three lung injury models. Administration of MSCs protected lung from ventilator-induced injury, whereas it worsened acid-primed lung injuries associated with fibrotic development in lung environment that had high levels of IL-6 and fibronectin along with low antioxidant capacity. Correction of microenvironment with glutathione peroxidase-1, or treatment with MSCs carrying human gene of IL-10 or hepatocyte growth factor after acid-primed injury, reversed the detrimental effects of native MSCs. Proteomic profiles obtained in the mouse models were also similarly observed in human ARDS. Treatment with the inhibitory cocktail in samples of patients with ARDS retained protective effects of MSCs in small airway epithelial cells. Conclusions: MSCs can be beneficial or detrimental depending on microenvironment at the time of administration. Identification of potential beneficiaries seems to be crucial to guide MSC therapy in ARDS.
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