CCR2/CCR5-mediated macrophage–smooth muscle cell crosstalk in pulmonary hypertension

CCR2型 CCL5 癌症研究 四氯化碳 缺氧(环境) 串扰 趋化因子 炎症 发病机制 巨噬细胞 细胞生物学 化学 医学 免疫学 趋化因子受体 生物 T细胞 免疫系统 体外 生物化学 氧气 有机化学 物理 光学 白细胞介素2受体
作者
Shariq Abid,Élisabeth Marcos,Aurélien Parpaleix,Valérie Amsellem,Marielle Breau,Amal Houssaïni,N. Vienney,Marine Lefèvre,Geneviève Dérumeaux,Sue Evans,Cédric Hubeau,Marion Delcroix,Rozenn Quarck,Serge Adnot,Larissa Lipskaia
出处
期刊:The European respiratory journal [European Respiratory Society]
卷期号:54 (4): 1802308-1802308 被引量:112
标识
DOI:10.1183/13993003.02308-2018
摘要

Macrophages are major players in the pathogenesis of pulmonary arterial hypertension (PAH). To investigate whether lung macrophages and pulmonary-artery smooth muscle cells (PASMCs) collaborate to stimulate PASMC growth and whether the CCL2-CCR2 and CCL5-CCR5 pathways inhibited macrophage–PASMC interactions and PAH development, we used human CCR5-knock-in mice and PASMCs from patients with PAH and controls. Conditioned media from murine M1 or M2 macrophages stimulated PASMC growth. This effect was markedly amplified with conditioned media from M2 macrophage/PASMC co-cultures. CCR2, CCR5, CCL2 and CCL5 were upregulated in macrophage/PASMC co-cultures. Compared to inhibiting either receptor, dual CCR2 and CCR5 inhibition more strongly attenuated the growth-promoting effect of conditioned media from M2-macrophage/PASMC co-cultures. Deleting either CCR2 or CCR5 in macrophages or PASMCs attenuated the growth response. In mice with hypoxia- or SUGEN/hypoxia-induced PH, targeting both CCR2 and CCR5 prevented or reversed PH more efficiently than targeting either receptor alone. Patients with PAH exhibited CCR2 and CCR5 upregulation in PASMCs and perivascular macrophages compared to controls. The PASMC growth-promoting effect of conditioned media from M2-macrophage/PASMC co-cultures was greater when PASMCs from PAH patients were used in the co-cultures or as the target cells and was dependent on CCR2 and CCR5. PASMC migration toward M2-macrophages was greater with PASMCs from PAH patients and was attenuated by blocking CCR2 and CCR5. CCR2 and CCR5 are required for collaboration between macrophages and PASMCs to initiate and amplify PASMC migration and proliferation during PAH development. Dual targeting of CCR2 and CCR5 may hold promise for treating human PAH.
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