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靶向白细胞介素-11 系统治疗肺动脉高压。

Targeting IL-11 system as a treatment of pulmonary arterial hypertension.

机构信息

CIBER de enfermedades respiratorias, Health Institute Carlos III, Valencia, Spain; Department of Pharmacology, Faculty of Medicine, University of Valencia, Spain; Pharmacy Unit, University General Hospital Consortium of Valencia, Spain.

CIBER de enfermedades respiratorias, Health Institute Carlos III, Valencia, Spain; Department of Pharmacology, Faculty of Medicine, University of Valencia, Spain.

出版信息

Pharmacol Res. 2023 Nov;197:106985. doi: 10.1016/j.phrs.2023.106985. Epub 2023 Nov 9.

Abstract

IL-11 is linked to fibrotic diseases, but its role in pulmonary hypertension is unclear. We examined IL-11's involvement in idiopathic pulmonary arterial hypertension (iPAH). Using samples from control (n = 20) and iPAH (n = 6) subjects, we assessed IL-11 and IL-11Rα expression and localization through RT-qPCR, ELISA, immunohistochemistry, and immunofluorescence. A monocrotaline-induced PAH model helped evaluate the impact of siRNA-IL-11 on pulmonary artery remodeling and PH. The effects of recombinant human IL-11 and IL-11Rα on human pulmonary artery smooth muscle cell (HPASMC) proliferation, pulmonary artery endothelial cell (HPAEC) mesenchymal transition, monocyte interactions, endothelial tube formation, and precision cut lung slice (PCLS) pulmonary artery remodeling and contraction were evaluated. IL-11 and IL-11Rα were over-expressed in pulmonary arteries (3.2-fold and 75-fold respectively) and serum (1.5-fold and 2-fold respectively) of patients with iPAH. Therapeutic transient transfection with siRNA targeting IL-11 resulted in a significant reduction in pulmonary artery remodeling (by 98%), right heart hypertrophy (by 66%), and pulmonary hypertension (by 58%) in rats exposed to monocrotaline treatment. rhIL-11 and soluble rhIL-11Rα induce HPASMC proliferation and HPAEC to monocyte interactions, mesenchymal transition, and tube formation. Neutralizing monoclonal IL-11 and IL-11Rα antibodies inhibited TGFβ1 and EDN-1 induced HPAEC to mesenchymal transition and HPASMC proliferation. In 3D PCLS, rhIL-11 and soluble rhIL-11Rα do not promote pulmonary artery contraction but sensitize PCLS pulmonary artery contraction induced by EDN-1. In summary, IL-11 and IL-11Rα are more highly expressed in the pulmonary arteries of iPAH patients and contribute to pulmonary artery remodeling and the development of PH.

摘要

IL-11 与纤维化疾病有关,但它在肺动脉高压中的作用尚不清楚。我们研究了 IL-11 在特发性肺动脉高压(iPAH)中的作用。使用来自对照(n=20)和 iPAH(n=6)患者的样本,我们通过 RT-qPCR、ELISA、免疫组织化学和免疫荧光评估了 IL-11 和 IL-11Rα 的表达和定位。使用单克隆旋毛虫诱导的 PAH 模型评估了 siRNA-IL-11 对肺动脉重塑和 PH 的影响。重组人 IL-11 和 IL-11Rα 对人肺动脉平滑肌细胞(HPASMC)增殖、肺动脉内皮细胞(HPAEC)间充质转化、单核细胞相互作用、内皮管形成和精密切割肺切片(PCLS)肺动脉重塑和收缩的影响进行了评估。iPAH 患者的肺动脉(分别增加 3.2 倍和 75 倍)和血清(分别增加 1.5 倍和 2 倍)中 IL-11 和 IL-11Rα 过度表达。用靶向 IL-11 的 siRNA 进行治疗性瞬时转染可显著减少暴露于单克隆旋毛虫治疗的大鼠的肺动脉重塑(减少 98%)、右心肥厚(减少 66%)和肺动脉高压(减少 58%)。rhIL-11 和可溶性 rhIL-11Rα 诱导 HPASMC 增殖和 HPAEC 与单核细胞相互作用、间充质转化和管形成。中和单克隆抗体 IL-11 和 IL-11Rα 抑制 TGFβ1 和 EDN-1 诱导的 HPAEC 向间充质转化和 HPASMC 增殖。在 3D PCLS 中,rhIL-11 和可溶性 rhIL-11Rα 不会促进肺动脉收缩,但可增强 PCLS 中由 EDN-1 诱导的肺动脉收缩。总之,IL-11 和 IL-11Rα 在 iPAH 患者的肺动脉中表达更高,促进肺动脉重塑和 PH 的发展。

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