Targeting transitioning lung monocytes/macrophages as treatment strategies in lung disease related to environmental exposures

IF 4.7 2区 医学 Q1 RESPIRATORY SYSTEM Respiratory Research Pub Date : 2024-04-09 DOI:10.1186/s12931-024-02804-3
Aaron D. Schwab, Todd A. Wyatt, Grace Moravec, Geoffrey M. Thiele, Amy J. Nelson, Angela Gleason, Oliver Schanze, Michael J. Duryee, Debra J. Romberger, Ted R. Mikuls, Jill A. Poole
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Abstract

Environmental/occupational exposures cause significant lung diseases. Agricultural organic dust extracts (ODE) and bacterial component lipopolysaccharide (LPS) induce recruited, transitioning murine lung monocytes/macrophages, yet their cellular role remains unclear. CCR2 RFP+ mice were intratracheally instilled with high concentration ODE (25%), LPS (10 μg), or gram-positive peptidoglycan (PGN, 100 μg) for monocyte/macrophage cell-trafficking studies. CCR2 knockout (KO) mice and administration of intravenous clodronate liposomes strategies were employed to reduce circulating monocytes available for lung recruitment following LPS exposure. Lung tissues and bronchoalveolar lavage fluid (BALF) were collected. Pro-inflammatory and/or pro-fibrotic cytokines, chemokines, and lung extracellular matrix mediators were quantitated by ELISA. Infiltrating lung cells including monocyte/macrophage subpopulations, neutrophils, and lymphocytes were characterized by flow cytometry. Lung histopathology, collagen content, vimentin, and post-translational protein citrullination and malondialdehyde acetaldehyde (MAA) modification were quantitated. Parametric statistical tests (one-way ANOVA, Tukey’smultiple comparison) and nonparametric statistical (Kruskal–Wallis, Dunn’s multiple comparison) tests were used following Shapiro–Wilk testing for normality. Intratracheal instillation of ODE, LPS, or PGN robustly induced the recruitment of inflammatory CCR2+ CD11cintCD11bhi monocytes/macrophages and both CCR2+ and CCR2− CD11c−CD11bhi monocytes at 48 h. There were also increases in CCR2+ CD4+ and CD8+ T cells and NK cells. Despite reductions in LPS-induced lung infiltrating CD11cintCD11bhi cells (54% reduction), CCR2 knockout (KO) mice were not protected against LPS-induced inflammatory and pro-fibrotic consequences. Instead, compensatory increases in lung neutrophils and CCL2 and CCL7 release occurred. In contrast, the depletion of circulating monocytes through the administration of intravenous clodronate (vs. vehicle) liposomes 24 h prior to LPS exposure reduced LPS-induced infiltrating CD11cintCD11bhi monocyte-macrophage subpopulation by 59% without compensatory changes in other cell populations. Clodronate liposome pre-treatment significantly reduced LPS-induced IL-6 (66% reduction), matrix metalloproteinases (MMP)-3 (36%), MMP-8 (57%), tissue inhibitor of metalloproteinases (61%), fibronectin (38%), collagen content (22%), and vimentin (40%). LPS-induced lung protein citrullination and MAA modification, post-translational modifications implicated in lung disease, were reduced (39% and 48%) with clodronate vs. vehicle liposome. Highly concentrated environmental/occupational exposures induced the recruitment of CCR2+ and CCR2− transitioning monocyte-macrophage and monocyte subpopulations and targeting peripheral monocytes may reduce the adverse lung consequences resulting from exposures to LPS-enriched inhalants.
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将肺单核细胞/巨噬细胞作为治疗与环境暴露有关的肺部疾病的靶点
环境/职业暴露会导致严重的肺部疾病。农业有机粉尘提取物(ODE)和细菌成分脂多糖(LPS)可诱导小鼠肺部单核细胞/巨噬细胞的招募和转化,但它们在细胞中的作用仍不清楚。向 CCR2 RFP+ 小鼠气管内灌注高浓度 ODE(25%)、LPS(10 μg)或革兰氏阳性肽聚糖(PGN,100 μg),进行单核细胞/巨噬细胞的细胞迁移研究。研究人员采用了 CCR2 基因敲除(KO)小鼠和静脉注射氯屈膦酸脂质体的方法来减少 LPS 暴露后可用于肺部招募的循环单核细胞。收集肺组织和支气管肺泡灌洗液(BALF)。采用 ELISA 方法对促炎和/或促纤化细胞因子、趋化因子和肺细胞外基质介质进行定量。通过流式细胞术鉴定浸润的肺细胞,包括单核细胞/巨噬细胞亚群、中性粒细胞和淋巴细胞。对肺组织病理学、胶原含量、波形蛋白、蛋白质翻译后瓜氨酸化和丙二醛乙醛(MAA)修饰进行了定量。在进行 Shapiro-Wilk 正态性检验后,使用了参数统计检验(单因素方差分析、Tukey 多重比较)和非参数统计检验(Kruskal-Wallis、Dunn 多重比较)。气管内灌注 ODE、LPS 或 PGN 可在 48 小时内强力诱导炎性 CCR2+ CD11cintCD11bhi 单核细胞/巨噬细胞以及 CCR2+ 和 CCR2- CD11c-CD11bhi 单核细胞的招募。尽管 LPS 诱导的肺浸润 CD11cintCD11bhi 细胞减少了(54%),但 CCR2 基因敲除(KO)小鼠并不能抵御 LPS 诱导的炎症和促纤维化后果。相反,肺中性粒细胞以及 CCL2 和 CCL7 释放量出现了代偿性增加。相反,在暴露于 LPS 前 24 小时通过静脉注射氯膦酸脂质体(与载体相比)来消耗循环中的单核细胞,可将 LPS 诱导的浸润性 CD11cintCD11bhi 单核-巨噬细胞亚群减少 59%,而其他细胞群不会发生代偿性变化。氯膦酸脂质体预处理可显著减少 LPS 诱导的 IL-6(减少 66%)、基质金属蛋白酶 (MMP)-3 (36%)、MMP-8 (57%)、金属蛋白酶组织抑制剂 (61%)、纤连蛋白 (38%)、胶原含量 (22%) 和波形蛋白 (40%)。与载体脂质体相比,氯膦酸盐可减少(39% 和 48%)LPS 诱导的肺部蛋白质瓜氨酸化和 MAA 修饰(与肺部疾病有关的翻译后修饰)。高浓度的环境/职业暴露会诱导 CCR2+ 和 CCR2- 过渡单核细胞-巨噬细胞和单核细胞亚群的招募,而以外周单核细胞为靶标可能会减少因暴露于富含 LPS 的吸入物而对肺部造成的不良后果。
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来源期刊
Respiratory Research
Respiratory Research 医学-呼吸系统
自引率
1.70%
发文量
314
期刊介绍: Respiratory Research publishes high-quality clinical and basic research, review and commentary articles on all aspects of respiratory medicine and related diseases. As the leading fully open access journal in the field, Respiratory Research provides an essential resource for pulmonologists, allergists, immunologists and other physicians, researchers, healthcare workers and medical students with worldwide dissemination of articles resulting in high visibility and generating international discussion. Topics of specific interest include asthma, chronic obstructive pulmonary disease, cystic fibrosis, genetics, infectious diseases, interstitial lung diseases, lung development, lung tumors, occupational and environmental factors, pulmonary circulation, pulmonary pharmacology and therapeutics, respiratory immunology, respiratory physiology, and sleep-related respiratory problems.
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