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小鼠肺边缘单核细胞对微泡摄取的研究

Investigation of Microvesicle Uptake by Mouse Lung-marginated Monocytes .

作者信息

Tan Ying Ying, O'Dea Kieran P, Patel Brijesh V, Takata Masao

机构信息

Division of Anaesthetics, Pain Medicine & Intensive Care, Imperial College London, Chelsea & Westminster Hospital, 369 Fulham Road, London, UK.

出版信息

Bio Protoc. 2022 Feb 5;12(3):e4307. doi: 10.21769/BioProtoc.4307.

Abstract

Extracellular microvesicles (MVs) are released into the circulation in large numbers during acute systemic inflammation, yet little is known of their intravascular cell/tissue-specific interactions under these conditions. We recently described a dramatic increase in the uptake of intravenously injected MVs by monocytes marginated within the pulmonary vasculature, in a mouse model of low-dose lipopolysaccharide-induced systemic inflammation. To investigate the mechanisms of enhanced MV uptake by monocytes, we developed an in vitro model using in vivo derived monocytes. Although mouse blood is a convenient source, monocyte numbers are too low for in vitro experimentation. In contrast, differentiated bone marrow monocytes are abundant, but they are rapidly mobilized during systemic inflammation, and thus no longer available. Instead, we developed a protocol using marginated monocytes from the pulmonary vasculature as an anatomically relevant and abundant source. Mice are sacrificed by terminal anesthesia, the lungs inflated and perfused via the pulmonary artery. Perfusate cell populations are evaluated by flow cytometry, combined with in vitro generated fluorescently labelled MVs, and incubated in suspension for up to one hour. Washed cells are analyzed by flow cytometry to quantify MV uptake and confocal microscopy to localize MVs within cells (O'Dea et al., 2020). Using this perfusion-based method, substantial numbers of marginated pulmonary vascular monocytes are recovered, allowing multiple in vitro tests to be performed from a single mouse donor. As MV uptake profiles were comparable to those observed in vivo, this method is suitable for physiologically relevant high throughput mechanistic studies on mouse monocytes under in vitro conditions. Graphic abstract: Figure 1. Schematic of lung perfusate cell harvest and co-incubation with generated MVs. Created with BioRender.com.

摘要

细胞外微泡(MVs)在急性全身炎症期间大量释放到循环系统中,但在这些情况下,它们在血管内的细胞/组织特异性相互作用却鲜为人知。在低剂量脂多糖诱导的全身炎症小鼠模型中,我们最近描述了肺血管内边缘化的单核细胞对静脉注射MVs的摄取显著增加。为了研究单核细胞增强摄取MVs的机制,我们使用体内来源的单核细胞建立了一个体外模型。虽然小鼠血液是一个方便的来源,但单核细胞数量太少,无法进行体外实验。相比之下,分化的骨髓单核细胞数量丰富,但在全身炎症期间会迅速动员,因此不再可用。相反,我们开发了一种方案,使用来自肺血管的边缘化单核细胞作为解剖学上相关且丰富的来源。通过终末麻醉处死小鼠,通过肺动脉对肺进行充气和灌注。通过流式细胞术评估灌注液中的细胞群体,并结合体外生成的荧光标记MVs,将其在悬浮液中孵育长达一小时。通过流式细胞术分析洗涤后的细胞,以量化MVs的摄取,并通过共聚焦显微镜确定细胞内MVs的位置(奥戴亚等人,2020年)。使用这种基于灌注的方法,可以回收大量边缘化的肺血管单核细胞,从而能够从单个小鼠供体进行多项体外测试。由于MVs摄取情况与体内观察到的情况相当,因此该方法适用于在体外条件下对小鼠单核细胞进行生理相关的高通量机制研究。图形摘要:图1. 肺灌注液细胞收获及与生成的MVs共孵育的示意图。由BioRender.com创建。

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