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网格蛋白介导的肺泡上皮细胞中白蛋白的清除作用。

Clathrin-Mediated Albumin Clearance in Alveolar Epithelial Cells of Murine Precision-Cut Lung Slices.

机构信息

Department of Internal Medicine, Justus Liebig University, Universities of Giessen and Marburg Lung Center (UGMLC), 35392 Giessen, Germany.

German Center for Lung Research (DZL), 35392 Giessen, Germany.

出版信息

Int J Mol Sci. 2023 Jan 31;24(3):2644. doi: 10.3390/ijms24032644.

Abstract

A hallmark of acute respiratory distress syndrome (ARDS) is an accumulation of protein-rich alveolar edema that impairs gas exchange and leads to worse outcomes. Thus, understanding the mechanisms of alveolar albumin clearance is of high clinical relevance. Here, we investigated the mechanisms of the cellular albumin uptake in a three-dimensional culture of precision-cut lung slices (PCLS). We found that up to 60% of PCLS cells incorporated labeled albumin in a time- and concentration-dependent manner, whereas virtually no uptake of labeled dextran was observed. Of note, at a low temperature (4 °C), saturating albumin receptors with unlabeled albumin and an inhibition of clathrin-mediated endocytosis markedly decreased the endocytic uptake of the labeled protein, implicating a receptor-driven internalization process. Importantly, uptake rates of albumin were comparable in alveolar epithelial type I (ATI) and type II (ATII) cells, as assessed in PCLS from a SftpcCre: tdTomato mouse strain (defined as EpCAMCD31CD45tdTomatoSPCT1α for ATI and EpCAMCD31CD45tdTomatoSPCT1α for ATII cells). Once internalized, albumin was found in the early and recycling endosomes of the alveolar epithelium as well as in endothelial, mesenchymal, and hematopoietic cell populations, which might indicate transcytosis of the protein. In summary, we characterize albumin uptake in alveolar epithelial cells in the complex setting of PCLS. These findings may open new possibilities for pulmonary drug delivery that may improve the outcomes for patients with respiratory failure.

摘要

急性呼吸窘迫综合征 (ARDS) 的一个标志是富含蛋白质的肺泡水肿的积累,这会损害气体交换并导致更差的结果。因此,了解肺泡白蛋白清除的机制具有很高的临床相关性。在这里,我们研究了三维精密切割肺切片 (PCLS) 培养物中细胞白蛋白摄取的机制。我们发现,多达 60%的 PCLS 细胞以时间和浓度依赖的方式摄取标记的白蛋白,而实际上几乎没有观察到标记的右旋糖酐的摄取。值得注意的是,在低温(4°C)下,用未标记的白蛋白饱和白蛋白受体并抑制网格蛋白介导的内吞作用,显著降低了标记蛋白的内吞摄取,表明这是一种受体驱动的内化过程。重要的是,在用 SftpcCre:tdTomato 小鼠品系的 PCLS 评估时,肺泡上皮细胞 I 型 (ATI) 和 II 型 (ATII) 细胞的白蛋白摄取率相当(定义为 EpCAMCD31CD45tdTomatoSPCT1α 用于 ATI 细胞和 EpCAMCD31CD45tdTomatoSPCT1α 用于 ATII 细胞)。一旦被内化,白蛋白就会在肺泡上皮细胞的早期和再循环内体中以及内皮细胞、间充质细胞和造血细胞群体中被发现,这可能表明该蛋白发生了转胞吞作用。总之,我们在 PCLS 的复杂环境中描述了肺泡上皮细胞中白蛋白的摄取。这些发现可能为改善呼吸衰竭患者的预后开辟新的肺部药物输送可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2ae6/9916738/4e1a3f58c962/ijms-24-02644-g001.jpg

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