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OCTN2 和 ATB0,+ 在正常人体气道上皮细胞中的功能分析。

Functional analysis of OCTN2 and ATB0,+ in normal human airway epithelial cells.

机构信息

Laboratory of General Pathology, Department of Medicine and Surgery, University of Parma, Via Volturno, Parma, Italy.

Preclinical Pharmacokinetics, Biochemistry & Metabolism Department, Chiesi Farmaceutici, Largo F. Belloli, Parma, Italy.

出版信息

PLoS One. 2020 Feb 6;15(2):e0228568. doi: 10.1371/journal.pone.0228568. eCollection 2020.

Abstract

In human, OCTN2 (SLC22A5) and ATB0,+ (SLC6A14) transporters mediate the uptake of L-carnitine, essential for the transport of fatty acids into mitochondria and the subsequent degradation by β-oxidation. Aim of the present study was to characterize L-carnitine transport in EpiAirway™, a 3D organotypic in vitro model of primary human tracheal-bronchial epithelial cells that form a fully differentiated, pseudostratified columnar epithelium at air-liquid interface (ALI) condition. In parallel, Calu-3 monolayers grown at ALI for different times (8d or 21d of culture) were used as comparison. OCTN2 transporter was equally expressed in both models and functional at the basolateral side. ATB0,+ was, instead, highly expressed and active on the apical membrane of EpiAirway™ and only in early-cultures of Calu-3 (8d but not 21d ALI). In both cell models, L-carnitine uptake on the apical side was significantly inhibited by the bronchodilators glycopyrrolate and tiotropium, that hence can be considered substrates of ATB0,+; ipratropium was instead effective on the basolateral side, indicating its interaction with OCTN2. Inflammatory stimuli, such as LPS or TNFα, caused an induction of SLC6A14/ATB0,+ expression in Calu-3 cells, along with a 2-fold increase of L-carnitine uptake only at the apical side; on the contrary SLC22A5/OCTN2 was not affected. As both OCTN2 and ATB0,+, beyond transporting L-carnitine, have a significant potential as delivery systems for drugs, the identification of these transporters in EpiAirway™ can open new fields of investigation in the study of drug inhalation and pulmonary delivery.

摘要

在人体中,OCTN2(SLC22A5)和 ATB0,+(SLC6A14)转运蛋白介导左旋肉碱的摄取,左旋肉碱对于脂肪酸进入线粒体以及随后通过β-氧化进行降解至关重要。本研究的目的是表征 EpiAirway™中的左旋肉碱转运,EpiAirway™是一种源自人原代气管-支气管上皮细胞的 3D 器官型体外模型,在气液界面(ALI)条件下形成完全分化的假复层柱状上皮。同时,还使用在 ALI 上培养不同时间(8 天或 21 天)的 Calu-3 单层细胞作为对照。两种模型中均表达 OCTN2 转运蛋白,且在基底外侧侧具有功能。相反,ATB0,+在 EpiAirway™的顶膜上高度表达且具有活性,仅在 Calu-3 的早期培养物(8d 而非 21d ALI)中表达。在这两种细胞模型中,L-肉碱在顶侧的摄取均被支气管扩张剂吡咯烷和噻托溴铵显著抑制,因此可被视为 ATB0,+的底物;而异丙托溴铵则在基底外侧侧有效,表明其与 OCTN2 相互作用。炎症刺激物,如 LPS 或 TNFα,可诱导 Calu-3 细胞中 SLC6A14/ATB0,+的表达,并使 L-肉碱摄取增加 2 倍,仅在顶侧发生;相反,SLC22A5/OCTN2 不受影响。由于 OCTN2 和 ATB0,+除了转运左旋肉碱外,还具有作为药物输送系统的重要潜力,因此在 EpiAirway™中鉴定这些转运蛋白可以为药物吸入和肺部输送的研究开辟新的领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/04a1/7004352/ef48eba31a1c/pone.0228568.g001.jpg

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