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色氨酸经口腔黏膜上皮体外模型的摄取与转运研究

Investigations Towards Tryptophan Uptake and Transport Across an In Vitro Model of the Oral Mucosa Epithelium.

作者信息

Lin Grace C, Tevini Julia, Mair Lisa, Friedl Heinz-Peter, Fuchs Dietmar, Felder Thomas, Gostner Johanna M, Neuhaus Winfried

机构信息

AIT - Austrian Institute of Technology GmbH, Competence Unit Molecular Diagnostics, Center for Health and Bioresources, Vienna, Austria.

Medical University of Innsbruck, Biocenter, Institute of Medical Biochemistry, Austria.

出版信息

Int J Tryptophan Res. 2024 Jul 31;17:11786469241266312. doi: 10.1177/11786469241266312. eCollection 2024.

Abstract

Tryptophan is an essential amino acid and plays an important role in several metabolic processes relevant for the human health. As the main metabolic pathway for tryptophan along the kynurenine axis is involved in inflammatory responses, changed metabolite levels can be used to monitor inflammatory diseases such as ulcerative colitis. As a progenitor of serotonin, altered tryptophan levels have been related to several neurogenerative diseases as well as depression or anxiety. While tryptophan concentrations are commonly evaluated in serum, a non-invasive detection approach using saliva might offer significant advantages, especially during long-term treatments of patients or elderly. In order to estimate whether active transport processes for tryptophan might contribute to a potential correlation between blood and saliva tryptophan concentrations, we investigated tryptophan's transport across an established oral mucosa in vitro model. Interestingly, treatment with tryptophan revealed a concentration dependent secretion of tryptophan and the presence of a saturable transporter while transport studies with deuterated tryptophan displayed increased permeability from the saliva to the blood compartment. Protein analysis demonstrated a distinct expression of L-type amino acid transporter 1 (LAT1), the major transporter for tryptophan, and exposure to inhibitors (2 -amino-2-norbornanecarboxylic acid (BCH), L-leucine) led to increased tryptophan levels on the saliva side. Additionally, exposure to tryptophan in equilibrium studies resulted in a regulation of LAT1 at the mRNA level. The data collected in this study suggest the participation of active transport mechanisms for tryptophan across the oral mucosa epithelium. Future studies should investigate the transport of tryptophan across salivary gland epithelia in order to enable a comprehensive understanding of tryptophan exchange at the blood-saliva barrier.

摘要

色氨酸是一种必需氨基酸,在与人类健康相关的多个代谢过程中发挥着重要作用。由于色氨酸沿犬尿氨酸轴的主要代谢途径参与炎症反应,代谢物水平的变化可用于监测溃疡性结肠炎等炎症性疾病。作为血清素的前体,色氨酸水平的改变与多种神经退行性疾病以及抑郁症或焦虑症有关。虽然色氨酸浓度通常在血清中进行评估,但使用唾液的非侵入性检测方法可能具有显著优势,尤其是在对患者或老年人进行长期治疗期间。为了评估色氨酸的主动转运过程是否可能导致血液和唾液中色氨酸浓度之间的潜在相关性,我们在体外建立的口腔黏膜模型中研究了色氨酸的转运。有趣的是,色氨酸处理显示出色氨酸的浓度依赖性分泌以及存在一种可饱和转运体,而用氘代色氨酸进行的转运研究显示从唾液到血液隔室的通透性增加。蛋白质分析表明色氨酸的主要转运体L型氨基酸转运体1(LAT1)有明显表达,暴露于抑制剂(2-氨基-2-降冰片烷羧酸(BCH)、L-亮氨酸)会导致唾液侧色氨酸水平升高。此外,在平衡研究中暴露于色氨酸会导致LAT1在mRNA水平上受到调节。本研究收集的数据表明色氨酸通过口腔黏膜上皮的主动转运机制参与其中。未来的研究应调查色氨酸在唾液腺上皮中的转运,以便全面了解血-唾液屏障处的色氨酸交换。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/738e/11292681/23990d1583b0/10.1177_11786469241266312-fig1.jpg

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