Bierbaumer Lisa, Schwarze Uwe Yacine, Gruber Reinhard, Neuhaus Winfried
a Competence Unit Molecular Diagnostics, Center Health and Bioresources, Austrian Institute of Technology (AIT) GmbH , Vienna , Austria.
b Department of Oral Biology , School of Dentistry, Medical University of Vienna , Vienna , Austria.
Tissue Barriers. 2018;6(3):1479568. doi: 10.1080/21688370.2018.1479568. Epub 2018 Sep 25.
Understanding the function of oral mucosal epithelial barriers is essential for a plethora of research fields such as tumor biology, inflammation and infection diseases, microbiomics, pharmacology, drug delivery, dental and biomarker research. The barrier properties are comprised by a physical, a transport and a metabolic barrier, and all these barrier components play pivotal roles in the communication between saliva and blood. The sum of all epithelia of the oral cavity and salivary glands is defined as the blood-saliva barrier. The functionality of the barrier is regulated by its microenvironment and often altered during diseases. A huge array of cell culture models have been developed to mimic specific parts of the blood-saliva barrier, but no ultimate standard in vitro models have been established. This review provides a comprehensive overview about developed in vitro models of oral mucosal barriers, their applications, various cultivation protocols and corresponding barrier properties.
了解口腔黏膜上皮屏障的功能对于众多研究领域至关重要,如肿瘤生物学、炎症与感染性疾病、微生物组学、药理学、药物递送、牙科和生物标志物研究等。屏障特性由物理屏障、转运屏障和代谢屏障组成,所有这些屏障成分在唾液与血液之间的交流中都起着关键作用。口腔和唾液腺所有上皮的总和被定义为血 - 唾液屏障。该屏障的功能受其微环境调节,且在疾病过程中常发生改变。人们已开发出大量细胞培养模型来模拟血 - 唾液屏障的特定部分,但尚未建立最终的标准体外模型。本综述全面概述了已开发的口腔黏膜屏障体外模型、其应用、各种培养方案及相应的屏障特性。