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用于生物材料生物相容性和渗透性评估的口腔上皮体外器官培养模型的建立

Development of an Oral Epithelial Ex Vivo Organ Culture Model for Biocompatibility and Permeability Assessment of Biomaterials.

作者信息

Machla Foteini, Bekiari Chrysanthi, Monou Paraskevi Kyriaki, Kofidou Evangelia, Theodosaki Astero Maria, Katsamenis Orestis L, Zisis Vasileios, Kokoti Maria, Bakopoulou Athina, Fatouros Dimitrios, Andreadis Dimitrios

机构信息

Department of Prosthodontics, Dental and Craniofacial Bioengineering and Applied Biomaterials, School of Dentistry, Faculty of Health Sciences, Aristotle University of Thessaloniki, 54124 Thessaloniki, Greece.

Laboratory of Anatomy and Histology, Veterinary School, Aristotle University of Thessaloniki, 54124 Thessaloniki, Greece.

出版信息

Bioengineering (Basel). 2024 Oct 17;11(10):1035. doi: 10.3390/bioengineering11101035.

Abstract

In the present study, a customized device (Epi-ExPer) was designed and fabricated to facilitate an epithelial organ culture, allowing for controlled exposure to exogenous chemical stimuli and accommodating the evaluation of permeation of the tissue after treatment. The Epi-ExPer system was fabricated using a stereolithography (SLA)-based additive manufacturing (AM) method. Human and porcine oral epithelial mucosa tissues were inserted into the device and exposed to resinous monomers commonly released by dental restorative materials. The effect of these xenobiotics on the morphology, viability, permeability, and expression of relevant markers of the oral epithelium was evaluated. Tissue culture could be performed with the desired orientation of air-liquid interface (ALI) conditions, and exposure to xenobiotics was undertaken in a spatially guarded and reproducible manner. Among the selected monomers, HEMA and TEGDMA reduced tissue viability at high concentrations, while tissue permeability was increased by the latter. Xenobiotics affected the histological image by introducing the vacuolar degeneration of epithelial cells and increasing the expression of panCytokeratin (pCK). Epi-ExPer device offers a simple, precise, and reproducible study system to evaluate interactions of oral mucosa with external stimuli, providing a biocompatibility and permeability assessment tool aiming to an enhanced in vitro/ex vivo-to-in vivo extrapolation (IVIVE) that complies with European Union (EU) and Food and Durg Administration (FDI) policies.

摘要

在本研究中,设计并制造了一种定制设备(Epi-ExPer),以促进上皮器官培养,实现对外源化学刺激的可控暴露,并便于评估处理后组织的渗透性。Epi-ExPer系统采用基于立体光刻(SLA)的增材制造(AM)方法制造。将人和猪的口腔上皮黏膜组织插入该设备中,并使其暴露于牙科修复材料通常释放的树脂单体中。评估了这些异源生物对口腔上皮的形态、活力、渗透性及相关标志物表达的影响。组织培养可在气液界面(ALI)条件的理想方向下进行,并且以空间防护且可重复的方式进行异源生物暴露。在所选单体中,高浓度的甲基丙烯酸羟乙酯(HEMA)和三乙二醇二甲基丙烯酸酯(TEGDMA)会降低组织活力,而后者会增加组织渗透性。异源生物通过引起上皮细胞的空泡变性和增加泛细胞角蛋白(pCK)的表达来影响组织学图像。Epi-ExPer设备提供了一个简单、精确且可重复的研究系统,用于评估口腔黏膜与外部刺激的相互作用,提供了一种生物相容性和渗透性评估工具,旨在加强符合欧盟(EU)和食品药品监督管理局(FDI)政策的体外/离体到体内外推(IVIVE)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/907a/11504994/2e0baf571834/bioengineering-11-01035-g001.jpg

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