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用于牙科材料测试的组织工程化口腔上皮:迈向仿生模型

Tissue-Engineered Oral Epithelium for Dental Material Testing: Toward Biomimetic Models.

作者信息

Machla Foteini, Monou Paraskevi Kyriaki, Bekiari Chrysanthi, Andreadis Dimitrios, Kofidou Evangelia, Panteris Emmanuel, Katsamenis Orestis L, Kokoti Maria, Koidis Petros, About Imad, Fatouros Dimitrios, Bakopoulou Athina

机构信息

Department of Prosthodontics, Tissue Engineering Core Unit, School of Dentistry, Faculty of Health Sciences, Aristotle University of Thessaloniki, Thessaloniki, Greece.

Department of Pharmaceutical Technology, School of Pharmacy, Faculty of Health Sciences, Aristotle University of Thessaloniki, Thessaloniki, Greece.

出版信息

Tissue Eng Part C Methods. 2024 Dec;30(12):555-568. doi: 10.1089/ten.TEC.2024.0154. Epub 2024 Oct 9.

Abstract

Tissue-engineered oral epithelium (ΤΕΟΕ) was developed after comparing various culture conditions, including submerged (SUB) and air-liquid interface (ALI) human cell expansion options. Barrier formation was evaluated via transepithelial electrical resistance (TEER) and calcein permeation via spectrofluorometry. TEOE was further assessed for long-term viability via live/dead staining and development of intercellular connections via transmission electron microscopy. Tissue architecture was evaluated via histochemistry and the expression of pancytokeratin (pCK) via immunohistochemistry. The effect of two commonly used dental resinous monomers on TEOE was evaluated for alterations in cell viability and barrier permeability. ALI/keratinocyte growth factor-supplemented (ALI-KGS) culture conditions led to the formation of an 8-20-layer thick, intercellularly connected epithelial barrier. TEER values of ALI-KGS-developed TEOE decreased compared with all other tested conditions, and the established epithelium intensively expressed pCK. Exposure to dental monomers affected the integrity and architecture of TEOE and induced cellular vacuolation, implicating hydropic degeneration. Despite structural modifications, the permeability of TEOE was not substantially affected after exposure to the monomers. In conclusion, the biological properties of the TEOE mimicking the physiological functional conditions and its value as biocompatibility assessment tool for dental materials were characterized.

摘要

在比较了各种培养条件后,包括浸没式(SUB)和气液界面(ALI)人类细胞扩增方法,开发出了组织工程化口腔上皮(ΤΕΟΕ)。通过跨上皮电阻(TEER)评估屏障形成情况,并通过荧光光谱法评估钙黄绿素渗透情况。通过活/死染色进一步评估ΤΕΟΕ的长期活力,并通过透射电子显微镜评估细胞间连接的发育情况。通过组织化学评估组织结构,并通过免疫组织化学评估全细胞角蛋白(pCK)的表达情况。评估了两种常用牙科树脂单体对ΤΕΟΕ的影响,以观察细胞活力和屏障通透性的变化。ALI/补充角质形成细胞生长因子(ALI-KGS)的培养条件导致形成了一个8至20层厚、细胞间相互连接的上皮屏障。与所有其他测试条件相比,ALI-KGS培养的ΤΕΟΕ的TEER值降低,且形成的上皮强烈表达pCK。暴露于牙科单体影响了ΤΕΟΕ的完整性和结构,并诱导细胞空泡化,提示细胞水肿变性。尽管结构发生了改变,但暴露于单体后,ΤΕΟΕ的通透性并未受到实质性影响。总之,对模仿生理功能条件的ΤΕΟΕ的生物学特性及其作为牙科材料生物相容性评估工具的价值进行了表征。

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