New-Senior Oriented Smart Health Care Education Center (BK21 Plus), Pukyong National University, Busan, Republic of Korea.
Industry 4.0 Convergence Bionics Engineering, Pukyong National University, Busan, Republic of Korea.
Tissue Eng Regen Med. 2023 Apr;20(2):213-223. doi: 10.1007/s13770-022-00504-x. Epub 2022 Dec 11.
Eye irritation tests with animals have been conducted for a long time. However, the subjective decision to irritation, the anatomic/physiologic difference between species and humans, and ethical issues are crucial problems. Various research groups have paid attention to alternative testing methods. In these senses, we fabricated in vitro mini-cornea models with immortalized human corneal epithelial cells (iHCECs) and keratocytes (iHCKs) and used them for irritation tests. This study hypothesized that our mini-cornea model could present different viability tendencies according to test chemicals with different irritancy levels.
Cells used in this study were characterized with cornea-specific markers by immunocytochemistry and western blot. To make a three-dimensional hemisphere construct like cornea stroma, we cultured iHCKs under modified culture conditions verified by matrix formation and total collagen content. iHCECs were seeded on the construct and cultured at an air-liquid interface. The model was treated with 2-phenoxyethanol, triton X-100, sodium lauryl sulfate, and benzalkonium chloride.
iHCECs and iHCKs presented their specific cell markers. In modifying the culture condition, the group treating ascorbic acid (200 µg/ml) presented an intact cellular matrix and included the highest collagen content; thus, we used this condition to fabricate the mini-cornea model. The model shows hemisphere shape and homogenous cell distributions in histological analysis. We observed different sensitivity tendencies by types of chemicals, and the model's viability significantly decreased when the chemical concentration increased.
In this study, we performed and observed irritation tests using a tissue-engineered mini-cornea model and considered to apply as an alternative approach for animal tests.
动物眼部刺激试验已经进行了很长时间。然而,刺激的主观判断、物种与人类之间的解剖/生理差异以及伦理问题是至关重要的问题。各个研究小组都关注替代测试方法。在这些方面,我们使用永生化的人角膜上皮细胞(iHCEC)和角膜基质细胞(iHCK)制造了体外小型角膜模型,并将其用于刺激试验。本研究假设我们的小型角膜模型可以根据具有不同刺激性水平的测试化学物质呈现出不同的生存能力趋势。
本研究通过免疫细胞化学和 Western blot 用角膜特异性标志物对细胞进行了特征描述。为了制造类似于角膜基质的三维半球结构,我们在基质形成和总胶原含量得到验证的改良培养条件下培养 iHCK。将 iHCEC 接种到该构建体上,并在气液界面培养。用 2-苯氧基乙醇、曲拉通 X-100、十二烷基硫酸钠和苯扎氯铵处理模型。
iHCEC 和 iHCK 呈现出其特定的细胞标志物。在改良培养条件下,用抗坏血酸(200µg/ml)处理的组呈现出完整的细胞基质并包含最高的胶原含量;因此,我们使用该条件来制造小型角膜模型。组织学分析显示模型呈半球形且细胞分布均匀。我们观察到不同类型的化学物质的敏感性趋势不同,并且当化学物质浓度增加时,模型的活力明显下降。
在这项研究中,我们使用组织工程小型角膜模型进行并观察了刺激试验,并考虑将其作为动物试验的替代方法。