基于微流控技术的橙黄决明素对HepG2细胞的体外安全性评估
作者:
作者单位:

中国疾病预防控制中心营养与健康所,北京 100050

作者简介:

陈頔 女 助理研究员 研究方向为营养干预 E-mail: chendi@ninh.chinacdc.cn

通讯作者:

殷继永 男 研究员 研究方向为营养与食品卫生学 E-mail: yinjy@ninh.chinacdc.cn

中图分类号:

R155

基金项目:

国家财政项目(131031107000210002);国家重点研发计划(2018YFC1602103)


In vitro safety assessment of aurantio-obtusin in HepG2 cells based on microfluidic technology
Author:
Affiliation:

National Institute for Nutrition and Health, Chinese Center for Disease Control and Prevention, Beijing 100050, China

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    摘要:

    目的 本研究将微流控技术运用到HepG2细胞模型构建及对橙黄决明素的潜在体外安全性评估中。方法 以鼠尾胶原Ⅰ型(1.3 mg/mL)+明胶(7.5%)构建仿真人体微环境,对乙酰氨基酚(APAP)作为阳性对照组,通过不同浓度橙黄决明素对HepG2细胞的增殖活性、活/死细胞染色和功能性生化指标进行体外安全性评估。结果 该平台实现了HepG2细胞的稳定培养与应用,经72 h培养,细胞成团增殖。橙黄决明素连续处理48 h后计算细胞存活率,结果表明随着橙黄决明素浓度的增加,0、50、100和200 μmol/L细胞存活率分别为100.0%、95.3%、90.3%和81.6%,与空白对照组比较,尤以200 μmol/L差异最为显著(P<0.05);红色标记的死细胞数量随橙黄决明素浓度增加逐渐增多,绿色标记的活细胞数量则逐渐减少;尿素氮(BUN)含量随着浓度的增加而显著降低,与空白对照组(0 μmol/L)比较,50~200 μmol/L组差异具有显著性(P<0.05),且200 μmol/L与APAP组BUN含量接近;谷丙转氨酶、谷草转氨酶和乳酸脱氢酶活性之间随着浓度的变化均无显著性差异。结论 微流控平台HepG2细胞模型适用性良好,该应用为微流控技术与药食同源物质体外安全性评估研究的结合提供了新思路和新方法,在毒理学体外研究方法上具有一定互补可行性。

    Abstract:

    Objective To apply microfluidic technology to the human hepatoma (HepG2) cell model construction and potential in vitro safety assessment of aurantio-obtusin.Methods A simulated human microenvironment was constructed with rat tail collagen type Ⅰ (1.3 mg/mL) + gelatin (7.5%), and acetaminophen (APAP) was used as a positive control. The proliferation activity, live/dead cell staining, and functional biochemical indicators of HepG2 cells were assessed for cell safety using different concentrations of aurantio-obtusin in vitro.Results The stable culture and application of HepG2 cells were achieved with the platform; after 72 h of culture, HepG2 cells proliferated in clusters. After 48 h of continuous treatment with aurantio-obtusin and an increase in the concentration of 0, 50, 100, and 200 μmol/L, the cell viability was 100.0%, 95.3%, 90.3%, and 81.6%, respectively. Compared with the blank control group, the cell inhibitory effect was especially significant at 200 μmol/L (P<0.05); the number of red-marked dead cells gradually increased with the increase in concentration, and the green-marked number of cells gradually decreased. The content of blood urea nitrogen (BUN) decreased significantly with the increase in concentration. Compared with the blank control group, the difference was significant in the 50-200 μmol/L group (P<0.05), and the content in the 200 μmol/L group was close to that in the APAP group. No significant difference was observed in the activities of alanine transaminase, aspartate transaminase, and lactate dehydrogenase at different concentrations.Conclusion The microfluidic platform HepG2 cell model has good applicability provides a new approach for combining microfluidic technology and the safety assessment of medicine and food homology substances, and has complementary feasibility in toxicological research methods in vitro.

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陈頔,殷继永,杨倬,秦文,孙静,刘宇赫,朴玮,黄建,霍军生.基于微流控技术的橙黄决明素对HepG2细胞的体外安全性评估[J].中国食品卫生杂志,2023,35(5):687-691.

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  • 收稿日期:2022-09-08
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  • 在线发布日期: 2023-08-14
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