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钙钛矿纳米颗粒对气道上皮细胞的毒性研究

Perovskite Nanoparticles Toxicity Study on Airway Epithelial Cells.

作者信息

Tsai Shih-Ming, Mesina Maria, Goshia Tyler, Chiu Meng-Hsuen, Young Julia, Sibal Angelo, Chin Wei-Chun

机构信息

Bioengineering Program, School of Engineering, University of California at Merced, 5200 North Lake RD, Merced, CA, 95343, USA.

出版信息

Nanoscale Res Lett. 2019 Jan 8;14(1):14. doi: 10.1186/s11671-018-2845-2.

Abstract

Research on the toxicity of nanoparticles has developed over recent years due to their increasing prevalence in common everyday materials. Various nanoparticles have been reported to promote and induce mucus secretion, which could potentially lead to airway damages and respiratory complications. Lanthanum strontium manganite (LSM) is a nanoparticle widely used in solar oxidized fuel cells (SOFCs) due to its high electrical conductivity, high electrochemical activity for O reduction reaction, high thermal stability and compatibility of SOFC electrolytes, and most importantly, its microstructural stability and long-term performance. Very few studies have been conducted on LMS's toxicity, thus its effect on airway cells was investigated in this study. After treating trachea cells with increasing concentrations of LSM ranging up to 500 μg/ml, we found that it has a moderate effect on cell viability, ROS production, cytochrome C, and caspase 3 expression. Despite its minimal impact on stated apoptosis-inducing characteristics, LSM illustrated an inhibiting effect on mucus secretion. We obtained a decreasing trend in mucus secretion with an increased concentration of the LSM treatment. Overall, LSM's advancement in SOFCs necessitated a toxicity study, and although it does not show a significant toxicity to trachea cells, LSM reduces mucus secretion, and can potentially interfere with airway clearance.

摘要

近年来,由于纳米颗粒在日常普通材料中越来越普遍,对其毒性的研究不断发展。据报道,各种纳米颗粒会促进并诱导黏液分泌,这可能会导致气道损伤和呼吸并发症。镧锶锰氧化物(LSM)是一种纳米颗粒,因其具有高电导率、对氧还原反应具有高电化学活性、高热稳定性以及与固体氧化物燃料电池(SOFC)电解质的兼容性,最重要的是,因其微观结构稳定性和长期性能,而被广泛应用于固体氧化物燃料电池中。关于LSM毒性的研究非常少,因此本研究对其对气道细胞的影响进行了调查。在用浓度高达500μg/ml的LSM处理气管细胞后,我们发现它对细胞活力、活性氧生成、细胞色素C和半胱天冬酶3表达有中度影响。尽管LSM对所述的诱导凋亡特征影响极小,但它对黏液分泌表现出抑制作用。随着LSM处理浓度的增加,我们观察到黏液分泌呈下降趋势。总体而言,LSM在固体氧化物燃料电池中的进展需要进行毒性研究,尽管它对气管细胞没有显示出显著毒性,但LSM会减少黏液分泌,并可能干扰气道清除。

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