Lai Xianyin, Agarwal Mangilal, Lvov Yuri M, Pachpande Chetan, Varahramyan Kody, Witzmann Frank A
Department of Cellular & Integrative Physiology, Indiana University School of Medicine, Indianapolis, IN, USA.
J Appl Toxicol. 2013 Nov;33(11):1316-29. doi: 10.1002/jat.2858. Epub 2013 Apr 22.
Halloysite is aluminosilicate clay with a hollow tubular structure with nanoscale internal and external diameters. Assessment of halloysite biocompatibility has gained importance in view of its potential application in oral drug delivery. To investigate the effect of halloysite nanotubes on an in vitro model of the large intestine, Caco-2/HT29-MTX cells in monolayer co-culture were exposed to nanotubes for toxicity tests and proteomic analysis. Results indicate that halloysite exhibits a high degree of biocompatibility characterized by an absence of cytotoxicity, in spite of elevated pro-inflammatory cytokine release. Exposure-specific changes in expression were observed among 4081 proteins analyzed. Bioinformatic analysis of differentially expressed protein profiles suggest that halloysite stimulates processes related to cell growth and proliferation, subtle responses to cell infection, irritation and injury, enhanced antioxidant capability, and an overall adaptive response to exposure. These potentially relevant functional effects warrant further investigation in in vivo models and suggest that chronic or bolus occupational exposure to halloysite nanotubes may have unintended outcomes.
埃洛石是一种具有中空管状结构的铝硅酸盐粘土,其内径和外径均为纳米级。鉴于埃洛石在口服药物递送中的潜在应用,对其生物相容性的评估变得愈发重要。为了研究埃洛石纳米管对大肠体外模型的影响,将单层共培养的Caco-2/HT29-MTX细胞暴露于纳米管中进行毒性测试和蛋白质组学分析。结果表明,尽管促炎细胞因子释放增加,但埃洛石仍表现出高度的生物相容性,其特征是无细胞毒性。在分析的4081种蛋白质中观察到了暴露特异性的表达变化。对差异表达蛋白质谱的生物信息学分析表明,埃洛石刺激与细胞生长和增殖相关的过程、对细胞感染、刺激和损伤的细微反应、增强的抗氧化能力以及对暴露的整体适应性反应。这些潜在相关的功能效应值得在体内模型中进一步研究,并表明长期或一次性职业暴露于埃洛石纳米管可能会产生意想不到的后果。
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