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Oral Toxicity and Intestinal Transport Mechanism of Colloidal Gold Nanoparticle-Treated Red Ginseng

机译:胶态金纳米颗粒处理红参的口服毒性及肠运输机制

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摘要

(1) Background: Application of nanotechnology or nanomaterials in agricultural food crops has attracted increasing attention with regard to improving crop production, quality, and nutrient utilization. Gold nanoparticles (Au-NPs) have been reported to enhance seed yield, germination rate, and anti-oxidant potential in food crops, raising concerns about their toxicity potential. In this study, we evaluated the oral toxicity of red ginseng exposed to colloidal Au-NPs during cultivation (G-red ginseng) in rats and their intestinal transport mechanism. (2) Methods: 14-day repeated oral administration of G-red ginseng extract to rats was performed, and body weight, hematological, serum biochemical, and histopathological values were analyzed. An in vitro model of human intestinal follicle-associated epithelium (FAE) and an intestinal epithelial monolayer system were used for intestinal transport mechanistic study. (3) Results: No remarkable oral toxicity of G-red ginseng extract in rats was found, and Au-NPs did not accumulate in any organ, although Au-NP transfer to G-red ginseng and some increased saponin levels were confirmed. Au-NPs were transcytozed by microfold (M) cells, but not by a paracellular pathway in the intestinal epithelium. (4) Conclusion: These findings suggest great potential of Au-NPs for agricultural food crops at safe levels. Further study is required to elucidate the functional effects of Au-NPs on ginseng and long-term toxicity.
机译:(1)背景:在提高粮食产量,质量和养分利用方面,纳米技术或纳米材料在农业粮食作物中的应用引起了越来越多的关注。据报道,金纳米颗粒(Au-NPs)可以提高粮食作物的种子产量,发芽率和抗氧化能力,引起人们对其毒性潜力的担忧。在这项研究中,我们评估了在培养过程中暴露于胶体金-NPs的红参的口服毒性(G-红参)及其肠道运输机制。 (2)方法:对大鼠反复口服G-红参提取物14天,分析其体重,血液学,血清生化指标和组织病理学指标。人肠道滤泡相关上皮(FAE)的体外模型和肠上皮单层系统用于肠道运输机制的研究。 (3)结果:尽管证实了Au-NP转移到G-红参中并且皂苷水平有所增加,但是没有发现G-红参提取物在大鼠中具有显着的口服毒性,并且Au-NP没有在任何器官中积累。 Au-NPs通过微折叠(M)细胞转细胞,但不通过肠上皮细胞中的旁细胞途径转位。 (4)结论:这些发现表明,在安全水平下,Au-NP在农业粮食作物中具有巨大潜力。需要进一步的研究来阐明金纳米颗粒对人参和长期毒性的功能作用。

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