洛克沙酮及其代谢物的渗透可增加caco-2细胞的增殖。

Gladys S Bayse, Latanya P Hammonds-Odie, Kimberly M Jackson, Deidre K Tucker, Ward G Kirlin
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引用次数: 1

摘要

苯乙甲酸酯,罗沙胂,自1944年以来一直被用作抗微生物,促进生长的家禽饲料添加剂。美国地质调查局和环境保护局报告说,洛克沙胂(4-羟基-3-硝基苯乙酯)和代谢物,包括AHBA(3-氨基-4-羟基苯乙酯),每年污染水道超过1100吨。为了评估这些有机砷水污染物对人体的影响,重要的是研究它们的潜在吸收。人腺癌细胞系Caco-2是肠道吸收的模型。我们发现这些化合物在微摩尔水平下对Caco-2细胞的增殖作用,通过[3H]-胸腺嘧啶掺入DNA来监测。流式细胞术细胞周期分析证实S期积累从21%(对照)到36%(暴露于10 μM AHBA 24小时)。在胶原包被的Transwell板上生长的融合Caco-2细胞顶端侧给药。暴露后,分别收集根尖和基底外侧的培养基。用30K离心过滤去除FBS后,用高效液相色谱法分析收集介质中的苯乙酯。分析的波长在紫外/可见光范围内,吸光度值与浓度呈线性关系。通过与分析制备的商业标准品比较计算浓度。在10 μM剂量下给药24小时,AHBA、Roxarsone或Acetarsone的结果显示,细胞从根尖到基底外侧的渗透性为6% - 29%,模拟了肠道上皮到循环系统的吸收。苯甲酸乙酯类饲料添加剂经常与抗生素联合使用,引起了额外的健康问题。我们得出结论,这些苯己酸盐的微摩尔水平足以刺激Caco-2细胞增殖。
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Permeation of roxarsone and its metabolites increases caco-2 cell proliferation.

The benzenearsonate, Roxarsone, has been used since 1944 as an antimicrobial, growth-promoting poultry feed additive. USGS and EPA report that Roxarsone (4-hydroxy-3-nitrobenzenearsonate) and metabolites, including AHBA (3-amino-4-hydroxybenzenearsonate), contaminate waterways at greater than 1100 tons annually. To assess human impact of these organic arsenic water contaminants, it was important to study their potential absorption. The human adenocarcinoma cell line, Caco-2, is a model for intestinal absorption. We found proliferative effects on Caco-2 cells at micromolar levels of these compounds, as monitored by [3H]-thymidine incorporation into DNA. Flow cytometry cell cycle analysis confirmed accumulation in S phase from 21% (control) to 36% (24 hour exposure to 10 μM AHBA). Confluent Caco-2 cells grown on collagen-coated Transwell plates were dosed on the apical side. After exposure, media from apical and basolateral sides were collected separately. Following removal of FBS by 30K centrifugal filtration, the benzenearsonates in the collected media were analyzed by HPLC. Analyses were at wavelengths in the ultraviolet/visible range where the absorbance values were linear with respect to concentration. Concentrations were calculated by comparison with analytically-prepared commercial standards. Results from cells dosed at 10 μM for 24 hours with AHBA, Roxarsone, or Acetarsone indicated 6% - 29% permeation occurring from apical to basolateral side, modeling absorption across intestinal epithelium to the circulatory system. Benzenearsonate feed additives are frequently applied in combination with antibiotics, raising additional health concerns. We conclude that micromolar levels of these benzenearsonates are adequate to stimulate Caco-2 cell proliferation.

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