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Synthesis of Mg-Fe-Cl hydrotalcite-like nanoplatelets as an oral phosphate binder:evaluations of phosphorus intercalation activity and cellular cytotoxicity

机译:Mg-Fe-Cl水滑石样纳米片作为口服磷酸盐粘合剂的合成:磷嵌入活性和细胞毒性的评估

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摘要

The patients with end-stage of renal disease (ESRD) need to take oral phosphate binder. Traditional phosphate binders may leave the disadvantage of aluminum intoxication or cardiac calcification. Herein, Mg-Fe->Cl hydrotalcite-like nanoplatelet (HTln) is for the first time characterized as potential oral phosphate binder, with respect to its phosphorus uptake capacity in cow milk and cellular cytotoxicity. A novel method was developed for synthesizing the Mg-Fe->Cl HTln powder in different Mg2+: Fe3+ ratios where the optimization was 2.8:1. Addition of 0.5 g Mg-Fe->Cl HTln in cow milk could reduce its phosphorus content by 40% in 30 min and by 65% in 90 min. In low pH environment, the Mg-Fe->Cl HTln could exhibit relatively high performance for uptaking phosphorus. During a 90 min reaction of the HTln in milk, no phosphorus restoration occurred. In-vitro cytotoxicity assay of Mg-Fe->Cl HTln revealed no potential cellular cytotoxicity. The cells that were cultured in the HTln extract-containing media were even more viable than cells that were cultured in extract-free media (blank control). The Mg-Fe->Cl HTln extract led to hundred ppm of Mg ion and some ppm of Fe ion in the media, should be a positive effect on the good cell viability.
机译:肾脏疾病终末期(ESRD)的患者需要口服磷酸盐粘合剂。传统的磷酸盐粘合剂可能会留下铝中毒或心脏钙化的缺点。在此,就其在牛奶中的磷吸收能力和细胞毒性而言,Mg-Fe- > Cl 类水滑石纳米片(HTln)首次被表征为潜在的口服磷酸盐结合剂。开发了一种新的方法来合成不同质量比的Mg 2 + :Fe 3 + 的Mg-Fe- > Cl HTln粉2.8:1。在牛奶中添加0.5μgMg-Fe- > Cl HTln可以在30min中将其磷含量降低40%,在90min中将其磷含量降低65%。在低pH值环境下,Mg-Fe- > Cl HTln在吸收磷方面表现出较高的性能。在牛奶中HTln 90分钟反应期间,未发生磷还原。 Mg-Fe- > Cl HTln的体外细胞毒性试验显示没有潜在的细胞毒性。在含HTln提取物的培养基中培养的细胞比在无提取物的培养基中培养的细胞更具活力(空白对照)。 Mg-Fe- > Cl HTln提取物在培养基中产生100 ppm的Mg离子和部分ppm的Fe离子,应该对良好的细胞活力具有积极作用。

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