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首页> 外文期刊>Journal of biomedical materials research, Part A >Adsorption of Biometals to Monosodium Titanate in Biological Environments
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Adsorption of Biometals to Monosodium Titanate in Biological Environments

机译:生物环境中钛金属酸钠对生物金属的吸附

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摘要

Monosodium titanate (MST) is an Inorganic sorbent ion exchanger developed for the removal of radionuclides from nuclear wastes. We investigated the ability of MST to bind Cd(II), Hg(II), Au(III), or the Au-organic compound auranofin to establish the utility of MST for applications in environmental decontamination or medical therapy (drug delivery). Adsorption isotherms for MST were determined at pH 7-7.5 in water or phosphate-buffered saline. The extent of metal binding was determined spectroscopically by measuring the concentrations of the metals in solution before and after contact with the MST. Cytotoxic responses to MST were assessed using THP1 monocytes and succinate dehydrogenase activity. Monocytic activation by MST was assessed by TNFa secretion (ELISA) with or without lipopolysaccharide (LPS) activation. MST adsorbed Cd(II), Hg(II), and Au(III) under conditions similar to those in physiological systems. MST exhibited the highest affinity for Cd(II) followed by Hg(II) and Au (III). MST (up to 100 mg/L) exhibited only minor (<25 percent suppression of succinate dehydrogenase) cytotoxicity and did not trigger TNF alpha secretion nor modulate LPS-induced TNF alpha secretion from monocytes. MST exhibits high affinity for Mometals with no significant biological liabilities in these introductory studies. MST deserves further scrutiny as a substance with the capacity to decontaminate biological environments or deliver metals or metal compounds for therapeutic applications.
机译:钛酸单钠盐(MST)是为去除核废料中的放射性核素而开发的一种无机吸附剂离子交换剂。我们研究了MST结合Cd(II),Hg(II),Au(III)或金有机化合物金诺芬的能力,以确立MST在环境净化或药物治疗(药物输送)中的应用。在水或磷酸盐缓冲盐水中,pH值为7-7.5时测定MST的吸附等温线。通过与MST接触之前和之后溶液中金属的浓度,通过光谱确定金属结合的程度。使用THP1单核细胞和琥珀酸脱氢酶活性评估对MST的细胞毒性反应。通过有或没有脂多糖(LPS)活化的TNFα分泌(ELISA)评估通过MST的单核细胞活化。 MST在类似于生理系统中的条件下吸附Cd(II),Hg(II)和Au(III)。 MST对Cd(II)的亲和力最高,其次是Hg(II)和Au(III)。 MST(最高100 mg / L)仅表现出较小的细胞毒性(琥珀酸脱氢酶抑制率<25%),并且不会触发TNFα分泌,也不会调节LPS诱导的单核细胞TNFα分泌。在这些入门研究中,MST对Mometals具有很高的亲和力,而没有重大的生物学负担。 MST作为具有净化生物环境或输送金属或金属化合物用于治疗用途的能力的物质,应受到进一步审查。

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