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氧化铝对四环素类抗生素的吸附与转化。

Adsorption and transformation of tetracycline antibiotics with aluminum oxide.

机构信息

School of Civil and Environmental Engineering, Georgia Institute of Technology, Atlanta, GA 30332, USA.

出版信息

Chemosphere. 2010 May;79(8):779-85. doi: 10.1016/j.chemosphere.2010.03.020. Epub 2010 Apr 7.

DOI:10.1016/j.chemosphere.2010.03.020
PMID:20378149
Abstract

Tetracycline antibiotics (TCs) including tetracycline (TTC), chlorotetracycline (CTC) and oxytetracycline (OTC) adsorb strongly to aluminum oxide (Al(2)O(3)), and the surface interaction promotes structural transformation of TCs. The latter phenomenon was not widely recognized previously. Typically, rapid adsorption of TCs to Al(2)O(3) occurs in the first 3h ([TC]=40microM, [Al(2)O(3)]=1.78gL(-1), pH=5, and T=22 degrees C), followed by continuous first-order decay of the parent compound (k(obs)=15+/-1.0, 18+/-1.0 and 6.2+/-0.9x10(-3)h(-1) for TTC, CTC and OTC, respectively) and product formation. The transformation reaction rate of TCs strongly correlates with adsorption to Al(2)O(3) surfaces. Both adsorption and transformation occur at the highest rate at around neutral pH conditions. Product evaluation indicates that Al(2)O(3) promotes dehydration of TTC to yield anhydrotetracycline (AHTTC), epimerization of TTC, and formation of Al-TTC complexes. Al(2)O(3) promotes predominantly the transformation of CTC to iso-CTC. The surface-bound Al(+III) acts as a Lewis acid site to promote the above transformation of TCs. Formation of AHTTC is of special concern because of its higher cytotoxicity. Results of this study indicate that aluminum oxide will likely affect the fate of TC antibiotics in the aquatic environment via both adsorption and transformation.

摘要

四环素类抗生素(TCs)包括四环素(TTC)、金霉素(CTC)和土霉素(OTC),它们强烈吸附在氧化铝(Al2O3)上,表面相互作用促进了 TCs 的结构转化。这一现象以前并未得到广泛认可。通常情况下,TCs 会在最初的 3 小时内迅速吸附到 Al2O3 上([TC]=40μM,[Al2O3]=1.78gL-1,pH=5,T=22℃),随后母体化合物会持续进行一级衰减(kobs=15+/-1.0、18+/-1.0 和 6.2+/-0.9x10-3h-1,分别对应于 TTC、CTC 和 OTC)并形成产物。TCs 的转化反应速率与 Al2O3 表面的吸附密切相关。吸附和转化的速率在接近中性 pH 条件下达到最高。产物评价表明,Al2O3 促进 TTC 脱水生成脱水四环素(AHTTC)、TTC 的差向异构化以及 Al-TTC 络合物的形成。Al2O3 主要促进 CTC 向异 CTC 的转化。表面结合的 Al(+III)作为路易斯酸位点,促进了 TCs 的上述转化。AHTTC 的形成特别值得关注,因为它具有更高的细胞毒性。本研究结果表明,氧化铝通过吸附和转化,很可能会影响 TC 抗生素在水环境中的命运。

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