Hydrolysis Activities of the Particle of Agarose-Ce^4+ Complex for Compounds Containing Phosphodiester or Peptide Bonds

Hydrolysis activities of PACC (particle of agarose-Ce^4+ complex, newly made through double emulsification) for compounds containing phosphodiester or peptide bonds were studied. The results showed that PACC could hydrolyze organophosphorous pesticides not only in water but also in vegetable juice o...

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Veröffentlicht in:Journal of Ocean University of China 2005, Vol.4 (3), p.272-275
1. Verfasser: YU Lina WANG Dongfeng SU Lin LUO Yi SUN Liping XUEChanghu
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description Hydrolysis activities of PACC (particle of agarose-Ce^4+ complex, newly made through double emulsification) for compounds containing phosphodiester or peptide bonds were studied. The results showed that PACC could hydrolyze organophosphorous pesticides not only in water but also in vegetable juice or tea extract. Hydrolysis rates of methamidophos, omethoateand chlorpyrifos in water are 32.39%, 27.12% and 46.62% respectively, those of chlorpyrifos and methamidophos in mung sprout juice 38.28% and 35.45% respectively, and that of chlorpyrifos in tea extract 59.76%. Hydrolysis rates of BSA (bovine serum albumin) in water and protein in tea extract by PACC increase by 54.30% and 86.46% respectively as compared with the control.
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The results showed that PACC could hydrolyze organophosphorous pesticides not only in water but also in vegetable juice or tea extract. Hydrolysis rates of methamidophos, omethoateand chlorpyrifos in water are 32.39%, 27.12% and 46.62% respectively, those of chlorpyrifos and methamidophos in mung sprout juice 38.28% and 35.45% respectively, and that of chlorpyrifos in tea extract 59.76%. Hydrolysis rates of BSA (bovine serum albumin) in water and protein in tea extract by PACC increase by 54.30% and 86.46% respectively as compared with the control.</abstract></addata></record>
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subjects REE
复合物
水解反应
稀土元素
缩氨酸
蛋白质
title Hydrolysis Activities of the Particle of Agarose-Ce^4+ Complex for Compounds Containing Phosphodiester or Peptide Bonds
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