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begutachtete Publikationen und Buchveröffentlichungen

Short-term effects of amoxicillin on bacterial communities in manured soil.

Binh, C.T.T., Heuer, H, Gomes, NCM, Kotzerke, A, Fulle, M, Wilke, BM, Schloter, M, Smalla, K (2007): Short-term effects of amoxicillin on bacterial communities in manured soil. FEMS Microbiology Ecology 62, 290-302.

Manure and sulfadiazine synergistically increased bacterial antibiotic resistance in soil over at least two months.

Heuer, H, Smalla, K (2007): Manure and sulfadiazine synergistically increased bacterial antibiotic resistance in soil over at least two months. Environmental Microbiology 9, 657-666.

Metabolism of 14C-labelled and non labelled Sulfadiazine after administration to pigs.

Lamshöft, M.; Sukul, P.; Zühlke, S.; Spiteller, M. (2007): Metabolism of 14C-labelled and non labelled Sulfadiazine after administration to pigs. Analytical and Bioanalytical Chemistry 388, 1733-1757.

Piggery manure used for soil fertilization is a reservoir for transferable antibiotic resistance plasmids.

Binh, C.T.T., Heuer, H, Kaupenjohann, M, Smalla, K (2008): Piggery manure used for soil fertilization is a reservoir for transferable antibiotic resistance plasmids. FEMS Microbiology Ecology 66, 25-37.

Analysis of aged sulfadiazine residues in soils using microwave extraction and liquid chromatography and tandem mass spectrometry.

Förster, M, Laabs, V, Lamshöft, M, Pütz, T, Amelung, W (2008): Analysis of aged sulfadiazine residues in soils using microwave extraction and liquid chromatography and tandem mass spectrometry. Analytical and Bioanalytical Chemistry 391, 1029-1038.

Effect of sulfadiazine and pig slurry on the structural diversity of soil microorganisms.

Hammesfahr U., Thiele-Bruhn S., Manzke B., Heuer H. & Smalla C. (2008): Effect of sulfadiazine and pig slurry on the structural diversity of soil microorganisms, Soil Biology and Biochemistry 40, 1583-1591.

Fate of sulfadiazine administered to pigs and its quantitative effect on the dynamics of bacterial resistance genes in manure and manured soil.

Heuer, H.; Focks, A.; Lamshöft, M.; Matthies, M.; Spiteller, M. (2008): Fate of sulfadiazine administered to pigs and its quantitative effect on the dynamics of bacterial resistance genes in manure and manured soil. Soil Biology & Biochemistry 40, 1892-1900.

Re-evaluation of the conformational structure of sulfadiazine species using NMR and ab initio DFT studies and its implication on sorption and degradation.

Huschek, G.; Hollmann, D.; Kurowski, N.; Kaupenjohann, M.; Vereecken, H. (2008): Re-evaluation of the conformational structure of sulfadiazine species using NMR and ab initio DFT studies and its implication on sorption and degradation. Chemosphere 72, 1448-1454.

Alterations in soil microbial activity and N-transformation processes due to Sulfadiazine loads in pig-manure.

Kotzerke, A., Sharma, S., Schauss, K., Heuer, H., Thiele-Bruhn, S., Smalla, K., Wilke, B.M., Schloter, M. (2008): Alterations in soil microbial activity and N-transformation processes due to Sulfadiazine loads in pig-manure. Environmental Pollution 153, 315-322.

Photolysis of 14C-sulfadiazine in water and manure.

Sukul, P.; Lamshöft, M.; Zühlke,S.; Spiteller, M. (2008): Photolysis of 14C-sulfadiazine in water and manure. Chemosphere 71, 717-725.

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