Literature DB >> 15223282

Potentiometric determination of acid dissociation constants (pKa) for human and veterinary antibiotics.

Zhimin Qiang1, Craig Adams.   

Abstract

This work determined the acid dissociation constants (pKa) of 26 common human and veterinary antibiotics by potentiometric titration. Selected antibiotics consisted of sulfonamides, macrolides, tetracyclines, fluoroquinolones, and other miscellaneous antibiotics. After validation of analysis methods using phosphoric acid as a model compound, a second-derivative (delta2pH/deltaV2) method was primarily applied to determining pKa's from titration curves for most antibiotics due to its convenience and accuracy. For tetracyclines, however, a least-square non-linear regression method was developed to determine their pKa's because the second-derivative method cannot well distinguish the pKa,2 and pKa,3 of tetracyclines. Results indicate that the pKa values are approximately 2 and 5-7.5 for sulfonamides; 7.5-9 for macrolides; 3-4, 7-8 and 9-10 for tetracyclines; 3-4, 6, 7.5-9 and 10-11 for fluoroquinolones; while compound-specific for other miscellaneous antibiotics. The moieties corresponding to specific pKa's were identified based on chemical structures of antibiotics. In addition, the pKa's available in literature determined by various techniques are compiled in comparison with the values of this work. These results are expected to essentially facilitate the research on occurrence, fate and effects, analysis methods development, and control of antibiotics in various treatment operations.

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Year:  2004        PMID: 15223282     DOI: 10.1016/j.watres.2004.03.017

Source DB:  PubMed          Journal:  Water Res        ISSN: 0043-1354            Impact factor:   11.236


  27 in total

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4.  Degradation of tetracycline at a boron-doped diamond anode: influence of initial pH, applied current intensity and electrolyte.

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5.  Removal of sulfamethoxazole from solution by raw and chemically treated walnut shells.

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6.  Degradation of typical antibiotics during human feces aerobic composting under different temperatures.

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7.  Explaining the accelerated degradation of ciprofloxacin, sulfamethazine, and erythromycin in different soil exposure scenarios by their aqueous extractability.

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8.  Structural modulation of the biological activity of gold nanoparticles functionalized with a carbonic anhydrase inhibitor.

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Review 9.  Biosolid-borne tetracyclines and sulfonamides in plants.

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10.  Acid-activated biochar increased sulfamethazine retention in soils.

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