Search results for "DTPMP"

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Analytical insight into degradation processes of aminopolyphosphonates as potential factors that induce cyanobacterial blooms

2017

Aminopolyphosphonates (AAPs) are commonly used industrial complexones of metal ions, which upon the action of biotic and abiotic factors undergo a breakdown and release their substructures. Despite the low toxicity of AAPs towards vertebrates, products of their transformations, especially those that contain phosphorus and nitrogen, can affect algal communities. To verify whether such chemical entities are present in water ecosystems, much effort has been made in developing fast, inexpensive, and reliable methods for analyzing phosphonates. However, unfortunately, the methods described thus far require time-consuming sample pretreatment and offer relatively high values of the limit of detect…

0301 basic medicineHealth Toxicology and MutagenesisMetal ions in aqueous solutionOrganophosphonatesFresh Water010501 environmental sciencesCyanobacteria01 natural sciencesChloride03 medical and health scienceschemistry.chemical_compoundSpecies SpecificitymedicineEnvironmental ChemistryOrganic chemistryDerivatization0105 earth and related environmental sciencesCyanobacterial biodegradationPollutant transformationGeneral MedicineEutrophicationPollutionDTPMPPhosphonateDecompositionAminopolyphosphonates030104 developmental biologychemistryWater pollutionGlycineOrganophosphonatesAnalytical determinationHPLCWater Pollutants Chemicalmedicine.drugResearch ArticleEnvironmental Science and Pollution Research International
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Biodegradation of the aminopolyphosphonate DTPMP by the cyanobacteriumAnabaena variabilisproceeds via a C-P lyase-independent pathway

2017

Cyanobacteria, the only prokaryotes capable of oxygenic photosynthesis, play a major role in carbon, nitrogen and phosphorus global cycling. Under conditions of increased P availability and nutrient loading, some cyanobacteria are capable of blooming, rapidly multiplying and possibly altering the ecological structure of the ecosystem. Because of their ability of using non-conventional P sources, these microalgae can be used for bioremediation purposes. Under this perspective, the metabolization of the polyphosphonate diethylenetriaminepenta(methylenephosphonic) acid (DTPMP) by the strain CCALA 007 of Anabaena variabilis was investigated using 31 P NMR analysis. Results showed a quantitative…

0301 basic medicineCyanobacteriabiologyAnabaena030106 microbiologyBiodegradationbiology.organism_classificationLyasePhotosynthesisMicrobiologyPhosphonateDTPMP03 medical and health scienceschemistry.chemical_compound030104 developmental biologychemistryBiochemistryEcology Evolution Behavior and SystematicsAnabaena variabilisEnvironmental Microbiology
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