Biosensors and Bioelectronics, ISSN 0956-5663, 10/2018, Volume 117, pp. 224 - 231
In this work, a CuS-TiO heterojunction composite was prepared by dispersedly depositing CuS nanoparticles on TiO nanospheres surface with a hydrothermal...
CuS-TiO2 heterojunction | CuS nanoparticles | TiO2 nanospheres | Photoelectrochemical aptasensor | Microcystin-LR | CuS-TiO | nanospheres | heterojunction | TiO | ASSISTED SYNTHESIS | ELECTROCHEMISTRY | CHEMISTRY, ANALYTICAL | ONE-POT | NANOSCIENCE & NANOTECHNOLOGY | NANOSTRUCTURES | MASS-SPECTROMETRY | QUANTUM DOTS | AMPLIFICATION | BIOPHYSICS | PHOTOCATALYTIC ACTIVITY | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | HYDROGEN-PRODUCTION | IMMUNOSENSOR | NANOCOMPOSITE
CuS-TiO2 heterojunction | CuS nanoparticles | TiO2 nanospheres | Photoelectrochemical aptasensor | Microcystin-LR | CuS-TiO | nanospheres | heterojunction | TiO | ASSISTED SYNTHESIS | ELECTROCHEMISTRY | CHEMISTRY, ANALYTICAL | ONE-POT | NANOSCIENCE & NANOTECHNOLOGY | NANOSTRUCTURES | MASS-SPECTROMETRY | QUANTUM DOTS | AMPLIFICATION | BIOPHYSICS | PHOTOCATALYTIC ACTIVITY | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | HYDROGEN-PRODUCTION | IMMUNOSENSOR | NANOCOMPOSITE
Journal Article
Biosensors and Bioelectronics, ISSN 0956-5663, 12/2014, Volume 62, pp. 255 - 260
A surface-enhanced fluorescence (SEF) immunosensor for the detection of microcystin-LR was developed using Au nano-crosses as fluorescence enhancement...
Surface enhanced fluorescence immunosensor | Au nano-crosses | Microcystin-LR | ELECTROCHEMISTRY | CHEMISTRY, ANALYTICAL | Surface enhanced fluorescence | GOLD NANORODS | SENSOR | NANOSCIENCE & NANOTECHNOLOGY | NANOSTRUCTURES | SILVER NANOPARTICLES | DEPENDENCE | EXTRACTION | BIOPHYSICS | LIQUID-CHROMATOGRAPHY | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | immunosensor | EMISSION | Nanotubes - ultrastructure | Gold | Microscopy, Electron, Transmission | Immunoassay - instrumentation | Microcystins - immunology | Humans | Microcystins - toxicity | Food Microbiology | Microcystins - analysis | Carbocyanines | Animals | Seafood - microbiology | Immunoassay - methods | Biosensing Techniques - instrumentation | Biosensing Techniques - methods | Seafood - toxicity | Fluorescent Dyes | Metal Nanoparticles - ultrastructure | Fluorescence | Safety and security measures | Adsorption | Food contamination | Food | Nanoparticles | Seafood | Immunosensors | Nanostructure | Biosensors | Nanorods
Surface enhanced fluorescence immunosensor | Au nano-crosses | Microcystin-LR | ELECTROCHEMISTRY | CHEMISTRY, ANALYTICAL | Surface enhanced fluorescence | GOLD NANORODS | SENSOR | NANOSCIENCE & NANOTECHNOLOGY | NANOSTRUCTURES | SILVER NANOPARTICLES | DEPENDENCE | EXTRACTION | BIOPHYSICS | LIQUID-CHROMATOGRAPHY | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | immunosensor | EMISSION | Nanotubes - ultrastructure | Gold | Microscopy, Electron, Transmission | Immunoassay - instrumentation | Microcystins - immunology | Humans | Microcystins - toxicity | Food Microbiology | Microcystins - analysis | Carbocyanines | Animals | Seafood - microbiology | Immunoassay - methods | Biosensing Techniques - instrumentation | Biosensing Techniques - methods | Seafood - toxicity | Fluorescent Dyes | Metal Nanoparticles - ultrastructure | Fluorescence | Safety and security measures | Adsorption | Food contamination | Food | Nanoparticles | Seafood | Immunosensors | Nanostructure | Biosensors | Nanorods
Journal Article
Bioresource Technology, ISSN 0960-8524, 01/2018, Volume 247, pp. 690 - 696
The purpose of this study was to establish the strategy to remove the cyanotoxin microcystin-LR (MC-LR) from aqueous solution with the use of biosorption...
Polyethylenimine (PEI) | Biosorption | Biomass | Adsorbent | Microcystin-LR | CARBON | ESCHERICHIA-COLI BIOMASS | ENERGY & FUELS | GRAPHENE | REACTIVE DYE | AGRICULTURAL ENGINEERING | BACILLUS-SUBTILIS | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | EQUILIBRIUM | BINDING | DERIVATIVES | Adsorption | Marine toxins | Escherichia coli
Polyethylenimine (PEI) | Biosorption | Biomass | Adsorbent | Microcystin-LR | CARBON | ESCHERICHIA-COLI BIOMASS | ENERGY & FUELS | GRAPHENE | REACTIVE DYE | AGRICULTURAL ENGINEERING | BACILLUS-SUBTILIS | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | EQUILIBRIUM | BINDING | DERIVATIVES | Adsorption | Marine toxins | Escherichia coli
Journal Article
Toxicology and Applied Pharmacology, ISSN 0041-008X, 08/2019, Volume 377, p. 114626
Microcystin-LR (MC-LR) is a type of cyclic heptapeptide toxin produced by cyanobacteria during bloom events. MC-LR-induced cell death is critically involved in...
Cyanbacteria | Necroptosis | Microcystins | Eutrophication | Apoptosis | Liver injury | OXIDATIVE STRESS | INDUCED APOPTOSIS | MIXED LINEAGE KINASE | DEPENDENT APOPTOSIS | MECHANISMS | CELL-DEATH | NECROSIS | PHARMACOLOGY & PHARMACY | TOXICOLOGY | RIP3 | UP-REGULATION | EXPRESSION
Cyanbacteria | Necroptosis | Microcystins | Eutrophication | Apoptosis | Liver injury | OXIDATIVE STRESS | INDUCED APOPTOSIS | MIXED LINEAGE KINASE | DEPENDENT APOPTOSIS | MECHANISMS | CELL-DEATH | NECROSIS | PHARMACOLOGY & PHARMACY | TOXICOLOGY | RIP3 | UP-REGULATION | EXPRESSION
Journal Article
Analytica Chimica Acta, ISSN 0003-2670, 11/2017, Volume 994, pp. 82 - 91
An ultrasensitive photoelectrochemical (PEC) immunoassay based on multiple signal amplification strategy was fabricated for the detection of microcystin-LR...
CdS/TiO2 nanorod arrays | Photoelectrochemical immunosensor | Fe3O4@polydopamine | Microcystin-LR | nanorod arrays | @polydopamine | CdS/TiO | CHEMISTRY, ANALYTICAL | CDS QUANTUM DOTS | ELECTROCHEMICAL IMMUNOSENSOR | NANOPARTICLES | NONENZYMATIC IMMUNOSENSOR | NANOROD | ELECTRODE | INDUCED BIOCATALYTIC PRECIPITATION | IMMUNOASSAY | BIOSENSOR | SAMPLES | Immunoassay | Limit of Detection | Reproducibility of Results | Electrochemical Techniques | Hydrogen Peroxide | Titanium | Cadmium Compounds | Microcystins - analysis | Precipitation (Meteorology)
CdS/TiO2 nanorod arrays | Photoelectrochemical immunosensor | Fe3O4@polydopamine | Microcystin-LR | nanorod arrays | @polydopamine | CdS/TiO | CHEMISTRY, ANALYTICAL | CDS QUANTUM DOTS | ELECTROCHEMICAL IMMUNOSENSOR | NANOPARTICLES | NONENZYMATIC IMMUNOSENSOR | NANOROD | ELECTRODE | INDUCED BIOCATALYTIC PRECIPITATION | IMMUNOASSAY | BIOSENSOR | SAMPLES | Immunoassay | Limit of Detection | Reproducibility of Results | Electrochemical Techniques | Hydrogen Peroxide | Titanium | Cadmium Compounds | Microcystins - analysis | Precipitation (Meteorology)
Journal Article
Biosensors and Bioelectronics, ISSN 0956-5663, 10/2018, Volume 117, p. 224
Journal Article
International Biodeterioration & Biodegradation, ISSN 0964-8305, 11/2016, Volume 115, pp. 17 - 25
The frequent presence of microcystin (MC) in eutrophic water bodies worldwide poses a serious threat to ecosystems. Biodegradation has been extensively...
Degradation | Microcystin | mlrA gene | Evolutionary origin | Rhizobium | Mechanism | DEGRADING BACTERIUM | CYANOBACTERIAL HEPATOTOXIN MICROCYSTIN | IDENTIFICATION | ENVIRONMENTAL SCIENCES | REMOVAL | LAKE TAIHU | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | ENZYMATIC PATHWAY | SP-NOV | WATER | Biodegradation | Analysis | Genes | Escherichia coli | Green technology | Genetic research | Bacteria | Evolution | Phylogeny | Proteobacteria | Rate constants | eutrophic environment | Toxic materials | Sphingomonadales | Phylogenetic analysis | evolutionary biology | toxin | Rhizobium sp | phylogenetics | Natural Sciences | Horizontal gene transfer | Microcystins | Alphaproteobacteria | Biological Sciences | Mechanisms | Gene transfer | gene | Environmental sample | rhizobacterium | Gene expression | Strain | Naturvetenskap | reaction kinetics | Biologiska vetenskaper | Bacteria (microorganisms) | Gammaproteobacteria | First-order rate constants | Heterologous expression
Degradation | Microcystin | mlrA gene | Evolutionary origin | Rhizobium | Mechanism | DEGRADING BACTERIUM | CYANOBACTERIAL HEPATOTOXIN MICROCYSTIN | IDENTIFICATION | ENVIRONMENTAL SCIENCES | REMOVAL | LAKE TAIHU | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | ENZYMATIC PATHWAY | SP-NOV | WATER | Biodegradation | Analysis | Genes | Escherichia coli | Green technology | Genetic research | Bacteria | Evolution | Phylogeny | Proteobacteria | Rate constants | eutrophic environment | Toxic materials | Sphingomonadales | Phylogenetic analysis | evolutionary biology | toxin | Rhizobium sp | phylogenetics | Natural Sciences | Horizontal gene transfer | Microcystins | Alphaproteobacteria | Biological Sciences | Mechanisms | Gene transfer | gene | Environmental sample | rhizobacterium | Gene expression | Strain | Naturvetenskap | reaction kinetics | Biologiska vetenskaper | Bacteria (microorganisms) | Gammaproteobacteria | First-order rate constants | Heterologous expression
Journal Article
Journal of Environmental Sciences, ISSN 1001-0742, 03/2015, Volume 29, pp. 210 - 218
Microcystin-LR (MC-LR) is the most abundant and toxic microcystin congener and has been classified as a potential human carcinogen (Group 2B) by the...
Nitric oxide | Genotoxicity | Microcystin-LR (MC-LR) | Chronic exposure | INDUCED DNA-DAMAGE | OXIDATIVE STRESS | RAT HEPATOCYTES | MAMMALIAN-CELLS | ENVIRONMENTAL SCIENCES | IN-VITRO | REPAIR | MUTATION | LIVER | DRINKING-WATER | EXPRESSION | DNA Damage - drug effects | Hybridomas - drug effects | Cricetinae | Animals | Humans | Mitochondria - metabolism | Mitochondria - drug effects | Mutation | Microcystins - toxicity | Nitric Oxide - metabolism | Carcinogens | Inhibitors | Congeners | Exposure | Mammals | Survival
Nitric oxide | Genotoxicity | Microcystin-LR (MC-LR) | Chronic exposure | INDUCED DNA-DAMAGE | OXIDATIVE STRESS | RAT HEPATOCYTES | MAMMALIAN-CELLS | ENVIRONMENTAL SCIENCES | IN-VITRO | REPAIR | MUTATION | LIVER | DRINKING-WATER | EXPRESSION | DNA Damage - drug effects | Hybridomas - drug effects | Cricetinae | Animals | Humans | Mitochondria - metabolism | Mitochondria - drug effects | Mutation | Microcystins - toxicity | Nitric Oxide - metabolism | Carcinogens | Inhibitors | Congeners | Exposure | Mammals | Survival
Journal Article
Aquatic Toxicology, ISSN 0166-445X, 07/2017, Volume 188, pp. 119 - 129
Microcystins (MCs) are a major group of potent cyanobacterial toxins found in freshwater and even brackish waterbodies. To understand the putative correlation...
Microcystin | Oxidative stress | Mytilus edulis | Bivalve | Bioconcentration | Crassostrea gigas | LIPID-PEROXIDATION | AQUATIC ANIMALS | CYANOBACTERIAL TOXINS | BIOACCUMULATION | BIOTRANSFORMATION | CRAYFISH PROCAMBARUS-CLARKII | GLUTATHIONE | MARINE & FRESHWATER BIOLOGY | TOXICOLOGY | ACCUMULATION | WATER | Crassostrea - drug effects | Malondialdehyde - metabolism | Glutathione Peroxidase - metabolism | Crassostrea - metabolism | Glutathione - metabolism | Glutathione Reductase - metabolism | Mytilus edulis - metabolism | Glutathione Transferase - metabolism | Water Pollutants, Chemical - pharmacokinetics | Gastrointestinal Tract - drug effects | Microcystins - toxicity | Gastrointestinal Tract - metabolism | Catalase - metabolism | Microcystins - pharmacokinetics | Mytilus edulis - drug effects | Animals | Water Pollutants, Chemical - toxicity | Superoxide Dismutase - metabolism | Antioxidants | Enzymes | Research institutes | Goods and services tax | Marine sciences | Superoxide | Oysters | Crassostrea | Glutathione transferase | Index Medicus
Microcystin | Oxidative stress | Mytilus edulis | Bivalve | Bioconcentration | Crassostrea gigas | LIPID-PEROXIDATION | AQUATIC ANIMALS | CYANOBACTERIAL TOXINS | BIOACCUMULATION | BIOTRANSFORMATION | CRAYFISH PROCAMBARUS-CLARKII | GLUTATHIONE | MARINE & FRESHWATER BIOLOGY | TOXICOLOGY | ACCUMULATION | WATER | Crassostrea - drug effects | Malondialdehyde - metabolism | Glutathione Peroxidase - metabolism | Crassostrea - metabolism | Glutathione - metabolism | Glutathione Reductase - metabolism | Mytilus edulis - metabolism | Glutathione Transferase - metabolism | Water Pollutants, Chemical - pharmacokinetics | Gastrointestinal Tract - drug effects | Microcystins - toxicity | Gastrointestinal Tract - metabolism | Catalase - metabolism | Microcystins - pharmacokinetics | Mytilus edulis - drug effects | Animals | Water Pollutants, Chemical - toxicity | Superoxide Dismutase - metabolism | Antioxidants | Enzymes | Research institutes | Goods and services tax | Marine sciences | Superoxide | Oysters | Crassostrea | Glutathione transferase | Index Medicus
Journal Article
Analytica Chimica Acta, ISSN 0003-2670, 11/2017, Volume 994, p. 82
An ultrasensitive photoelectrochemical (PEC) immunoassay based on multiple signal amplification strategy was fabricated for the detection of microcystin-LR...
Immunoassay | Antigens | Recombination | Hydrogen peroxide | Microcystin-LR | Horseradish peroxidase | Immunosensors | Steric hindrance | Catalytic activity | Nanoparticles | Electrodes | Amplification | Photoelectric effect | Absorption | Photocurrent | Reproducibility | Oxidation | Peroxidase | Naphthol | Catalysis | Environmental monitoring | Iron oxides | Titanium dioxide | Nanorods
Immunoassay | Antigens | Recombination | Hydrogen peroxide | Microcystin-LR | Horseradish peroxidase | Immunosensors | Steric hindrance | Catalytic activity | Nanoparticles | Electrodes | Amplification | Photoelectric effect | Absorption | Photocurrent | Reproducibility | Oxidation | Peroxidase | Naphthol | Catalysis | Environmental monitoring | Iron oxides | Titanium dioxide | Nanorods
Journal Article
Scientific Reports, ISSN 2045-2322, 06/2016, Volume 6, Issue 1, p. 27041
Patient-controlled epidural analgesia (PCEA) has been applied to reduce postoperative pain in orthopedic surgical patients. Unfortunately, PCEA is occasionally...
RISK-FACTORS | PAIN | ORTHOGNATHIC SURGERY | MULTIDISCIPLINARY SCIENCES | NAUSEA | SUPPORT VECTOR MACHINE | CATHETER INSERTION | Prognosis | Analgesia, Patient-Controlled - methods | Area Under Curve | Humans | Middle Aged | Fentanyl | Logistic Models | Male | Analgesia, Epidural - methods | Support Vector Machine | Postoperative Nausea and Vomiting - diagnosis | Postoperative Nausea and Vomiting - prevention & control | Pain, Postoperative - prevention & control | Bupivacaine | Orthopedic Procedures | Aged, 80 and over | Female | ROC Curve | Aged | Retrospective Studies | Pain Measurement | Pain, Postoperative - physiopathology | Anesthetics, Local
RISK-FACTORS | PAIN | ORTHOGNATHIC SURGERY | MULTIDISCIPLINARY SCIENCES | NAUSEA | SUPPORT VECTOR MACHINE | CATHETER INSERTION | Prognosis | Analgesia, Patient-Controlled - methods | Area Under Curve | Humans | Middle Aged | Fentanyl | Logistic Models | Male | Analgesia, Epidural - methods | Support Vector Machine | Postoperative Nausea and Vomiting - diagnosis | Postoperative Nausea and Vomiting - prevention & control | Pain, Postoperative - prevention & control | Bupivacaine | Orthopedic Procedures | Aged, 80 and over | Female | ROC Curve | Aged | Retrospective Studies | Pain Measurement | Pain, Postoperative - physiopathology | Anesthetics, Local
Journal Article
Environmental Science & Technology, ISSN 0013-936X, 03/2012, Volume 46, Issue 6, pp. 3442 - 3448
Hepatotoxin microcystin-LR (MC-LR) can induce apoptosis in a variety of cells. However, the underlying pathways of MC-LR-induced apoptosis have not been well...
PROGRAMMED CELL-DEATH | ENVIRONMENTAL SCIENCES | SIGNALING PATHWAYS | ENGINEERING, ENVIRONMENTAL | DNA-DAMAGE | IN-VIVO | LIVER | CYCLE ARREST | EXPRESSION | DAMAGE CHECKPOINT PROTEIN | EXPOSURE | ERK | Caenorhabditis elegans - metabolism | Marine Toxins - toxicity | Apoptosis - drug effects | Caenorhabditis elegans - genetics | Tumor Suppressor Protein p53 - metabolism | Bacterial Toxins - toxicity | Caenorhabditis elegans Proteins - metabolism | Microcystins - toxicity | Proto-Oncogene Proteins c-bcl-2 - metabolism | Animals | Caenorhabditis elegans - drug effects | RNA Interference | Signal Transduction - drug effects | Telomere-Binding Proteins - metabolism | Repressor Proteins - metabolism | Mitogen-Activated Protein Kinases - metabolism | Index Medicus
PROGRAMMED CELL-DEATH | ENVIRONMENTAL SCIENCES | SIGNALING PATHWAYS | ENGINEERING, ENVIRONMENTAL | DNA-DAMAGE | IN-VIVO | LIVER | CYCLE ARREST | EXPRESSION | DAMAGE CHECKPOINT PROTEIN | EXPOSURE | ERK | Caenorhabditis elegans - metabolism | Marine Toxins - toxicity | Apoptosis - drug effects | Caenorhabditis elegans - genetics | Tumor Suppressor Protein p53 - metabolism | Bacterial Toxins - toxicity | Caenorhabditis elegans Proteins - metabolism | Microcystins - toxicity | Proto-Oncogene Proteins c-bcl-2 - metabolism | Animals | Caenorhabditis elegans - drug effects | RNA Interference | Signal Transduction - drug effects | Telomere-Binding Proteins - metabolism | Repressor Proteins - metabolism | Mitogen-Activated Protein Kinases - metabolism | Index Medicus
Journal Article
Water Environment Research, ISSN 1061-4303, 7/2012, Volume 84, Issue 7, pp. 562 - 568
Adsorption of microcystin-LR (MC-LR) from water using iron oxide (α-Fe₂O₃) nanoparticles was investigated in this study. Adsorption of MC-LR adsorption was...
Nanoparticles | Adsorption | Isotherms | Carboxyl compounds | Sorbents | Kinetics | Iron oxides | Electrostatics | Adsorbents | carboxyl group | adsorption | kinetics | inorganic cations | Inorganic cations | Carboxyl group | PARTICLES | MECHANISM | SORPTION | SIZE | IONS | WATER RESOURCES | ENVIRONMENTAL SCIENCES | REMOVAL | ENGINEERING, ENVIRONMENTAL | ACTIVATED CARBON | DISSOLVED ORGANIC-MATTER | LIMNOLOGY | CLAY | HUMIC-ACID | Time Factors | Microcystins - chemistry | Metal Nanoparticles - chemistry | Water Pollutants, Chemical - chemistry | Ferric Compounds - chemistry | Hydrogen-Ion Concentration
Nanoparticles | Adsorption | Isotherms | Carboxyl compounds | Sorbents | Kinetics | Iron oxides | Electrostatics | Adsorbents | carboxyl group | adsorption | kinetics | inorganic cations | Inorganic cations | Carboxyl group | PARTICLES | MECHANISM | SORPTION | SIZE | IONS | WATER RESOURCES | ENVIRONMENTAL SCIENCES | REMOVAL | ENGINEERING, ENVIRONMENTAL | ACTIVATED CARBON | DISSOLVED ORGANIC-MATTER | LIMNOLOGY | CLAY | HUMIC-ACID | Time Factors | Microcystins - chemistry | Metal Nanoparticles - chemistry | Water Pollutants, Chemical - chemistry | Ferric Compounds - chemistry | Hydrogen-Ion Concentration
Journal Article
BMC Medical Genetics, ISSN 1471-2350, 08/2011, Volume 12, Issue 1, pp. 108 - 108
Background: Although polymorphisms of PRNP, the gene encoding prion protein, are known as a determinant affecting prion disease susceptibility, other genes...
PRION PROTEIN | PRPSC PROPAGATION | QUANTITATIVE TRAIT LOCI | PRNP | KOREAN POPULATION | GENETICS & HEREDITY | LAMININ RECEPTOR PRECURSOR | MICE | IDENTIFICATION | VECTORS | INCUBATION PERIOD | Genetic Predisposition to Disease | Exons | Introns | Ribosomal Proteins - genetics | Gene Frequency | Humans | Middle Aged | Genotype | Male | DNA Primers - chemistry | Receptors, Laminin - genetics | Sequence Analysis, DNA | Case-Control Studies | Alleles | Polymerase Chain Reaction | Aged, 80 and over | DNA Primers - metabolism | Female | Aged | Polymorphism, Single Nucleotide | Creutzfeldt-Jakob Syndrome - genetics | Care and treatment | Ribosomal proteins | Creutzfeldt-Jakob disease | Genetic aspects | Research | Single nucleotide polymorphisms | Health aspects | Risk factors
PRION PROTEIN | PRPSC PROPAGATION | QUANTITATIVE TRAIT LOCI | PRNP | KOREAN POPULATION | GENETICS & HEREDITY | LAMININ RECEPTOR PRECURSOR | MICE | IDENTIFICATION | VECTORS | INCUBATION PERIOD | Genetic Predisposition to Disease | Exons | Introns | Ribosomal Proteins - genetics | Gene Frequency | Humans | Middle Aged | Genotype | Male | DNA Primers - chemistry | Receptors, Laminin - genetics | Sequence Analysis, DNA | Case-Control Studies | Alleles | Polymerase Chain Reaction | Aged, 80 and over | DNA Primers - metabolism | Female | Aged | Polymorphism, Single Nucleotide | Creutzfeldt-Jakob Syndrome - genetics | Care and treatment | Ribosomal proteins | Creutzfeldt-Jakob disease | Genetic aspects | Research | Single nucleotide polymorphisms | Health aspects | Risk factors
Journal Article
Bulletin of Environmental Contamination and Toxicology, ISSN 0007-4861, 10/2017, Volume 99, Issue 4, pp. 493 - 499
The aim of this study was to investigate the responses in filtration and grazing rates of five rotifer strains of the species Brachionus calyciflorus under...
Pollution, general | Temperature | Environmental Health | Feeding behavior | Ecotoxicology | Microcystin | Environment | Waste Water Technology / Water Pollution Control / Water Management / Aquatic Pollution | Brachionus calyciflorus | Rotifer | Environmental Chemistry | Soil Science & Conservation | AERUGINOSA | POPULATION-GROWTH | DAPHNIA | TOXICITY | ZOOPLANKTON | DEMOGRAPHY | LIFE-HISTORY CHARACTERISTICS | ENVIRONMENTAL SCIENCES | CYANOBACTERIA | TOXICOLOGY | PLICATILIS | EXPOSURE | Animals | Water Pollutants, Chemical - toxicity | Rotifera - physiology | Tropical Climate | Rotifera - drug effects | China | Environmental Monitoring - methods | Microcystins - toxicity | Water Pollutants, Chemical - analysis | Feeding Behavior - drug effects | Microcystins - analysis | Filtration | Plankton | Temperature effects | Toxins | Aquatic organisms | Grazing
Pollution, general | Temperature | Environmental Health | Feeding behavior | Ecotoxicology | Microcystin | Environment | Waste Water Technology / Water Pollution Control / Water Management / Aquatic Pollution | Brachionus calyciflorus | Rotifer | Environmental Chemistry | Soil Science & Conservation | AERUGINOSA | POPULATION-GROWTH | DAPHNIA | TOXICITY | ZOOPLANKTON | DEMOGRAPHY | LIFE-HISTORY CHARACTERISTICS | ENVIRONMENTAL SCIENCES | CYANOBACTERIA | TOXICOLOGY | PLICATILIS | EXPOSURE | Animals | Water Pollutants, Chemical - toxicity | Rotifera - physiology | Tropical Climate | Rotifera - drug effects | China | Environmental Monitoring - methods | Microcystins - toxicity | Water Pollutants, Chemical - analysis | Feeding Behavior - drug effects | Microcystins - analysis | Filtration | Plankton | Temperature effects | Toxins | Aquatic organisms | Grazing
Journal Article