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1.
Gig Sanit ; 95(11): 1105-7, 2016.
Article in Russian | MEDLINE | ID: mdl-29446275

ABSTRACT

Polyoxin B being an effective inhibitor of synthesis of chitin of the cell wall of many phytopathogenic fungi, is recommended as a fungicide for control of phytopathogenic organisms that cause damage to crop. For the determination of the exposure of employees working with pesticides there was developed the method of the measurement of concentrations of polyoxin B in air of working area, atmospheric air of populated areas and washouts from the operators ' integuments, based on high performance liquid chromatography with ultraviolet detector (detection wavelength of270 nm), including sampling air environment in the sorption tube ORBO-44, filled with sorbent XAD-2, extraction of the sorbent with polyoxin by a mixture of carbinol-water (in a ratio of 95:5,on volume), washout from the surface of the skin with ethyl alcohol by way of washing, concentrating, quantitative chromatographic analysis. Lower limits of the quantification ofpolyoxin B in the air ofworking area - 0.2 mg/m at the aspiration of 2 dm of air, atmospheric air - 0.016 mg/m at the aspiration of 25 dm of air, in washouts from the operators' integuments - 0.4 pg/wash, the linear range of the defined concentrations accounted for of 0.2 - 2.4 pg/cm, the total error of measurement of the concentrations of polyoxin B in air is 17%; in washouts from the operators' integuments - 16%. The developed method was approbated for the determination of polyoxin in samples of air of working zone, atmospheric air within the sanitary gap, washouts from the operators ' integuments and air drift samples taken under processing of roses in the hothouse and in the monitoring of the phytosanitary condition of the plants every other day after treatment.


Subject(s)
Chromatography, High Pressure Liquid/methods , Occupational Exposure , Antifungal Agents/analysis , Environmental Monitoring/methods , Humans , Occupational Exposure/analysis , Occupational Exposure/prevention & control , Pyrimidine Nucleosides/analysis , Reproducibility of Results
2.
Gig Sanit ; 95(11): 1099-104, 2016.
Article in Russian | MEDLINE | ID: mdl-29446274

ABSTRACT

In the work there are considered results of the development of the multicomponent method of measurement of concentration of herbicides of various chemical nature under their joint presence in the water. There was justified the optimality of application of HPLC-DAD (the working wavelength of 240 nm) for the determination of levels of 10 active ingredients of herbicides of class of sulfonylurea (metsulfuron-methyl, nikosulfuron, sulfometuron-methyl, thifensulfuron-methyl, triflusulfuron-methyl), imidazolinone (imazapyr, imazethapyr), 2,6-Bis[(4,6-dimethoxy-2- pyrimidinyl)oxy]benzoic acid (bispyribac acid), triazol-pyrimidines (Penoxsulam), a benzoylpyrazole compound (Topramenzone). For the concentrating and cleaning of samples of water there were used cartridges for solid-phase extraction of Oasis HLB - the macro porous copolymer made on the basis of the balanced ratio of 2 monomers - lipophilic divinylbenzene and hydrophilic N-vinylpirrolidone. The range of the detected concentrations in water was volatile between 0.0005 and 0.005 mg/L, values of standard deviation vary in the range of 1.8-3.9%. Chlorine-containing acidic herbicides were analyzed by the method of GC-ECD and GC-MS (IE) after preliminary converting of compounds into flying derivatives with the use of diazomethane. Satisfactory extraction of substances from a water sample may be achieved by classical extraction in the system "liquid-liquid" with the application of Methyl tert-butyl ester. For cleaning of the derivatized sample there were used cartridges for solid-phase extraction on the basis of silica gel. The range of the determination of 9 active ingredients referring to classes of phenoxy-acetic acid (2,4- D, MCPA), pyridinecarboxylic (aminopyiralid, picloram, clopyralid), benzoic acids (dicamba), benzothiadiazinone (bentazone), biphenyl ester (acifluorfen) and a chloroacetamide (acetochlor) - 0.0001-0.001 mg/L, SD values vary in the range of 1.8-33%.


Subject(s)
Chromatography, Gas/methods , Chromatography, Reverse-Phase/methods , Herbicides , Environmental Monitoring/methods , Herbicides/analysis , Herbicides/classification , Humans , Reproducibility of Results , Water Pollution, Chemical/analysis
3.
Zh Mikrobiol Epidemiol Immunobiol ; (6): 29-33, 1987 Jun.
Article in Russian | MEDLINE | ID: mdl-2957877

ABSTRACT

In this work the dynamics and morbidity level in respect of meningococcal infection at 11 territories of the RSFSR at the period of 1969-1984 are analyzed. The study covered altogether 16 cities and 211 districts. The role of big cities as the sources of infection spreading into rural areas and further "fixation" of this infection mainly in regions with a population of 60,000 and more had been established. The data on meningococcal morbidity and carriership among different age groups are presented. The study has shown a pronounced increase in the incidence rate of meningococcal infection among children aged up to 2 years, as well as an increase in the proportion of these children among patients with meningococcal infection in recent years.


Subject(s)
Disease Outbreaks , Meningococcal Infections/epidemiology , Age Factors , Carrier State/epidemiology , Carrier State/microbiology , Humans , Meningococcal Infections/microbiology , Neisseria meningitidis/classification , Rural Population , Russia , Serotyping , Urban Population
6.
Article in Russian | MEDLINE | ID: mdl-7080769

ABSTRACT

To evaluate the safety, reactogenicity and immunogenicity of inactivated chromatographic influenza vaccine A(H3N2) produced by the Pasteur Research Institute of Epidemiology and Microbiology in Leningrad, children aged 7-15 years received the vaccine intradermally in doses of 114-228 IU, and 152 children received placebo. In this study inactivated influenza vaccine introduced parenterally to children aged 11-15 years in a dose of 228 IU proved to be nonreactogenic. The reactogenicity index of the preparation injected in a dose of 114 IU to children aged 7-10 years was 0.6%. Immunization in a single injection was accompanied by significant seroconversions in 87.5%-96.0% of children with the highly pronounced growth of antibody titers (21.1-34.6 times). The complex of clinico-laboratory tests showed the safety of this preparation for both age groups.


Subject(s)
Antigens, Viral/immunology , Influenza A virus/immunology , Influenza Vaccines/immunology , Adolescent , Antibodies, Viral/analysis , Blood/drug effects , Child , Drug Evaluation , Humans , Influenza Vaccines/administration & dosage , Placebos , Vaccines, Attenuated/administration & dosage , Vaccines, Attenuated/immunology
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