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排序方式: 共有68条查询结果,搜索用时 0 毫秒
1.
Christian Skonberg Andreas Artmann Claus Cornett Steen Honoré Hansen Harald S. Hansen 《Journal of lipid research》2010,51(10):3062-3073
N-acylethanolamines (NAEs) are a group of lipid mediators synthesized in response to a number of physiological and pathological stimuli. Because of the low tissue concentrations of NAEs, analyses often include liquid extraction followed by solid-phase extraction and subsequent quantitation by LC/MS or GC/MS. Reported levels of NAEs vary considerably, however, and often no explanation is given for these discrepancies. Brought on by difficulties encountered during method development, the effects of using four different brands of silica-containing solid phase extraction (SPE) columns and five different brands of chloroform for sample preparation were investigated. Considerable variation in the retention and recoveries of seven NAEs and 2-arachidonoylglycerol existed between the SPE columns. Furthermore, it was found that some chloroforms contained quantifiable amounts of N-palmitoylethanolamine and N-stearoylethanolamine. Finally, it was found that use of one of the chloroforms resulted in a loss of N-oleoylethanolamine from solution due to addition of chlorine to the ω-9 bond. The identity of this reaction product was confirmed by LC-MS/MS and NMR. It is recommended that these aspects of sample preparation and analysis should be thoroughly validated during method development and the relevant information on specific brands used be reported in future communications in order to better estimate the validity of reported quantitative data. 相似文献
2.
The irreversible binding of [2,3-14C]acrylonitrile (VCN) to proteins, RNA and DNA of various tissues of male Sprague-Dawley rats after a single oral dose of 46.5 mg/kg (0.5 LD50) has been studied. Proteins were isolated by chloroform-isoamyl alcohol-phenol extraction. RNA and DNA were separated by hydroxyapatite chromatography. Binding of VCN to proteins was extensive and was time dependent. Radioactivity in nucleic acids was registered in the liver and the target organs, stomach and brain. DNA alkylation, which increased by time, was significantly higher in the target organs, brain and stomach (119 and 81 pmol/mg, respectively, at 24 h) than that in the liver. The covalent binding indices for the liver, stomach and brain at 24 h after dosing were, 5.9, 51.9 and 65.3, respectively. These results suggest that VCN is able to act as a multipotent carcinogen by alkylation of DNA in the extrahepatic target tissues, stomach and brain. 相似文献
3.
Frascari D Zannoni A Fedi S Pii Y Zannoni D Pinelli D Nocentini M 《Biodegradation》2005,16(2):147-158
The focus of this microcosm study was to monitor the performances of 17 butane-utilizing microcosms during a long-term (100–250 days) aerobic cometabolic depletion of chloroform (CF). The depletion of the contaminant began after a lag-time variable between 0 and 23 days. All microcosms quickly reached a pseudo steady-state condition, in terms of biomass concentration (with an average of 9.3 × 106 CFU ml–1), chloroform depletion rate (5 mol l–1 d–1) and butane utilization rate (730 mol l–1 d–1). After about 100 days of CF depletion, a sudden 5- to 7-fold increase of the chloroform rate was observed in two microcosms, where the highest amount of contaminant had been depleted. In one of these high-performing microcosms, an experiment of chloroform depletion in the absence of butane resulted in the depletion of a surprisingly high amount of contaminant (765 molCF kgdry soil–1 in 2 months) and in a marked selection of a single bacterial strain. Bioaugmentation assays conducted with the biomass selected in this microcosm and with a pure culture of the selected strain immediately resulted in very high chloroform depletion rates. Preliminary results of a study conducted with resting cells of the selected strain indicated that it can degrade chloroform concentrations up to 119 M (14.2 mg l–1) without any sign of substrate toxicity, and that it is able to transform vinyl chloride and 1,1,2-trichloroethane. 相似文献
4.
Barlette Vania Elisabeth Garbujo Fábio Luiz Laurenti Freitas Luiz Carlos Gomide 《Molecular Engineering》1997,7(3-4):439-455
A five site potential model combining Lennard–Jones plus Coulomb potential functions has been developed for chloroform molecule.
The partial charges needed for Coulombic interactions were derived using the chelpg procedure implemented in the gaussian
92 program. These calculations were performed at the MP2 level with MC-311G* basis set for Cl and 6-311G** for C and H atoms.
The parameters for the Lennard–Jones potentials were optimized to reproduce experimental values for the density and enthalpy
of vaporization of the pure liquid at 298 K and 1 atm. The statistical mechanics calculations were performed with the Monte
Carlo method in the isothermic and isobaric (NpT) ensemble. Besides the values obtained for density, ρ, and molar enthalpy
of vaporization at constant pressure, Δ HV, for liquid chloroform, results for molar volume, Vm, molar heat capacity, Cp, isobaric thermal expansivity, αp, and isothermal compressibility, κT, for this pure liquid are also in very good agreement with experimental observations. Size effects on the values of thermodynamic
properties were investigated. The potential model was also tested by computing the free energy for solvating one chloroform
molecule into its own liquid at 298 K using a statistical perturbation approach. The result obtained compares well with the
experimental value. Site–site pair correlation functions were calculated and are in good accordance with theoretical results
available in the literature. Dipole–dipole correlation functions for the present five site model were also calculated at different
carbon–carbon distances. These correlations were compared to those obtained using the four site model reported in the literature.
An investigation of the solvent dependence of the relative free energy for cis/trans conversion of a hypothetical solute in
TIP4P water and chloroform was accomplished. The results show strong interaction of water and chloroform molecules with the
gauche conformer. The value obtained for the free energy barrier for cis/trans rotation in TIP4P water is higher than that
for chloroform. This result is in agreement with the continuous theory for solvation as the conformer with higher dipole moment
is more favoured by the solvent with higher dieletric constant. The results also show an increase in entropy as the solute
goes from the cis to the trans geometry and this result is more appreciable in the aqueous solution.
This revised version was published online in June 2006 with corrections to the Cover Date. 相似文献
5.
Soil Carbon, Nitrogen and Phosphorus Dynamics as Affected by Solarization Alone or Combined with Organic Amendment 总被引:1,自引:0,他引:1
Antonio Gelsomino Luigi Badalucco Loretta Landi Giovanni Cacco 《Plant and Soil》2006,279(1-2):307-325
Soil solarization, alone or combined with organic amendment, is an increasingly attractive approach for managing soil-borne
plant pathogens in agricultural soils. Even though it consists in a relatively mild heating treatment, the increased soil
temperature may strongly affect soil microbial processes and nutrients dynamics. This study aimed to investigate the impact
of solarization, either with or without addition of farmyard manure, in soil dynamics of various C, N and P pools. Changes
in total C, N and P contents and in some functionally-related labile pools (soil microbial biomass C and N, K2SO4-extractable C and N, basal respiration, KCl-exchangeable ammonium and nitrate, and water-soluble P) were followed across
a 72-day field soil solarization experiment carried out during a summer period on a clay loam soil in Southern Italy. Soil
physico-chemical properties (temperature, moisture content and pH) were also monitored. The average soil temperature at 8-cm
depth in solarized soils approached 55 °C as compared to 35 °C found in nonsolarized soil. Two-way ANOVA (solarization×organic
amendment) showed that both factors significantly affected most of the above variables, being the highest influence exerted
by the organic amendment. With no manure addition, solarization did not significantly affect soil total C, N and P pools.
Whereas soil pH, microbial biomass and, at a greater extent, K2SO4-extractable N and KCl-exchangeable ammonium were greatly affected. An increased release of water-soluble P was also found
in solarized soils. Yet, solarization altered the quality of soluble organic residues released in soil as it lowered the C-to-N
ratio of both soil microbial biomass and K2SO4-extractable organic substrates. Additionally, in solarized soils the metabolic quotient (qCO2) significantly increased while the microbial biomass C-to-total organic C ratio (microbial quotient) decreased over the whole
time course. We argued that soil solarization promoted the mineralization of readily decomposable pools of the native soil
organic matter (e.g. the microbial biomass) thus rendering larger, at least over a short-term, the available fraction of some
soil mineral nutrients, namely N and P forms. However, over a longer prospective solarization may lead to an over-exploitation
of labile organic resources in agricultural soils. Manure addition greatly increased the levels of both total and labile C,
N and P pools. Thus, addition of organic amendments could represent an important strategy to protect agricultural lands from
excessive soil resources exploitation and to maintain soil fertility while enhancing pest control. 相似文献
6.
《Bioorganic & medicinal chemistry》2019,27(16):3546-3550
Previously we have reported on a series of pyridine-3-carboxamide inhibitors of DNA gyrase and DNA topoisomerase IV that were designed using a computational de novo design approach and which showed promising antibacterial properties. Herein we describe the synthesis of additional examples from this series aimed specifically at DNA gyrase, along with crystal structures confirming the predicted mode of binding and in vitro ADME data which describe the drug-likeness of these compounds. 相似文献
7.
8.
《Harmful algae》2019
Cyanobacterial blooms occur when algal densities exceed baseline population concentrations. Cyanobacteria can produce a large number of secondary metabolites. Odorous metabolites affect the smell and flavor of aquatic animals, whereas bioactive metabolites cause a range of lethal and sub-lethal effects in plants, invertebrates, and vertebrates, including humans. Herein, the bioactivity, chemistry, origin, and biosynthesis of these cyanobacterial secondary metabolites were reviewed. With recent revision of cyanobacterial taxonomy by Anagnostidis and Komárek as part of the Süβwasserflora von Mitteleuropa volumes 19(1–3), names of many cyanobacteria that produce bioactive compounds have changed, thereby confusing readers. The original and new nomenclature are included in this review to clarify the origins of cyanobacterial bioactive compounds.Due to structural similarity, the 157 known bioactive classes produced by cyanobacteria have been condensed to 55 classes. This review will provide a basis for more formal procedures to adopt a logical naming system. This review is needed for efficient management of water resources to understand, identify, and manage cyanobacterial harmful algal bloom impacts. 相似文献
9.
10.
Udai Pratap Singh Sudarshan Maurya Gopal Nath Mandavi Singh 《Archives Of Phytopathology And Plant Protection》2013,46(13):1546-1557
High-performance liquid chromatographic (HPLC) analysis of chloroform fraction (CF) of cow urine showed rich pool of phenolic acids. Antifungal and antibacterial bioassays of CF have shown its tremendous efficacy against some fungal plant pathogens as well as human pathogenic bacteria at very low concentrations. The CF also inhibited powdery mildew (Erysiphe cichoracearum) of balsam (Impatiens balsamania) under field conditions during pre- and post-inoculation treatments. HPLC analysis of pre- and post-inoculation-treated plant leaves indicated that CF induced phenolic acid synthesis as compared to control. The results revealed that CF of cow urine has the potential for controlling some important human diseases. The result on balsam powdery mildew is a good signal that CF may also be effective against other plant diseases in the field. 相似文献