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排序方式: 共有792条查询结果,搜索用时 15 毫秒
91.
Morvan J Saluden M Agasse V Barbot F Cardinael P Bouillon JP Decock G 《Analytical and bioanalytical chemistry》2006,384(6):1409-1415
Bachus et al. [1] recently described a new derivatisation method using 2-furoyl chloride for the characterisation of mixtures of polyethoxylated
alcohols and their corresponding sulfates. This paper deals with the control of the derivatisation steps; hydrolysis and extraction
conditions were optimised. The method is extended to the characterisation of alkyl sulfosuccinates, alkyl sulfoacetates and
alkyl phosphates and to the analysis of residual polyethoxylated alcohols in surfactants. Extraction of non-ionic compounds
using solid-phase extraction cartridges was performed before derivatisation. Residual amounts of alcohol were determined in
five commercial anionic surfactants. Moreover, direct derivatisation without preliminary SPE in the same anionic surfactants
proved to be efficient for dry samples. 相似文献
92.
93.
Initially isolated in trace quantities from deep-sea sponges, the structurally related polyketides discodermolide and dictyostatin share the same microtubule-stabilizing antimitotic mechanism as Taxol. Discodermolide has been the focus of intense research activity in order to develop a practical supply route, and these efforts ultimately allowed its large-scale synthesis and the initiation of clinical trials as a novel anticancer drug. Similarly, the re-isolation and synthesis of dictyostatin continues to stimulate the biological and chemical communities in their quest for the development of new chemotherapeutic agents. This comprehensive review chronicles the synthetic endeavours undertaken over the last 15 years towards the development and realization of practical chemical syntheses of discodermolide and, more recently, dictyostatin, focusing on the methods and strategies employed for achieving overall stereocontrol and key fragment unions, as well as the design and synthesis of novel hybrid structures. 相似文献
94.
Quinton D Girard A Thi Kim LT Raimbault V Griscom L Razan F Griveau S Bedioui F 《Lab on a chip》2011,11(7):1342-1350
In this work we report on the design, microfabrication and analytical performances of a new electrochemical sensor array (ESA) which allows for the first time the simultaneous amperometric detection of nitric oxide (NO) and peroxynitrite (ONOO(-)), two biologically relevant molecules. The on-chip device includes individually addressable sets of gold ultramicroelectrodes (UMEs) of 50 μm diameter, Ag/AgCl reference electrode and gold counter electrode. The electrodes are separated into two groups; each has one reference electrode, one counter electrode and 110 UMEs specifically tailored to detect a specific analyte. The ESA is incorporated on a custom interface with a cell culture well and spring contact pins that can be easily interconnected to an external multichannel potentiostat. Each UME of the network dedicated to the detection of NO is electrochemically modified by electrodepositing thin layers of poly(eugenol) and poly(phenol). The detection of NO is performed amperometrically at 0.8 V vs. Ag/AgCl in phosphate buffer solution (PBS, pH = 7.4) and other buffers adapted to biological cell culture, using a NO-donor. The network of UMEs dedicated to the detection of ONOO(-) is used without further chemical modification of the surface and the uncoated gold electrodes operate at -0.1 V vs. Ag/AgCl to detect the reduction of ONOOH in PBS. The selectivity issue of both sensors against major biologically relevant interfering analytes is examined. Simultaneous detection of NO and ONOO(-) in PBS is also achieved. 相似文献
95.
Smaoui S Mellouli L Lebrihi A Coppel Y Fguira LF Mathieu F 《Natural product research》2011,25(8):806-814
Thirty litres of fermentation broth was extracted from the newly isolated Streptomyces sp. strain TN17 and various separation and purification steps led to the isolation of three pure bioactive compounds (1-3). Compound 1: cyclo (L-Leu-L-Arg), a diketopiperazine 'DKP' derivative; 2: di-(2-ethylhexyl) phthalate, a phthalate derivative; and 3: cyclo 1-[2-(cyclopentanecarbonyl-3-phenyl-propionyl]-pyrrolidine-2-carboxylic acid (1-carbamoyl-propyl)-amide, a cyclic tetrapeptide derivative. The chemical structure of these three active compounds was established on the basis of spectroscopic studies (MS and NMR) and by comparison with data from the literature. According to our biological studies, the pure compounds (1-3) possess antibacterial and antifungal activities. 相似文献
96.
Ropartz D Bodet PE Przybylski C Gonnet F Daniel R Fer M Helbert W Bertrand D Rogniaux H 《Rapid communications in mass spectrometry : RCM》2011,25(14):2059-2070
Compared to other analytical methods, matrix-assisted laser desorption ionization mass spectrometry (MALDI-MS) presents several unique advantages for the structural characterization of degradation products of carbohydrates. Our final goal is to implement this technique as a high-throughput platform, with the aim of exploring natural bio-diversity to discover new carbohydrate depolymerizing enzymes. In this approach, a variety of carbohydrates will be used as enzymes substrates and MALDI-MS will be employed to monitor the oligosaccharides produced. One drawback of MALDI, however, is that the choice of the matrix is largely dependent on the chemical properties of the analyte. In this context, our objective in the present work was to find the smallest set of MALDI matrices able to detect chemically heterogeneous oligosaccharides. This was done through the performance evaluation of more than 40 MALDI matrices preparations. Homogeneity of analyte-matrix deposits was considered as a critical feature, especially since the final objective is to fully automate the analyses. Evaluation of the matrices was done by means of a rigorous statistical approach. Amongst all tested compounds, our work proposes the use of the DHB/DMA ionic matrix as the most generic matrix, for rapid detection of a variety of polysaccharides including neutral, anionic, methylated, sulfated, and acetylated compounds. The selected matrices were then used to screen crude bacterial incubation media for the detection of enzymatic degradation products. 相似文献
97.
Iski EV Johnston BF Florence AJ Sykes EC Urquhart AJ 《Chemical communications (Cambridge, England)》2011,47(34):9627-9629
High-resolution STM imaging of the structures formed by carbamazepine molecules adsorbed onto a pseudo-ordered carbamazepine monolayer on Au(111) shows the formation of previously unreported 1-dimensional supramolecular assemblies. 相似文献
98.
Morla A Poirier F Pons S Beaulieu C Charrier JP Ataman-Onal Y Gléhen O Jolivet M Choquet-Kastylevsky G 《Electrophoresis》2008,29(20):4158-4168
Proteomic approaches including high-resolution 2-DE are providing the tools needed to discover disease-associated biomarkers in complex biological samples. Although 2-DE is an extremely powerful approach to analyze the proteome, the separation of proteins with extreme molecular masses still remains an issue requiring improvement. Because high molecular mass (HMM) proteins larger than 150 kDa have already been observed to be differentially expressed in several pathologies such as cancer, we developed an original strategy to analyze this part of the proteome that is not easily separated by 2-DE in polyacrylamide gels. This strategy is based on the 2-DE separation of cyanogen bromide (CNBr) fragments of purified HMM protein fractions, and combines techniques including SEC fractionation, TCA precipitation, CNBr cleavage, 2-DE and MS analysis. The method was first tested on a model protein, the BSA. Preliminary results obtained using colonic tissues led to the identification of six HMM proteins with M(r) comprised between 163 and 533 kDa in their reduced state. These results demonstrated that our CNBr/2-DE approach should provide a powerful tool for identification of new biomarkers larger than 150 kDa. 相似文献
99.
Hnaien M Lagarde F Bausells J Errachid A Jaffrezic-Renault N 《Analytical and bioanalytical chemistry》2011,400(4):1083-1092
Trichloroethylene (TCE), a suspected human carcinogen, is one of the most common volatile groundwater contaminants. Many different
methodologies have already been developed for the determination of TCE and its degradation products in water, but most of
them are costly, time-consuming and require well-trained operators. In this work, a fast, sensitive and miniaturised whole
cell conductometric biosensor was developed for the determination of trichloroethylene. The biosensor assembly was prepared
by immobilising Pseudomonas putida F1 bacteria (PpF1) at the surface of gold interdigitated microelectrodes through a three-dimensional alkanethiol self-assembly
monolayer/carbon nanotube architecture functionalised with Pseudomonas antibodies. The biosensor response was linear from 0.07 to 100 μM of TCE (9–13,100 μg L−1). No significant loss of the enzymatic activity was observed after 5 weeks of storage at 4 °C in the M457 pH 7 defined medium
(two or three measurements per week). Ninety-two per cent of the initial signal still remained after 7 weeks. The biosensor
response to TCE was not significantly affected by cis-1,2-dichloroethylene and vinyl chloride and, in a limited way, by phenol. Toluene was the major interference found. The bacterial
biosensor was successfully applied to the determination of TCE in spiked groundwater samples and in six water samples collected
in an urban industrial site contaminated with TCE. Gas chromatography–mass spectrometric analysis of these samples confirmed
the biosensor measurements. 相似文献
100.
During recent decades, extensive industrialisation and farming associated with improper waste management policies have led
to the release of a wide range of toxic compounds into aquatic ecosystems, causing a rapid decrease of world freshwater resources
and thus requiring urgent implementation of suitable legislation to define water remediation and protection strategies. In
Europe, the Water Framework Directive aims to restore good qualitative and quantitative status to all water bodies by 2015.
To achieve that, extensive monitoring programmes will be required, calling for rapid, reliable and cost-effective analytical
methods for monitoring and toxicological impact assessment of water pollutants. In this context, whole cell biosensors appear
as excellent alternatives to or techniques complementary to conventional chemical methods. Cells are easy to cultivate and
manipulate, host many enzymes able to catalyse a wide range of biological reactions and can be coupled to various types of
transducers. In addition, they are able to provide information about the bioavailability and the toxicity of the pollutants
towards eukaryotic or prokaryotic cells. In this article, we present an overview of the use of whole cells, mainly bacteria,
yeasts and algae, as sensing elements in electrochemical biosensors with respect to their practical applications in water
quality monitoring, with particular emphasis on new trends and future perspectives. In contrast to optical detection, electrochemical
transduction is not sensitive to light, can be used for analysis of turbid samples and does not require labelling. In some
cases, it is also possible to achieve higher selectivities, even without cell modification, by operating at specific potentials
where interferences are limited. 相似文献