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PubMed · 15419201

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C J WITTON. 1950. Detergents.. https://pubmed.ncbi.nlm.nih.gov/15419201/

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Stability of A/Duck/Ukrainae/63 (H3N8) influenza virus intracellular NP oligomers was studied using reducing agents, denaturants, detergents, salts, various pH and a range of temperatures. The results obtained indicate that influenza virus NP oligomers are noncovalently stabilized, and NP subunits are not linked by disulfide bonds. NP oligomers are thermostable and SDS resistant. Urea and high ionic strength also do not dissociate avian influenza virus intracellular NP oligomers. However, NP oligomers are completely dissociated at pH < 5. The data obtained suggest that hydrophobic bonds together with the electrostatic interactions take part in the stabilization of compact conformation of influenza virus NP oligomers. It was also shown that intrachain disulfides revealed in nascent NPs are reduced in NP subunits of NP oligomers, and this probably contributes to the stability and compactness of the oligomers.

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Peptide patterns of laser dissected human trophoblasts analyzed by matrix-assisted laser desorption/ionisation-time of flight mass spectrometry.

This study describes the first promising steps in the comparison of peptide patterns of laser capture microdissected trophoblast cells obtained from frozen tissue sections in relative low numbers, approximately 125 cells. Trophoblasts were collected by laser capture microdissection from a terme human placenta and dissolved in detergents, sonified, and digested with trypsin. The resulting peptide mixtures were directly analyzed by matrix-assisted laser desorption/ionisation-time of flight mass spectrometry. Using this approach specific peptide patterns that consist on average of approximately 35 peptide peaks for trophoblast cells, and surrounding villous stroma cells could be obtained. From the results it was concluded that trophoblast and surrounding villous stroma cells show exclusive discriminating peptide patterns. In the future this method is potentially suitable for finding specific peptides and identification of proteins that are related to the pathogenesis of trophoblast pregnancy diseases such as preeclampsia.

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Effects of nonaqueous phase liquids on the washing of soil in the presence of nonionic surfactants.

The removal of malathion from soil by surfactant washing was investigated under various physical-chemical states of the malathion. Three distinctive phases (without nonaqueous phase liquids (NAPL), with NAPL, and the transitional zone of NAPL) were found to be important for a better understanding of the washing process. When there is no NAPL in the system, the washing process is less dependent on the surfactant dose if the applied surfactant concentration is above the critical micelle concentration. The existence of a sorption site boundary, which for the determination of different washing mechanisms, was identified. In the presence of NAPL, the washing performance is generally independent of the organic content (f(oc)) of the soils but is dominated by the concentration of the surfactant used, due to the lesser resistance for mass transfer in NAPL. If the formation of NAPL is marginal, a two-stage washing pattern is observed, which has been quantified by the term 'unit extraction'. For this two-stage system, a mathematical model was derived based on the observed initial unit extraction and final extraction capacity, which eventually resulted in a practical design equation with the use of primary parameters such as f(oc) and surfactant dose.

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