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31.
Recent Studies on Lipids of Cereal Starches. Part 2. Lipids of Various Types of Starch and their Bond to Amylose. By means of butanol/water (65 : 35) the lipids have been extracted from various cereal starches at 70°C. 1.0 respectively 1.3 %. lipids could be obtained from barley resp. oat starch. In every case lysolecithine was the main part (50–60 %). Apart from that, other lysophosphatides as well as free fatty acids were isolated and identified. The lipids bound to starch remain unchanged for a longer term. Apparently, the inclusion into the amylose helix acts as a protection against autoxidation. The amylose-lysolecithine-inclusion compound was prepared in pure form with a lysolecithine content of 10.2%. Processes for the determination of amylose so far proposed do not take into consideration the special bonding circumstances of lipids in cereal starches. Thus, amylose contents having been determined by these processes are too low. 相似文献
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H. G. O. Becker R. Ebisch G. Israel G. Kroha W. Kroha O. Brede R. Mehnert 《Advanced Synthesis \u0026amp; Catalysis》1977,319(1):98-116
Kinetics and Mechanism of Aryldiazonium Salt Photolysis in Methanol. Determination of Absolute Rate Constants of Some Reaction Steps For benzene diazonium tetrafluoroborate and some p-substituted derivatives, the following values are determined:
- velocity constants for the photochemical electron transfer from pyrene and benzanthracene to aryl diazonium salts in acetonitrile solution (determination by quenching the donor fluorescence).
- velocity constants for electron transfer under the condition of pulse radiolysis in tert.-butanol-water solution;
- quantum yields and product composition (ArOMe, ArF and ArH, respectively) for the photolyses in methanol in the presence of varying concentrations of 2-methyl-2-nitroso-propane as a quencher of the thermal chain reaction.
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Tom Schreiner Lisa Allnoch Georg Beythien Katarzyna Marek Kathrin Becker Dirk Schaudien Stephanie Stanelle-Bertram Berfin Schaumburg Nancy Mounogou Kouassi Sebastian Beck Martin Zickler Gülsah Gabriel Wolfgang Baumgrtner Federico Armando Malgorzata Ciurkiewicz 《International journal of molecular sciences》2022,23(9)
Similar to many other respiratory viruses, SARS-CoV-2 targets the ciliated cells of the respiratory epithelium and compromises mucociliary clearance, thereby facilitating spread to the lungs and paving the way for secondary infections. A detailed understanding of mechanism involved in ciliary loss and subsequent regeneration is crucial to assess the possible long-term consequences of COVID-19. The aim of this study was to characterize the sequence of histological and ultrastructural changes observed in the ciliated epithelium during and after SARS-CoV-2 infection in the golden Syrian hamster model. We show that acute infection induces a severe, transient loss of cilia, which is, at least in part, caused by cilia internalization. Internalized cilia colocalize with membrane invaginations, facilitating virus entry into the cell. Infection also results in a progressive decline in cells expressing the regulator of ciliogenesis FOXJ1, which persists beyond virus clearance and the termination of inflammatory changes. Ciliary loss triggers the mobilization of p73+ and CK14+ basal cells, which ceases after regeneration of the cilia. Although ciliation is restored after two weeks despite the lack of FOXJ1, an increased frequency of cilia with ultrastructural alterations indicative of secondary ciliary dyskinesia is observed. In summary, the work provides new insights into SARS-CoV-2 pathogenesis and expands our understanding of virally induced damage to defense mechanisms in the conducting airways. 相似文献
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A high-yielding fluorination of (triphos)Pt-R(+) has been achieved using an array of F(+) sources, with XeF(2) yielding R-F in minutes. The C-F coupling proved to be a stereoretentive process that proceeds via a concerted reductive elimination from a putative dicationic Pt(IV) center. The larger the steric congestion of the (triphos)Pt-C(sp3) (+) complexes, the more efficient the fluorination, seemingly a result of sterically accelerated C-F reductive elimination along with simultaneous deceleration of its competing processes (β-H elimination). 相似文献
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Y. D. Zhou C. R. Becker Y. Selamet Y. Chang R. Ashokan R. T. Boreiko T. Aoki David J. Smith A. L. Betz S. Sivananthan 《Journal of Electronic Materials》2003,32(7):608-614
HgTe/Hg0.05Cd0.95Te superlattices (SLs) were grown on (112)B oriented Cd0.96Zn0.04 Te substrates using molecular beam epitaxy (MBE). The SLs, consisting of 100 periods of 80-Å-thick HgTe wells alternating with 77-Å-thick Hg0.05Cd0.95Te barriers, were designed to operate as detectors in the far-infrared (FIR) region. Infrared absorption spectroscopy, high-resolution transmission electron microscopy (TEM), Hall effect measurements, and x-ray diffraction were used to characterize the superlattice layers. A series of annealing experiments were initiated to quantify the temperature-dependent interdiffusion of the HgTe wells and Hg0.05Cd0.95Te barriers and consequently their degradation, which shifts the absorption edges of the SLs to higher energies, since a high-temperature ex situ anneal is normally required in order to produce the p-type material required for a photovoltaic detector. Results from infrared absorption spectroscopy, TEM, and Hall effect measurements for the annealed samples are presented. A FIR SLs single-element photoconductive (PC) device was designed and fabricated. Both material characterization and device testing have established the applicability of the HgTe/Hg0.05Cd0.95Te SLs for the FIR region. 相似文献