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1.
Summary Eicosapentaenoic acid (EPA) volumetric productivity from an outdoor chemostat culture ofPhaeodactylum tricornutum UTEX 640 in a 50-l tubular photobioreactor varies with dilution rate, reaching a maximum of 47.8 mg l–1 d–1 at D=0.36 d–1. Continuous culture at high dilution rates' is proposed as the most adequate operating mode to maximize polyunsaturated fatty acid production.  相似文献   
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Riboprinting was used to determine the relationships among strains belonging to 15 species of the genusKluyveromyces. The small subunit ribosomal RNA gene (SSU rDNA) was amplified using the Polymerase Chain Reaction (PCR) and subjected to a battery of nine restriction enzymes. Similarity coefficients between strains were calculated based on shared and unique restriction fragments. Cluster analysis revealed three major groups that generally correlated with previously reported relationships based on other molecular data. Variations in SSU rDNA restriction fragments may be used for differentiation of theKluyveromyces strains included in this study.The U.S. Government right to retain a non-exclusive, royalty free licence in and to any copyright is acknowledged.  相似文献   
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Although many reports have described the presence of inflammatory cells in chagasic lesions, the precise role(s) of these cells and whether their numbers in the lesions correlate with lesion severity are not known. In this work, we determined the numbers of mononuclear cells, neutrophils and eosinophils present in lesion sites of heart tissue sections from one acute and nine chronic chagasic patients. These numbers were independently recorded for five types of histologic patterns (HP) defined by the following characteristics: interstitial myocarditis with degeneration and necrosis of muscle fibers (HP I), interstitial myocarditis with preservation of muscle fibers (HP II), minimal or absent myocarditis with essentially preserved myocardium (HP III), interstitial fibrosis (HP IV), and myocytolysis (HP V). The largest numbers of inflammatory cells were found in HP I where substantial numbers of eosinophils were found. Eosinophils were frequently seen in areas showing HP I in the tissue sections from the patients with the most severe myocarditis (in terms of the high frequency of necrotic areas in HP I). Eosinophils were also seen in areas of HP III, i.e. in relatively preserved areas of tissue sections from patients displaying the most severe myocarditis, although in lesser numbers than found in HP I. The smallest numbers of inflammatory cells were seen in HP III, where the myocardium was essentially intact. Although significant numbers of inflammatory cells were seen in HP II and IV, eosinophils were either present in small numbers or absent, and there was no obvious correlation between the content of any of the monitored cell types and the overall intensity of myocarditis. The presence of relatively large proportions of eosinophils in tissue areas with HP I type of lesions would appear to implicate these cells in the production of chagasic heart lesions.  相似文献   
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Centromeric breaks and dissociation of Robertsonian translocations have been suggested to be the cause of a few cases of mosaicism. One possible explanation for dissociation could be that the point of reunion of the two acrocentrics would be a structurally fragile site. Mitomycin C (MMC) treatment of lymphocyte cultures from 6 patients having a Robertsonian translocation showed that in cases 1 and 2, who were already mosaics, MMC induced a statistically significant increase of the number of cells with the dissociated translocation. In the remaining cases a preferential centromeric break on the translocation was observed, indicating instability of the region. The relationship of monocentric and dicentric translocations, the viability of the cells resulting from the dissociation, and the clinical implications are discussed.  相似文献   
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An integrated process for the indoor production of 13C labelled PUFA from Phaeodactylum tricornutum is presented. The core of the process is a bubble column photobioreactor from which the exhaust gas from the reactor is returned to the culture by a low pressure compressor. To avoid accumulation of dissolved oxygen in the culture medium, the exhaust gas is bubbled through a sodium sulphite solution before returning it to the reactor. Carbon is removed from the medium before inoculating the alga, then labelled 13CO2 is injected for pH control and carbon supply. The reactor has been operated in semicontinuous mode at a dilution rate of 0.01 h–1, a biomass productivity of 0.1 g L–1 d–1 being obtained. Under this conditions both pH and dissolved oxygen were correctly controlled and the adequacy of the system for autotrophic production of labelled biomass was demonstrated. Analysis by GC-MS revealed that the fatty acids content of the biomass obtained was 10% d.wt., the content of eicosapentaenoic acid was 2.5% d.wt. All the fatty acids were labelled, more that 90% of the carbon present in these fatty acids was 13C. Element analysis of biomass and supernatant showed that 59.5% of injected carbon was assimilated into the biomass whereas 33% remained in the supernatant, and 7.5% remained undetected. Due to the high cost of 13CO2 different strategies for the optimisation of labelled carbon use are proposed.  相似文献   
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2,3,4,5-tetra-O-methyl-D-glucono-1,6-lactone has been prepared as a crystalline compound in acceptable yield by two different routes. An initial assay of copolymerization with L-lactide by ring-opening polymerization was carried out. The incorporation of the carbohydrate monomer into the polymer chain was about 2%.  相似文献   
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Dinoflagellates have proven extremely difficult to culture because they are inhibited by low‐level shear forces. Specific growth rate of the toxic dinoflagellate Protoceratium reticulatum was greatly decreased compared with static control culture by intermittent exposure to a turbulent hydrodynamic environment with a bulk average shear rate that was as low as 0.3 s?1. Hydrodynamic forces appeared to induce the production of reactive oxygen species (ROS) within the cells and this caused peroxidation of cellular lipids and ultimately cell damage. Exposure to damaging levels of shear rate correlated with the elevated level of lipoperoxides in the cells, but ROS levels measured directly by flow cytometry did not correlate with shear induced cell damage. This was apparently because the measured level of ROS could not distinguish between the ROS that are normally generated by photosynthesis and the additional ROS produced as a consequence of hydrodynamic shear forces. Continuously subjecting the cells to a bulk average shear rate value of about 0.3 s?1 for 24‐h caused an elevation in the levels of chlorophyll a, peridinin and dinoxanthin, as the cells apparently attempted to counter the damaging effects of shear fields by producing pigments that are potential antioxidants. In static culture, limitation of carbon dioxide produced a small but measureable increase in ROS. The addition of ascorbic acid (0.1 mM) to the culture medium resulted in a significant protective effect on lipid peroxidation, allowing cells to grow under damaging levels of shear rates. This confirmed the use of antioxidant additives as an efficient strategy to counter the damaging effects of turbulence in photobioreactors where shear sensitive dinoflagellates are cultivated. © 2009 American Institute of Chemical Engineers Biotechnol. Prog., 2009  相似文献   
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