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排序方式: 共有192条查询结果,搜索用时 15 毫秒
31.
Identification of staphylococci and dominant lactic acid bacteria in spontaneously fermented Swiss meat products using PCR-RFLP 总被引:1,自引:0,他引:1
Pathogenic, spoilage, and technologically important microorganisms were monitored in 21 spontaneously fermented Swiss meat products manufactured with meat from wildlife or animals grown in natural habitat. Thereby, PCR-restriction fragment length polymorphism (RFLP) on rpoB and 16S rRNA gene sequences provided a powerful tool for fast and accurate identification of the main microbial population. Lactobacillus sakei and Lactobacillus curvatus dominated in fermented meat products followed by Staphylococcus species, which constituted 88.2% of all Gram-positive, catalase-positive cocci (GCC+) with cell counts varying from 2.6 to 7.0 log cfu/g during maturation. Staphylococcus equorum was prevalent in frequency and cell counts during maturation (18.0%; 5.0-7.3 log cfu/g) and in the end products (28.4%; 1.8-6.2 log cfu/g) implicating a new presumptive starter species for meat fermentation. Nine out of 14 end products indicated safety risks to consumers due to the high incidence of Staphylococcus saprophyticus or Staphylococcus epidermidis combined with cell counts of 7.4 and 4.9 log cfu/g, respectively. This fact was supported by the detection of Staphylococcus aureus and Enterobacteriaceae in ready-to-eat products strongly exceeding the tolerable limit of 2 log cfu/g. Spontaneously fermented meat products produced from wildlife or animals grown in natural habitats not only gave rise to hygienic and safety concerns but also provided new presumptive starter strains. 相似文献
32.
Lea Melzener Karin E Verzijden A Jasmin Buijs Mark J Post Joshua E Flack 《Journal of the science of food and agriculture》2021,101(1):7-14
Cultured meat is an emerging technology with the potential to solve huge challenges related to the environmental, ethical, and health implications of conventional meat production. Establishing the basic science of cultured meat has been the primary focus of the last decade but it is now feasible that cultured meat products will enter the market within the next 3 to 4 years. This proximity to market introduction demands an evaluation of aspects of the cultured meat production process that have not yet been outlined or discussed in significant detail. For example, one technological approach for the production of cultured meat uses adult muscle stem cells, the limited proliferative capacity of which necessitates repeated collection of tissue samples via biopsies of living donor animals. The selection of donor animals and the details of biopsy processes must be optimized, as this is a key bottleneck in the cultured meat production process. The number of stem cells harvested from a biopsy, together with their proliferative capacity, determines a ‘multiplicity factor’ achieved by a cultured meat production process, thus dictating the reduction in number of animals required to produce a given quantity of meat. This article considers potential scenarios for these critical upstream steps, focusing on the production of cultured beef as an example. Considerations related to donor selection and details of the biopsy process are discussed in detail. The practicalities of various scenarios for cultured beef production, the health of donor animals, and regulatory issues associated with the safety of cultured meat for consumers are also considered. © 2020 The Authors. Journal of The Science of Food and Agriculture published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry. 相似文献
33.
Mubarak A. Khan M. Masudul Hassan Jasmin Ara A. I. Mustafa 《Polymer-Plastics Technology and Engineering》2013,52(5):447-453
The sisal fiber (Agavae sisalana) was grafted with methacrylonitrile (MAN) under UV radiation in order to modify its mechanical and degradable properties. A number of MAN solutions of different concentrations in methanol (MeOH) along with photoinitiator Darocur-2959 were prepared. The soaking time, radiation dose and monomer concentration were optimized. Sisal fiber soaked for 60 min in 50% MAN and irradiated at 8th UV pass achieved highest values of tensile properties like tensile strength (TS = 140.2 MPa), and elongation at break factor (Ef = 8) with 8% polymer loading (PL). To further improve the properties of sisal fiber, a number of additives (1%) such as urea (U), polyvinylpyrrolidone (PNVP), tripropelene glycol diacrylate (TPGDA), hexanediol diacrylate (HDDA), trimethyl propane triacrylate (TMPTA), ethylene glycol dimethacrylate (EGDMA) were used in the 50% MAN formulation to graft at the optimized condition. Among the additives used, urea has significantly influenced the PL (9%), TS (190 MPa), and Ef (9) values of the treated sisal fiber. Water uptake and accelerated weathering test were also performed. 相似文献
34.
Jasmin Jung Siegfried Weisenburger Sahradha Albert Daniel F. Gilbert Oliver Friedrich Volker Eulenburg Johannes Kornhuber Teja W. Groemer 《Microscopy research and technique》2013,76(8):835-843
The plethora of available scientific cameras of different types challenges the biologically oriented experimenter when picking the appropriate camera for his experiment. In this study, we chose to investigate camera performances in a typical nonsingle molecule situation in life sciences, that is, quantitative measurements of fluorescence intensity changes from video data with typically skewed intensity distributions. Here, intensity profile dynamics of pH‐sensors upon triggered changes of pH‐environments in living cells served as a model system. The following camera types were tested: sCMOS, CCD (scientific and nonscientific) and EM‐CCD (back‐ and front‐illuminated). We found that although the EM‐CCD cameras achieved the best absolute spatial SNR (signal‐to‐noise ratio) values, the sCMOS was at least of equal performance when the spatial SNR was related to the effective dynamic range, and it was superior in terms of temporal SNR. In the measurements of triggered intensity changes, the sCMOS camera had the advantage that it used the smallest fraction of its dynamic range when depicting intensity changes, and thus featured the best SNR at full usage of its dynamic range. Microsc. Res. Tech. 76:835–843, 2013. © 2013 Wiley Periodicals, Inc. 相似文献
35.
Séverine Goscinny Hermann Unterluggauer Jasmin Aldrian Vincent Hanot Sonja Masselter 《Food Analytical Methods》2012,5(5):1177-1185
A straightforward analytical method has been developed for the determination of glyphosate and aminomethylphosphonic acid (AMPA), its major metabolite in cereals. This method entails a rapid extraction and derivatization with 9-fluorenylmethyl chloroformate followed by separation with a conventional reversed-phase rapid chromatography used in daily routine analysis and detection by electrospray ionization tandem mass spectrometry. To overcome matrix effects and compensate for any analyte losses during sample treatment, an isotopic dilution approach was used. Since 2010, the monitoring of cereals for the widely used herbicide glyphosate is obligatory to all European Union (EU)-member states, laid down in Commission Regulation (EC) No. 1213/2008. Hence, there is definitively a need for a reliable and easy-to-handle analytical method for monitoring of this compound. The proposed method can be run without having to make time-consuming changes on the equipment used for daily routine analysis. The analytical performance of the method was evaluated according to SANCO/10684/2009 criteria and demonstrated that this method is rugged and cost-effective, therefore suitable for monitoring purposes as well as legislative enforcements within the EU. The apparent recoveries of both analytes were between 97% and 113% with relative standard deviations less than 20%. The limits of quantification of glyphosate and AMPA were 0.02 mg/kg in cereal matrices. Finally, the accuracy of the method was assessed by analyzing a proficiency test material which was available from a previous round (EUPT-C4). 相似文献
36.
37.
Jasmin Portelinha Prof. Alfredo M. Angeles-Boza 《Chembiochem : a European journal of chemical biology》2021,22(9):1646-1655
Bacterial infections in cystic fibrosis (CF) patients are an emerging health issue and lead to a premature death. CF is a hereditary disease that creates a thick mucus in the lungs that is prone to bacterial biofilm formation, specifically Pseudomonas aeruginosa biofilms. These biofilms are very difficult to treat because many of them have antibiotic resistance that is worsened by the presence of extracellular DNA (eDNA). eDNA helps to stabilize biofilms and can bind antimicrobial compounds to lessen their effects. The metallo-antimicrobial peptide Gaduscidin-1 (Gad-1) eradicates established P. aeruginosa biofilms through a combination of modes of action that includes nuclease activity that can cleave eDNA in biofilms. In addition, Gad-1 exhibits synergistic activity when used with the antibiotics kanamycin and ciprofloxacin, thus making Gad-1 a new lead compound for the potential treatment of bacterial biofilms in CF patients. 相似文献
38.
Kai Yuan Huang Tomáš Hlásek Devendra Kumar Namburi Anthony R. Dennis Yunhua Shi Mark D. Ainslie Jasmin V. J. Congreve Vladimir Plecháček Jan Plecháček David A. Cardwell John H. Durrell 《Journal of the American Ceramic Society》2021,104(12):6309-6318
The intrinsic mechanical properties of single-grain RE-Ba-Cu-O bulk high-temperature superconductors can be improved by employing a thin-wall geometry. This is where the samples are melt-processed with a predefined network of artificial holes to decrease the effective wall thickness. In this study, the tensile strengths of thin-wall YBCO disks were determined using the Brazilian test at room temperature. Compared with conventional single grain YBCO disks, the thin-wall YBCO disks displayed an average tensile strength that is 93% higher when the holes were filled with Stycast epoxy resin. This implies a thin-wall sample should, in theory, be able to sustain a trapped field that is 39% higher without exceeding the mechanical limit of the sample. High-field magnetization experiments were performed by applying magnetization fields of up to 11.5 T, specifically to break the samples in order to verify the effect of increased mechanical strength (and improved cooling) on the ability of bulk (RE)BCO to trap field successfully. The standard YBCO sample failed when it was magnetized with a field of 10 T at 35 K, suffering permanent damage. As a result, the standard sample could only trap a maximum surface field of 7.6 T without failure. On the other hand, the thin-wall YBCO sample survived all magnetization cycles, including a maximum magnetization field of 11.5 T at 35 K, demonstrating a greater intrinsic ability to withstand significantly higher electromagnetic stresses. By subsequently field-cooling the thin-wall sample with 11 T at 30 K, a surface field of 8.8 T was trapped successfully without requiring any external ring reinforcement. 相似文献
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