The 10-ml Isolator system (E.I. du Pont de Nemours & Co., Inc., Wilmington, Del.) was compared with the BACTEC 16A-17A nonradiometric resin system (Johnston Laboratories, Inc., Towson, Md.) for isolation of organisms from 6,839 paired blood cultures. Equal volumes of blood (6 to 10 ml for each Isolator and 3 to 5 ml for each BACTEC bottle) were cultured in parallel in the two systems, and 600 isolates that were judged to be clinically significant by chart review were recovered during the study. The BACTEC resin system detected 510 (85%) and the Isolator system detected 435 (72%) of the clinically significant isolates (P less than 0.001). Of 45 polymicrobial blood cultures, the BACTEC system detected 32 (71%) and the Isolator system detected 21 (47%) (P less than 0.05). Of 253 gram-negative bacilli isolated during the study, 30% were detected only in the BACTEC system and 16% were detected only in the Isolator system (P less than 0.001), and of 56 nonfermentative or fastidious gram-negative bacilli detected, 46% were recovered only in the BACTEC system, while 14% were detected only in the Isolator system (P less than 0.001). Of 86 streptococci isolated during the study, 30% were detected only in the BACTEC system, and 4% were detected only in the Isolator system (P less than 0.001). Recoveries of anaerobic bacteria, staphylococci, and yeasts were equivalent in the two systems. Organisms judged to be contaminants were detected in approximately 1% of the cultures in each system. The results suggest that use of resin media renders the BACTEC nonradiometric system equivalent or superior to the Isolator system for detection of clinically significant organisms in blood cultures.
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http://dx.doi.org/10.1128/jcm.28.9.1925-1927.1990 | DOI Listing |
Angew Chem Int Ed Engl
December 2024
Northwestern Polytechnical University, Department of Applied Chemistry, School of Science, Youyi Xilu 127#, 710072, Xi'an, CHINA.
Limited by the two mutually exclusive physicochemical processes of separation and recombination of photogenerated carriers, achieving photoluminescence and photocatalysis simultaneously is extremely challenging but essential for ever-growing complex issues and specialized scenarios. Here we proposed a biomimetic isolation-conduction strategy induced by an arene-perfluoroarene (A-P) interaction for enabling photoluminescence and photocatalytic hydrogen evolution reaction (HER) activity in the co-assembly of aromatic monomers and octafluoronapthalene (OFN). Inspired by the isolation-conduction effect of periodic isolation of myelin sheaths on the axons of vertebrate nerve fibers by node of Ranvier, we use OFN as a molecular isolator embedded in the aromatic monomers array to block the singlet-to-triplet pathway, while the enlarged intermolecular dipoles resulting from the A-P interactions facilitate the conduction of photogenerated carriers in the isolated regions.
View Article and Find Full Text PDFJ Thorac Cardiovasc Surg
December 2024
Department of Surgery, Division of Cardiac Surgery, Johns Hopkins University, Baltimore, MD.
PDA J Pharm Sci Technol
December 2024
Groupe Icare, 6 Rue Emile Duclaux, 63360 Saint-Beauzire, France.
Isolators play a critical role in protecting both the product and the environment, as well as the personnel involved in pharmaceutical manufacturing, analytical procedures, and sterility testing. Gloves attached to the windows and doors of the isolator are designed to facilitate intervention, testing, and safety. However, due to their inherent characteristics and vulnerability to puncture or loss of integrity, they are recognized as a significant potential source of contamination.
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