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membrane size
70 mm
品質等級
無菌
sterile
儲存期限
limited shelf life, expiry date on the label
儲存條件
protect from light
技術
microbe id | specific enzyme detection: suitable
應用
food and beverages
microbiology
儲存溫度
2-8°C
適合性
Bacillus spp.
Escherichia coli
Listeria spp.
Salmonella spp.
Shigella spp.
Staphylococcus spp.
coliforms
enterovirulent E. coli (EEC)
相关类别
一般說明
Universal Food pathogen ID Membranes are substrate-carrying membranes used for rapid identification and differentiation of food pathogens through characteristic color reactions by placing on the agar surface post-incubation. The membranes contain chromogenic substrates such as ONPG, X-Gal, or X-Glu, and other substrates and indicators, which serve as the basis for microbe differentiation by color. The target organisms possess enzyme systems that metabolize the substrates in the membrane, leading to a change of color. The colors can be visually detected on the membrane. This indicates microbial enzymatic activity which serves to identify the genus and species. This economical, confirmatory and rapid identification method is suitable for microorganisms from various food, dairy, fish, and meat products.
應用
Universal Food pathogen ID Membrane is recommended for detection of food pathogens such as E. coli, E. coli O157:H7, Staphylococcus aureus, Salmonella, Bacillus, Listeria, and Shigella species, etc. from various food, dairy, fish, and meat products. They find their application in various sectors such as the water, food, and dairy industry.
分析報告
Escherichia coli (25922)purpleStaphylococcus aureus (25923)golden yellowSalmonella Typhimurium (14028)colorlessBacillus cereus (10876)light green (big)Listeria monoyctogenes (19111)blue- greenEscherichia coli O157:H7 (NCTC 12900)purple pinkShigella flexneri (12022)colorless
儲存類別代碼
11 - Combustible Solids
水污染物質分類(WGK)
WGK 3
閃點(°F)
Not applicable
閃點(°C)
Not applicable
Current biology : CB, 27(21), 3278-3287 (2017-10-24)
The C
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Biological phase transitions form membrane-less organelles that generate distinct cellular environments. How molecules are partitioned between these compartments and the surrounding cellular space and the functional consequence of this localization is not well understood. Here, we report the localization of
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Apical-basal polarity is a common trait that underlies epithelial function. Although the asymmetric distribution of cortical polarity proteins works in a functioning equilibrium, it also retains plasticity to accommodate cell division, during which the basolateral determinant Lgl is released from
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Perceptual decisions require the accumulation of sensory information to a response criterion. Most accounts of how the brain performs this process of temporal integration have focused on evolving patterns of spiking activity. We report that subthreshold changes in membrane voltage
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