64199 Results for: "Standard+di+tallio&"
Anti-CD39L4 Rabbit Polyclonal Antibody (Alexa Fluor® 680)
Supplier: Bioss
Uridine diphosphatase (UDPase) that promotes protein N-glycosylation and ATP level regulation. UDP hydrolysis promotes protein N-glycosylation and folding in the endoplasmic reticulum, as well as elevated ATP consumption in the cytosol via an ATP hydrolysis cycle. Together with CMPK1 and AK1, constitutes an ATP hydrolysis cycle that converts ATP to AMP and results in a compensatory increase in aerobic glycolysis. The nucleotide hydrolyzing preference is GDP > IDP > UDP, but not any other nucleoside di-, mono- or triphosphates, nor thiamine pyrophosphate. Plays a key role in the AKT1-PTEN signaling pathway by promoting glycolysis in proliferating cells in response to phosphoinositide 3-kinase (PI3K) signaling.
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Anti-ENTPD5 Rabbit Polyclonal Antibody (Alexa Fluor® 555)
Supplier: Bioss
Uridine diphosphatase (UDPase) that promotes protein N-glycosylation and ATP level regulation. UDP hydrolysis promotes protein N-glycosylation and folding in the endoplasmic reticulum, as well as elevated ATP consumption in the cytosol via an ATP hydrolysis cycle. Together with CMPK1 and AK1, constitutes an ATP hydrolysis cycle that converts ATP to AMP and results in a compensatory increase in aerobic glycolysis. The nucleotide hydrolyzing preference is GDP >IDP >UDP, but not any other nucleoside di-, mono- or triphosphates, nor thiamine pyrophosphate. Plays a key role in the AKT1-PTEN signaling pathway by promoting glycolysis in proliferating cells in response to phosphoinositide 3-kinase (PI3K) signaling.
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Anti-ENTPD5 Rabbit Polyclonal Antibody (Cy5®)
Supplier: Bioss
Uridine diphosphatase (UDPase) that promotes protein N-glycosylation and ATP level regulation. UDP hydrolysis promotes protein N-glycosylation and folding in the endoplasmic reticulum, as well as elevated ATP consumption in the cytosol via an ATP hydrolysis cycle. Together with CMPK1 and AK1, constitutes an ATP hydrolysis cycle that converts ATP to AMP and results in a compensatory increase in aerobic glycolysis. The nucleotide hydrolyzing preference is GDP >IDP >UDP, but not any other nucleoside di-, mono- or triphosphates, nor thiamine pyrophosphate. Plays a key role in the AKT1-PTEN signaling pathway by promoting glycolysis in proliferating cells in response to phosphoinositide 3-kinase (PI3K) signaling.
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Anti-ENTPD5 Rabbit Polyclonal Antibody (Alexa Fluor® 488)
Supplier: Bioss
Uridine diphosphatase (UDPase) that promotes protein N-glycosylation and ATP level regulation. UDP hydrolysis promotes protein N-glycosylation and folding in the endoplasmic reticulum, as well as elevated ATP consumption in the cytosol via an ATP hydrolysis cycle. Together with CMPK1 and AK1, constitutes an ATP hydrolysis cycle that converts ATP to AMP and results in a compensatory increase in aerobic glycolysis. The nucleotide hydrolyzing preference is GDP >IDP >UDP, but not any other nucleoside di-, mono- or triphosphates, nor thiamine pyrophosphate. Plays a key role in the AKT1-PTEN signaling pathway by promoting glycolysis in proliferating cells in response to phosphoinositide 3-kinase (PI3K) signaling.
Expand 1 Items
Anti-CD39L4 Rabbit Polyclonal Antibody (Alexa Fluor® 750)
Supplier: Bioss
Uridine diphosphatase (UDPase) that promotes protein N-glycosylation and ATP level regulation. UDP hydrolysis promotes protein N-glycosylation and folding in the endoplasmic reticulum, as well as elevated ATP consumption in the cytosol via an ATP hydrolysis cycle. Together with CMPK1 and AK1, constitutes an ATP hydrolysis cycle that converts ATP to AMP and results in a compensatory increase in aerobic glycolysis. The nucleotide hydrolyzing preference is GDP > IDP > UDP, but not any other nucleoside di-, mono- or triphosphates, nor thiamine pyrophosphate. Plays a key role in the AKT1-PTEN signaling pathway by promoting glycolysis in proliferating cells in response to phosphoinositide 3-kinase (PI3K) signaling.
Expand 1 Items
Anti-ENTPD5 Rabbit Polyclonal Antibody (Alexa Fluor® 647)
Supplier: Bioss
Uridine diphosphatase (UDPase) that promotes protein N-glycosylation and ATP level regulation. UDP hydrolysis promotes protein N-glycosylation and folding in the endoplasmic reticulum, as well as elevated ATP consumption in the cytosol via an ATP hydrolysis cycle. Together with CMPK1 and AK1, constitutes an ATP hydrolysis cycle that converts ATP to AMP and results in a compensatory increase in aerobic glycolysis. The nucleotide hydrolyzing preference is GDP >IDP >UDP, but not any other nucleoside di-, mono- or triphosphates, nor thiamine pyrophosphate. Plays a key role in the AKT1-PTEN signaling pathway by promoting glycolysis in proliferating cells in response to phosphoinositide 3-kinase (PI3K) signaling.
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Multicassettes for drug testing in urine
Supplier: SURESCREEN
The multicassette tests for up to 12 several drugs simultaneously, and is very easy to use. The urine sample is added to the sample well with the pipette that comes with the kit, and resuts are read at 3 minutes. Tests are individually wrapped in a foil pouch, to ensure the high-quality of the product is retained throughout the shelf-life.
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Anti-ENTPD5 Rabbit Polyclonal Antibody (HRP (Horseradish Peroxidase))
Supplier: Bioss
Uridine diphosphatase (UDPase) that promotes protein N-glycosylation and ATP level regulation. UDP hydrolysis promotes protein N-glycosylation and folding in the endoplasmic reticulum, as well as elevated ATP consumption in the cytosol via an ATP hydrolysis cycle. Together with CMPK1 and AK1, constitutes an ATP hydrolysis cycle that converts ATP to AMP and results in a compensatory increase in aerobic glycolysis. The nucleotide hydrolyzing preference is GDP >IDP >UDP, but not any other nucleoside di-, mono- or triphosphates, nor thiamine pyrophosphate. Plays a key role in the AKT1-PTEN signaling pathway by promoting glycolysis in proliferating cells in response to phosphoinositide 3-kinase (PI3K) signaling.
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Laboratory air filtration system, HALO®
Supplier: ERLAB CAPTAIRE
Ceiling mounted, laboratory grade filtration unit.
Please complete the quote request to enable us to assist you in finding the right unit for your application.
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Thallium ≥99.999% (metals basis), rods, Ø 12.7 mm (0.5 in)
Supplier: Thermo Fisher Scientific
Thallium ≥99.999% (metals basis), rods, Ø 12.7 mm (0.5 in)
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Thallium ≥99.99% (metals basis), rods, Ø 12.7 mm (0.5 in)
Supplier: Thermo Fisher Scientific
Thallium ≥99.99% (metals basis), rods, Ø 12.7 mm (0.5 in)
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Thallium(I) bromide, dry_ultra 99,998 Metals basis
Supplier: Thermo Fisher Scientific
Thallium(I) bromide, dry_ultra 99,998 Metals basis
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Universal fuse lockout device
Supplier: Brady
This fuse lockout device has been designed to prevent the unintended re-energisation of an energy source through a fuse. The device fits most fuse holders between 20 Amps and 400 Amps.
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Thallium(I) chloride ≥99.999% (metals basis)
Supplier: Thermo Fisher Scientific
Thallium(I) chloride ≥99.999% (metals basis)
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Thallium ≥99.99% (metals basis), granules ≤ 6 mm (0.2 in)
Supplier: Thermo Fisher Scientific
Thallium ≥99.99% (metals basis), granules ≤ 6 mm (0.2 in)
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Thallium(I) nitrate 99.99% (trace metals basis)
Supplier: Thermo Fisher Scientific
Thallium(I) nitrate 99.99% (trace metals basis)
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Thallium(I) bromide 99,999 Metals basis
Supplier: Thermo Fisher Scientific
Thallium(I) bromide 99,999 Metals basis
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Thallium(I) iodide ≥99.9995% (metals basis), Puratronic®
Supplier: Thermo Fisher Scientific
Thallium(I) iodide ≥99.9995% (metals basis), Puratronic®
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Thallium(I) chloride, ultra dry ≥99.999% (metals basis)
Supplier: Thermo Fisher Scientific
Thallium(I) chloride, ultra dry ≥99.999% (metals basis)
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Thallium(I) chloride 99%
Supplier: Thermo Fisher Scientific
Thallium(I) chloride 99%
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Thallium(I) nitrate 99.5%
Supplier: Thermo Fisher Scientific
Thallium(I) nitrate 99.5%
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H. influenzae recombinant NAD Nucleotidase (from E. coli)
Supplier: ProSci Inc.
NadN (NAD nucleotidase) is a periplasmic enzyme from Haemophilus influenzae, a major pathogen of the respiratory tract in humans that has developed the capability to exploit host NAD(P) for its nicotinamide dinucleotide requirement. NadN plays a central role by degrading NAD into adenosine and NR (nicotinamide riboside), NMN to nicotinamide riboside and AMP to adenosine. It shows a broad substrate specificity, recognising either mono- or di-nucleotide nicotinamides and different adenosine phosphates with a maximal activity on 5'-adenosine monophosphate. It can be used as an economically alternative to produce NR (nicotinamide riboside). Catalytic activity: NAD=AMP + NMN=Ade+NR+PPi | AMP=Ade+Pi | NMN=NR+Pi.
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Thallium(I) acetate 99%
Supplier: Thermo Fisher Scientific
Thallium(I) acetate 99%
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Thallium(I) iodide, ultra dry ≥99.999% (metals basis)
Supplier: Thermo Fisher Scientific
Thallium(I) iodide, ultra dry ≥99.999% (metals basis)
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Thallium(I) chloride, anhydrous ≥99.999%, powder, Optipur®
Supplier: Merck
Optipur® materials are inorganic compounds, primarily metal halides, and available as anhydrous powders, beads or pieces for immediate usability and easy handling. They are of the highest purity, and specifically suited for the production of single crystals, used in demanding optical applications or scintillators, for example medical imaging and radiation detection.
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Thallium(I) acetate ≥99.995% (metals basis)
Supplier: Thermo Fisher Scientific
Thallium(I) acetate ≥99.995% (metals basis)
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Thallium(I) bromide, anhydrous ≥99.999%, powder, Optipur®
Supplier: Merck
Optipur® materials are inorganic compounds, primarily metal halides, and available as anhydrous powders, beads or pieces for immediate usability and easy handling. They are of the highest purity, and specifically suited for the production of single crystals, used in demanding optical applications or scintillators, for example medical imaging and radiation detection.
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AMP (2-Amino-2-methylpropanol) for synthesis, Sigma-Aldrich®
Supplier: Merck
AMP (2-Amino-2-methylpropanol) for synthesis, Sigma-Aldrich®
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Thallium(I) iodide, anhydrous ≥99.999%, powder, Optipur®
Supplier: Merck
Optipur® materials are inorganic compounds, primarily metal halides, and available as anhydrous powders, beads or pieces for immediate usability and easy handling. They are of the highest purity, and specifically suited for the production of single crystals, used in demanding optical applications or scintillators, for example medical imaging and radiation detection.