4256 Results for: "5-Bromo-2-fluoro-4-methylphenyl+trifluoromethanesulphonate&pageNo=64"
Scoops
Supplier: LAMAPLAST
These scoops are made of high density PE. Ideal for use in food applications.
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2,3,4',6-Tetrachlorobiphenyl (PCB No. 64)
Supplier: LGC Standards PROMOCHEM
2,3,4',6-Tetrachlorobiphenyl (PCB No. 64)
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N-(3-Triethylammoniumpropyl)-4-(6-(4-(diethylamino)phenyl)hexatrienyl)pyridinium dibromide (MM 4-64)
Supplier: AAT BIOQUEST
MM 4-64 (FM 4-64) is the abbreviation of our Membrane Marker 4-64, chemically called N-(3-triethylammoniumpropyl)-4-(6-(4-(diethylamino)phenyl)hexatrienyl)pyridinium dibromide.
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N-(3-Triethylammoniumpropyl)-4-(6-(4-(diethylamino)phenyl)hexatrienyl)pyridinium dibromide (MM 4-64) ≥90% (by HPLC)
Supplier: ENZO LIFE SCIENCES
Neuronal and autophagy detection in yeast detection.
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Poloxamer 184 (Pluronic® L-64, Synperonic® L64) surfactant
Supplier: Spectrum Chemical
Poloxamer 184, surfactant is a nonionic triblock copolymer.
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E-64
Supplier: Apollo Scientific
E-64 is an irreversible inhibitor of different cysteine proteases
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E-64
Supplier: G-Biosciences
E-64 is an irreversible inhibitor of cysteine proteases. It interacts with the Sn subsites of proteases but has no action on cysteine residues in other proteins.
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Hydrazine hydrate 100% (∼64% w/w N₂H₄)
Supplier: Thermo Fisher Scientific
Hydrazine hydrate 100% (∼64% w/w N₂H₄)
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SynaptoRed™ C2 ≥95% (by HPLC), Sigma-Aldrich®
Supplier: SIGMA ALDRICH MICROSCOPY
SynaptoRed™ C2 has been used for propidium iodide (PI) blockage.
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Calcium stearate (6,4 - 7,4% Ca), powder
Supplier: Thermo Fisher Scientific
Calcium stearate (6,4 - 7,4% Ca), powder
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Anti-CstF-64 Rabbit Polyclonal Antibody
Supplier: Bioss
Polyadenylation of mRNA precursors is a two-step reaction that requires multiple protein factors. The first step, endonucleolytic cleavage of polyadenylation substrates, requires CstF (cleavage stimulation factor), a heterotrimer that is composed of three distinct subunits. CstF-64 contains an RNA binding domain and is responsible for the RNA binding activity of CstF. CstF-64 is expressed in all somatic cells and in pre- and postmeiotic, but not meiotic, germ cells. However, a large variant of CstF-64, called t CstF-64, is abundantly expressed in meiotic and postmeiotic cells in the testis and to a lesser extent in the brain, and promotes the germ cell pattern of polyadenylation. The gene encoding CstF-64 (designated CSTF2) maps to the X chromosome, whereas t CstF-64 is encoded by an autosomal gene. The increase in CstF-64 concentration during B cell activation switches IgM heavy chain mRNA expression from membrane-bound to secreted forms, suggesting that CstF-64 plays a key role in regulating IgM heavy chain expression during B cell differentiation.
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Potassium perrhenate (64% Re) ≥99% (metals basis)
Supplier: Thermo Fisher Scientific
Potassium perrhenate (64% Re) ≥99% (metals basis)
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Tantalum ≥99.95% (metals basis), rods, Ø 6.4 mm (0.25 in)
Supplier: Thermo Fisher Scientific
Tantalum ≥99.95% (metals basis), rods, Ø 6.4 mm (0.25 in)
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Molybdenum ≥99.95% (metals basis), rods, Ø 6.4 mm (0.25 in)
Supplier: Thermo Fisher Scientific
Molybdenum ≥99.95% (metals basis), rods, Ø 6.4 mm (0.25 in)
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Boron nitride, rods, Length: 300 mm, Ø 6.4 mm
Supplier: Thermo Fisher Scientific
Boron nitride, rods, Length: 300 mm, Ø 6.4 mm
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Titanium ≥99.99% (metals basis), rods, Ø 6.4 mm (0.25 in)
Supplier: Thermo Fisher Scientific
Titanium ≥99.99% (metals basis), rods, Ø 6.4 mm (0.25 in)
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Sodium sulphide hydrate 60 - 64%, scales, extra pure
Supplier: Thermo Fisher Scientific
Sodium sulphide hydrate 60 - 64%, scales, Extra Pure
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Anti-CstF-64 Rabbit Polyclonal Antibody [clone: R46]
Supplier: Bioworld Technology
Synthetic peptide, corresponding to amino acids N-terminus of Human CstF-64.
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Titanium ≥99.7% (metals basis), rods, Ø 6.4 mm (0.25 in)
Supplier: Thermo Fisher Scientific
Titanium ≥99.7% (metals basis), rods, Ø 6.4 mm (0.25 in)
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Anti-CstF-64 Rabbit Polyclonal Antibody (Alexa Fluor® 680)
Supplier: Bioss
Polyadenylation of mRNA precursors is a two-step reaction that requires multiple protein factors. The first step, endonucleolytic cleavage of polyadenylation substrates, requires CstF (cleavage stimulation factor), a heterotrimer that is composed of three distinct subunits. CstF-64 contains an RNA binding domain and is responsible for the RNA binding activity of CstF. CstF-64 is expressed in all somatic cells and in pre- and postmeiotic, but not meiotic, germ cells. However, a large variant of CstF-64, called t CstF-64, is abundantly expressed in meiotic and postmeiotic cells in the testis and to a lesser extent in the brain, and promotes the germ cell pattern of polyadenylation. The gene encoding CstF-64 (designated CSTF2) maps to the X chromosome, whereas t CstF-64 is encoded by an autosomal gene. The increase in CstF-64 concentration during B cell activation switches IgM heavy chain mRNA expression from membrane-bound to secreted forms, suggesting that CstF-64 plays a key role in regulating IgM heavy chain expression during B cell differentiation.
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SynaptoRed™ reagent ≥95% (by HPLC), Calbiochem®, Sigma-Aldrich®
Supplier: Merck Millipore (Calbiochem)
A lipophilic, water-soluble styrylpyridinium red fluoroprobe that is useful for staining active recycling synaptic vesicles.
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Anti-CstF-64 Rabbit Polyclonal Antibody (Alexa Fluor® 750)
Supplier: Bioss
Polyadenylation of mRNA precursors is a two-step reaction that requires multiple protein factors. The first step, endonucleolytic cleavage of polyadenylation substrates, requires CstF (cleavage stimulation factor), a heterotrimer that is composed of three distinct subunits. CstF-64 contains an RNA binding domain and is responsible for the RNA binding activity of CstF. CstF-64 is expressed in all somatic cells and in pre- and postmeiotic, but not meiotic, germ cells. However, a large variant of CstF-64, called t CstF-64, is abundantly expressed in meiotic and postmeiotic cells in the testis and to a lesser extent in the brain, and promotes the germ cell pattern of polyadenylation. The gene encoding CstF-64 (designated CSTF2) maps to the X chromosome, whereas t CstF-64 is encoded by an autosomal gene. The increase in CstF-64 concentration during B cell activation switches IgM heavy chain mRNA expression from membrane-bound to secreted forms, suggesting that CstF-64 plays a key role in regulating IgM heavy chain expression during B cell differentiation.