169946 Results for: "Bottle-Top+Syringes"
Antimony(III) potassium oxitartrate trihydrate 99.0-103.0% ACS
Supplier: Thermo Scientific Chemicals
MDL: MFCD00148863
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L(+)-Cysteine hydrochloride monohydrate ≥98.5% USP
Supplier: Spectrum Chemical Mfg. Corp.
Cysteine Hydrochloride, Monohydrate, USP is a semi-essential amino acid.
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illustra™ GFX™ PCR DNA and Gel Band Purification Kits
Supplier: Cytiva
The illustra GFX PCR DNA and Gel Band Purification kits are for the isolation and concentration of DNA fragments from PCR mixtures, DNA-containing agarose gel bands, enzyme-based DNA modifications, and restriction enzyme digests.
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Why Choose Corning Fetal Bovine Serum?
Our vertically integrated FBS serum supply chain, from collection to scientist, allows us to provide a consistent supply of FBS.
L(+)-Cysteine hydrochloride monohydrate 99%
Supplier: Thermo Scientific Chemicals
MDL: MFCD00065606 Beilstein Registry No.: 5158059 Optical Rotation: +5.5°C (c=5 in 5N HCl)
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L(+)-Potassium sodium tartrate tetrahydrate 99%
Supplier: Thermo Scientific Chemicals
Baking powder, medicine (cathartic), component of Fehling's solution, silvering mirrors
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L(+)-Histidine monohydrochloride monohydrate 99%
Supplier: Thermo Scientific Chemicals
500G
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L(+)-Histidine monohydrochloride monohydrate for synthesis, Sigma-Aldrich®
Supplier: MilliporeSigma
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L(+)-Histidine monohydrochloride monohydrate ≥98%
Supplier: Ambeed
L(+)-Histidine monohydrochloride monohydrate ≥98%
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L(+)-Histidine monohydrochloride monohydrate 98.5-101.0% (dried basis), EMPROVE® EXPERT Ph. Eur., BP, JP, ChP suitable for use as excipient, SAFC®
Supplier: MilliporeSigma
L(+)-Histidine monohydrochloride monohydrate 98.5-101.0% (dried basis), EMPROVE® EXPERT Ph. Eur., BP, JP, ChP suitable for use as excipient, SAFC®
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ICP-MS Interferents B3 without Mercury, 2 µg/ml (2 ppm), SPEX CertiPrep
Supplier: SPEX CERTIPREP LLC
CLP Standards for ICP & ICP-MS
Our Contract Laboratory Program (CLP) standards allow you to Calibrate with Confidence®. The standards are to be used in conjunction with the Statement of Work for Inorganic Analysis; Multi-Media/Multi-Concentration Document Number ILM 05.3/ISM 01.2.
The final ICP check, performed in our own laboratories, is your stamp of assurance. We calibrate our instruments with traceable reference materials and show you the actual found value of the solution you receive, not just an ideal, calculated number as so many other standards manufacturers do. The combination of elements, concentrations and matrices listed have been diagnosed by SPEX CertiPrep for convenience of use and stability.
US EPA SOW ILM 05.3/ISM 01.2 gives specific procedures for the methods of analysis, target elements, and concentrationlevels. Standards are specified not only by the elements present and their relative concentrations, but also the order and frequency of running standards, blanks and samples. Details of these specifications may be found in the US EPA SOW ILM 05.3/ISM 01.2 in the following sections:
• Exhibit C, Inorganic Target Analyte List (TAL)
• Exhibit D, Analytical Methods
• Exhibit E, QA/QC Requirements
CLP ISM 01.2 and ILM 05.2 & 05.3 Standards for ICP-MS
For verification of inter-element and background correction factors at the beginning and the end of each analysis run. In addition, a verification must be done after every 20th sample. Two solutions are required for the most common interference check: Solution A, the interferents alone (CL-INT-A2) and Solution AB, a combination of interferents (CL-INT-A2) and analytes (CL-INT-B3 or CL-INT-B4). Solution A is prepared by diluting CL-INT-A2 10-fold. Solution AB is prepared by diluting CL-INT-A2 10-fold and CL-INT-B3 or CL- INT-B4 100-fold; for example, 10 ml of CL-INT-A2 and 1 ml of CL-INT-B3 or CL-INT-B4 into a 100 ml volumetric flask, brought to volume with a matrix blank. Once prepared, the solutions should be analyzed consecutively, starting with Solution A.
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ICP-MS Interferents B3 with Mercury, 2 µg/ml (2 ppm), SPEX CertiPrep
Supplier: SPEX CERTIPREP LLC
CLP Standards for ICP & ICP-MS
Our Contract Laboratory Program (CLP) standards allow you to Calibrate with Confidence®. The standards are to be used in conjunction with the Statement of Work for Inorganic Analysis; Multi-Media/Multi-Concentration Document Number ILM 05.3/ISM 01.2.
The final ICP check, performed in our own laboratories, is your stamp of assurance. We calibrate our instruments with traceable reference materials and show you the actual found value of the solution you receive, not just an ideal, calculated number as so many other standards manufacturers do. The combination of elements, concentrations and matrices listed have been diagnosed by SPEX CertiPrep for convenience of use and stability.
US EPA SOW ILM 05.3/ISM 01.2 gives specific procedures for the methods of analysis, target elements, and concentrationlevels. Standards are specified not only by the elements present and their relative concentrations, but also the order and frequency of running standards, blanks and samples. Details of these specifications may be found in the US EPA SOW ILM 05.3/ISM 01.2 in the following sections:
• Exhibit C, Inorganic Target Analyte List (TAL)
• Exhibit D, Analytical Methods
• Exhibit E, QA/QC Requirements
CLP ISM 01.2 and ILM 05.2 & 05.3 Standards for ICP-MS
For verification of inter-element and background correction factors at the beginning and the end of each analysis run. In addition, a verification must be done after every 20th sample. Two solutions are required for the most common interference check: Solution A, the interferents alone (CL-INT-A2) and Solution AB, a combination of interferents (CL-INT-A2) and analytes (CL-INT-B3 or CL-INT-B4). Solution A is prepared by diluting CL-INT-A2 10-fold. Solution AB is prepared by diluting CL-INT-A2 10-fold and CL-INT-B3 or CL- INT-B4 100-fold; for example, 10 ml of CL-INT-A2 and 1 ml of CL-INT-B3 or CL-INT-B4 into a 100 ml volumetric flask, brought to volume with a matrix blank. Once prepared, the solutions should be analyzed consecutively, starting with Solution A.
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L(+)-Potassium sodium tartrate tetrahydrate ≥99.0%, white crystalline powder ACS
Supplier: MP Biomedicals
Potassium sodium tartrate tetrahydrate has been used in organic synthesis to break up emulsions in aqueous workups.
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SP Scientific miVac Concentrator Chambers, Pumps, and Traps, Genevac
Supplier: Genevac
miVac Centrifugal Evaporation Systems provide a compact, high performing solution for removing water and organic solvents from a variety of sample formats. Configure a system to meet your application requirements.
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Antimony(III) potassium oxitartrate trihydrate ≥99%, powder USP
Supplier: Spectrum Chemical Mfg. Corp.
Antimony Potassium Tartrate, Powder, USP is also referred to as emetic tartar. It has long been known as a powerful emetic. All Spectrum Chemical USP products are manufactured, packaged and stored under current Good Manufacturing Practices (cGMP) per 21CFR part 211 in FDA registered and inspected facilities
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Arachidonic acid ≥98%, clear, colorless liquid cell culture reagent
Supplier: MP Biomedicals
Arachidonic Acid is an essential fatty acid. Occurs in liver, brain, glandular organs, and depot fats of animals, in small amounts in human depot fats, and is a constituent of animal phosphatides.
Arachidonic Acid is a precursor in the biosynthesis of prostaglandins, thromboxanes, and leukotrienes. Arachidonic acid plays a key role in cellular regulation and is controlled through multiple interconnected pathways.
Arachidonic acid (AA) is an unsaturated ω6 fatty acid constituent of the phospholipids of cell membranes. Phospholipase A2 releases AA from the membrane phospholipids in response to inflammation. AA is subsequently metabolized to prostaglandins and thromboxanes by at least two cyclooxygenase (COX) isoforms, to leukotrienes and lipoxins by lipoxygenases, and to epoxyeicosatrienoic acids via cytochrome p450-catalyzed metabolism. AA and its metabolites play important roles in a variety of biological processes, including signal transduction, smooth muscle contraction, chemotaxis, cell proliferation and differentiation, and apoptosis. AA has been demonstrated to bind to the a subunit of G protein and inhibit the activity of Ras GTPase-activating proteins (GAPs). Cellular uptake of AA is energy dependent and involves protein-facilitated transport across the plasma membrane.
If ethanol is undesirable, arachidonic acid may be dissolved in acetonitrile, DMF, or DMSO. Simply evaporate the ethanol under a gentle stream of nitrogen (be certain not to evaporate the material to dryness) and redissolve the arachidonic acid in the solvent of choice.Just prior to use, make dilutions of the stock solution into aqueous buffer or isotonic saline to bring the arachidonic acid to the desired concentration. Ensure that the residual amount of organic solvent is insignificant, since organic solvents may have physiologic effects at low concentrations. A control using the solvent in the absence of the prostaglandin will address this potential variable. We do not recommend storing the aqueous solution for more than one day. It is difficult to obtain aqueous solutions of arachidonic acid directly. However, an organic solvent free solution of arachidonic acid can be prepared using concentrated basic buffers (pH > 8.0 and ionic strength not less than 0.1 M). Add 400 μL of cold buffer (0 °C) per mg of arachidonic acid and agitate vigorously and/or ultrasonicate.
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TRAzol® RNA Purification Reagent Kit
Supplier: Alkali Scientific
Isolate high-quality RNA efficiently with the TRAzol® RNA purification reagent kit, available in a 100 ml size for versatile research applications.
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L(+)-Histidine monohydrochloride monohydrate
Supplier: Spectrum Chemical Mfg. Corp.
L-Histidine Monohydrochloride, Monohydrate, also known as 2-Amino-3-(1H-imidazol-4-yl)propanoic acid, is an alpha-amino acid with an imidazole functional group.
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Urea ≥99%, white prills, Ultrapure
Supplier: MP Biomedicals
Urea is the principal end product of nitrogen metabolism in most mammals, formed by the enzymatic reactions of the Kreb's cycle.
Urea is a mild agent usually used in the solubilization and denaturation of proteins. It is also useful for renaturing proteins from samples already denatured with 6 M guanidine hydrochloride such as inclusion bodies; and in the extraction of the mitochondrial complex. It is commonly used to solubilize and denature proteins for denaturing isoelectric focusing and two-dimensional electrophoresis and in acetic acid-urea PAGE gels. Urea is used in cell or tissue culture media to increase the osmolality. Urea has also been used as fertilizer because of the easy availability of nitrogen; in animal feeds; it is reacted with aldehydes to make resins and plastics; condensed with malonic ester to form barbituric acid; used in the paper industry to soften cellulose; used as a diuretic; enhances the action of sulfonamides; an antiseptic.
Urea in solution is in equilibrium with ammonium cyanate. The form that reacts with protein amino groups is isocyanic acid. Urea in the presence of heat and protein leads to carbamylation of the proteins. Carbamylation by isocyanic acid interferes with protein characterization because isocyanic acid reacts with the amino terminus of proteins, preventing N-terminal sequencing. Isocyanic acid also reacts with side chains of lysine and arginine residues resulting in a protein that is unsuitable for many enzymatic digests. In addition, carbamylation often leads to confusing results from peptides having unexpected retention times and masses. When performing enzymatic protein digests it is important to remove urea first. Even though some enzymes will tolerate small amounts of urea, the elevated temperature used for most reactions will lead to carbamylation during the course of the digest. The urea can be removed prior to digestion by fast reversed phase chromatography, spin columns, or dialysis.
Dissolve urea in deionized water to the desired concentration.For every 10 ml of solution, add 1 g of Amberlite® IRA-910.Stir for one hour at room temperature
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ICP Interferents A1, SPEX CertiPrep
Supplier: SPEX CERTIPREP LLC
CLP Standards for ICP & ICP-MS
Our Contract Laboratory Program (CLP) standards allow you to Calibrate with Confidence®. The standards are to be used in conjunction with the Statement of Work for Inorganic Analysis; Multi-Media/Multi-Concentration Document Number ILM 05.3/ISM 01.2.
The final ICP check, performed in our own laboratories, is your stamp of assurance. We calibrate our instruments with traceable reference materials and show you the actual found value of the solution you receive, not just an ideal, calculated number as so many other standards manufacturers do. The combination of elements, concentrations and matrices listed have been diagnosed by SPEX CertiPrep for convenience of use and stability.
US EPA SOW ILM 05.3/ISM 01.2 gives specific procedures for the methods of analysis, target elements, and concentrationlevels. Standards are specified not only by the elements present and their relative concentrations, but also the order and frequency of running standards, blanks and samples. Details of these specifications may be found in the US EPA SOW ILM 05.3/ISM 01.2 in the following sections:
• Exhibit C, Inorganic Target Analyte List (TAL)
• Exhibit D, Analytical Methods
• Exhibit E, QA/QC Requirements
CLP ISM 01.2 and ILM 05.2 & 05.3 Standards for ICP
For verification of inter-element and background correction factors at the beginning and the end of each analysis run. In addition, a verification must be done after every 20th sample. Two solutions are required for the most common interference check: Solution A, the interferents alone (INT-A1) and Solution AB, a combination of interferents (INT-A1) and analytes (INT-B3). Solution A is prepared by diluting INT-A1 20-fold. Solution AB is prepared by diluting INT-A1 20-fold and INT-B3 100-fold; for example, 5 ml of INT-A1 and 1 ml of INT-B3 into a 100 ml volumetric flask, brought to volume with a matrix blank. Once prepared, the solutions should be analyzed consecutively, starting with Solution A.
CLP ILM 02.0 Standards for ICP
For verification of inter-element and background correction factors at the beginning and the end of each analysis run. In addition, a verification must be done after every 20th sample. Two solutions are required for the most common interference check: Solution A, the interferents alone (INT-A1) and Solution AB, a combination of interferents (INT-A1) and analytes (INT-B1). Solution A is prepared by diluting INT-A1 20-fold. Solution AB is prepared by diluting INT-A1 20-fold and INT-B1 100-fold; for example, 5 ml of INT-A1 and 1 ml of INT-B1 into a 100 ml volumetric flask, brought to volume with a matrix blank. Once prepared, the solutions should be analyzed consecutively, starting with Solution A.
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Sodium-L(+)-glutamate monohydrate 99%
Supplier: Ambeed
Sodium-L(+)-glutamate monohydrate 99%
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Sodium-L(+)-glutamate monohydrate 98.5-101.5% (dry basis) FCC, J.T.Baker®
Supplier: AVANTOR PERFORMANCE MATERIAL LLC
Sodium-L(+)-glutamate monohydrate 98.5-101.5% (dry basis) FCC
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Sodium-L(+)-glutamate monohydrate ≥98%
Supplier: BeanTown Chemical
CAS: 6106-04-3; EC No: 205-538-1; MDL No: MFCD00150138; RTECS: MA1578000 Crystalline; Molecular Formula: C5H8NNaO4·H2O; MW: 187.13 Melting Point: 232° (decomposes) Optical Rotation: [α]20/D +4.2±0.3°, c = 1.2% in water
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Sodium-L(+)-glutamate monohydrate 98+%
Supplier: Thermo Scientific Chemicals
Monosodium salt, monohydrate, 99%. 1000g.
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Sodium-L(+)-glutamate monohydrate ≥99%, white powder cell culture reagent
Supplier: MP Biomedicals
L-Glutamic Acid is a non-essential amino acid for human development; referred to as an excitatory amino acid (EAA) due to its role in neurotransmission. Acts as a neurotransmitter at fast synapses; agonist at kainate, NMDA and quisqualate receptors. L-Glutamic acid is one of the two amino acids that contains a carboxylic acid group in its side chains.
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Electronic Scales with Bowl
Supplier: United Scientific Supplies
A multifunctional digital scale with removable bowl.
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4-[(TRIFLUOROMETHYL)SULFONYL]PHENOL 1G
Supplier: AOBChem USA
Hard-working, good-looking, and built to survive a lifetime of overtime use.