M8032
Mixed Bed Resin
BioReagent, for molecular biology
Synonym(s):
Mixed Bed Resin hydrogen and hydroxide form
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About This Item
Recommended Products
grade
DNA grade
for molecular biology
Quality Level
product line
BioReagent
form
beads
pH
<5
foreign activity
DNase, RNase, none detected
storage temp.
room temp
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General description
A self-indicating Mixed Bed Resin for deionizing formamide, acrylamide, glyoxal, PEG and urea. The beads change color from blue to gold when exchange capacity is reached. Also, the color indicator turns gold with formamide immediately, so deionization must be checked by measuring conductivity.
Application
Mixed Bed Resin is suitable for deionizing formamide, acrylamide, glyoxal, PEG and urea, on a column or in a batch process.
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Product No.
Description
Pricing
Signal Word
Danger
Hazard Statements
Precautionary Statements
Hazard Classifications
Eye Dam. 1
Storage Class Code
11 - Combustible Solids
WGK
WGK 3
Flash Point(F)
Not applicable
Flash Point(C)
Not applicable
Personal Protective Equipment
dust mask type N95 (US), Eyeshields, Gloves
Certificates of Analysis (COA)
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Langmuir : the ACS journal of surfaces and colloids, 29(25), 7793-7801 (2013-05-25)
Zeta potentials of several polar protic (water, ethylene glycol, and formamide) as well as polar aprotic (dimethyl sulfoxide) liquids were measured in contact with three nonpolar surfaces using closed-cell electroosmosis. The test surfaces were chemisorbed monolayers of alkyl siloxanes, fluoroalkyl
Glycogen synthase activity in adipose tissue. Methods for freeze-clamping and assay.
Methods in molecular biology (Clifton, N.J.), 155, 89-96 (2001-04-11)
Molecular Cloning: A Laboratory Manual, 1-1 (1989)
The Journal of biological chemistry, 285(23), 18085-18094 (2010-04-07)
Methionine sulfoxide reductase A is an essential enzyme in the antioxidant system, which scavenges reactive oxygen species through cyclic oxidation and reduction of methionine and methionine sulfoxide. In mammals, one gene encodes two forms of the reductase, one targeted to
Free radical biology & medicine, 18(2), 295-301 (1995-02-01)
Chemical modifications of human or bovine hemoglobins are designed to produce proteins that can act as oxygen-carrying blood substitutes. Concerns about the redox reactivity of cell-free hemoglobin and its contribution to tissue-damaging oxygen free radicals has not been fully established.
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