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Merck

D6429

DMEM - high glucose

With sodium bicarbonate, ʟ-glutamine and sodium pyruvate, liquid, sterile-filtered, suitable for cell culture

동의어(들):

DME, Dulbecco′s Modified Eagle′s Medium - high glucose, DMEM

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제품정보 (DICE 배송 시 비용 별도)

UNSPSC Code:
12352207
NACRES:
NA.71
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제품 이름

Dulbecco′s Modified Eagle′s Medium - high glucose, With 4500 mg/L glucose, L-glutamine, sodium pyruvate, and sodium bicarbonate, liquid, sterile-filtered, suitable for cell culture

sterility

sterile-filtered

form

liquid

technique(s)

cell culture | mammalian: suitable

impurities

endotoxin, tested

components

HEPES: no
NaHCO3: yes
phenol red: yes
sodium pyruvate: yes
L-glutamine: yes
glucose: high

shipped in

ambient

storage temp.

2-8°C

Quality Level

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Application

Dulbecco′s Modified Eagle′s Medium (DMEM) is a modification of Basal Medium Eagle (BME) that contains four-fold concentrations of the amino acids and vitamins. The original formulation contained 1000 mg/L of glucose and was used to culture embryonic mouse cells. Since then, it has been modified in several ways to support primary cultures of mouse and chicken cells, as well as a variety of normal and transformed cells. Each of these media offers a different combination of L-glutamine and sodium pyruvate. Additionally, the glucose levels have been raised to 4500 mg/L, contributing to the name "DMEM/High".
Dulbecco′s Modified Eagle′s Medium - high glucose has been used for cell culture.

General description

This DMEM-Hi glucose medium is a 1x complete medium with sodium pyruvate added. It also differs from the original DMEM-Hi formulation wherein pyridoxine is substituted for pyridoxal. Pyridoxal is an unstable component of media.

저장 등급

12 - Non Combustible Liquids

flash_point_f

Not applicable

flash_point_c

Not applicable


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문서

The field of proteomics is continually looking for new ways to investigate protein dynamics within complex biological samples. Recently, many researchers have begun to use RNA interference (RNAi) as a method of manipulating protein levels within their samples, but the ability to accurately determine these protein amounts remains a challenge. Fortunately, over the past decade, the field of proteomics has witnessed significant advances in the area of mass spectrometry. These advances, both in instrumentation and methodology, are providing researchers with sensitive assays for both identification and quantification of proteins within complex samples. This discussion will highlight some of these methodologies, namely the use of Multiple Reaction Monitoring (MRM) and Protein-AQUA.

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