P8119
Protein Standard
analytical standard, 80 mg/mL (HSA and gamma-globulins)
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About This Item
biological source
human
Quality Level
grade
analytical standard
form
liquid
contains
0.05% sodium azide as preservative
analyte chemical class(es)
amino acids, peptides, proteins
concentration
80 mg/mL (HSA and gamma-globulins)
technique(s)
gel permeation chromatography (GPC): suitable
application(s)
food and beverages
format
multi-component solution
storage temp.
2-8°C
Related Categories
Application
Protein standard has been used in the determination of protein content of cod trypsin isoenzymes using bio-rad protein assay and ultraviolet-visible light spectrophotometry (UV-Vis).
Other Notes
Human serum albumin and gamma-globulins
WGK
WGK 3
Flash Point(F)
Not applicable
Flash Point(C)
Not applicable
Regulatory Information
高风险级别生物产品--人源产品
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Elucidation of different cold-adapted Atlantic cod (Gadus morhua) trypsin X isoenzymes
Biochimica et Biophysica Acta, 1865(1), 11-19 (2017)
Optica, 3(8), 809-815 (2016-08-20)
Indocyanine green (ICG) is the only near-infrared dye approved by the U.S. Food and Drug Administration for clinical use. When injected in blood, ICG binds primarily to plasma proteins and lipoproteins, resulting in enhanced fluorescence. Recently, the optofluidic laser has
Biochimica et biophysica acta, 1865(1), 11-19 (2016-10-25)
Trypsins from Atlantic cod (Gadus morhua), consisting of several isoenzymes, are highly active cold-adapted serine proteases. These trypsins are isolated for biomedical use in an eco-friendly manner from underutilized seafood by-products. Our group has explored the biochemical properties of trypsins
Journal of proteomics, 162, 141-154 (2017-02-19)
Male infertility accounts for half of the infertility problems experienced by couples. Azoospermia, having no measurable level of sperm in seminal fluid, is one of the known conditions resulting in male infertility. In order to elucidate the complex molecular mechanisms
British journal of pharmacology, 160(1), 116-129 (2010-04-24)
Genetic approaches have documented protein kinase B (PKB) as a pivotal regulator of heart function. Insulin strongly activates PKB, whereas adrenaline is not considered a major physiological regulator of PKB in heart. In skeletal muscles, however, adrenaline potentiates insulin-stimulated PKB
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