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제품정보 (DICE 배송 시 비용 별도)
CAS 번호:
UNSPSC Code:
12352202
eCl@ss:
42010201
EC Number:
274-272-6
NACRES:
NA.25
MDL number:
Biological source:
human
Assay:
≥99% (agarose gel electrophoresis)
Form:
lyophilized powder
Technique(s):
ELISA: suitable, tissue culture: suitable, western blot: suitable
Impurities:
HIV I and HIVII, HCV and HBsAg, tested negative, ≤0.1% Fatty acids
SMILES string
FC(F)(F)C(F)(F)C(F)(F)F
InChI
1S/C3F8/c4-1(5,2(6,7)8)3(9,10)11
InChI key
QYSGYZVSCZSLHT-UHFFFAOYSA-N
biological source
human
assay
≥99% (agarose gel electrophoresis)
form
lyophilized powder
mol wt
monomer calculated mol wt 66478 Da
technique(s)
ELISA: suitable, tissue culture: suitable, western blot: suitable
impurities
HIV I and HIVII, HCV and HBsAg, tested negative, ≤0.1% Fatty acids
solubility
H2O: soluble 50 mg/mL
UniProt accession no.
storage temp.
2-8°C
Quality Level
Gene Information
human ... ALB(213)
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Application
Albumin from human serum has been used in the preparation of glycated human serum albumin (gHSA) in a glucose solution. It has also been used in the study to estimate the impact of surface nanotopography and chemical composition on blood compatibility.
Albumin was used to test its effect on the in vitro bactericidal activity of cefditoren against penicillin-resistant Streptococcus pneumonia. It has been clinically used in serious and often life-threatening conditions, such as shock and blood loss due to trauma, burns, and surgery. It was used also to test the effect of non-enzymatic glycation on the unfolding of human serum albumin.
Biochem/physiol Actions
Albumins are soluble monomeric proteins found in the body fluids and tissues of animals and in some plant seeds. Serum albumin functions as a carrier protein for steroids, fatty acids, and thyroid hormones. Serum albumins are also vital in regulating the colloidal osmotic pressures of blood.
Serum albumin functions as a carrier protein for steroids, fatty acids, and thyroid hormones, and is vital in regulating the colloidal osmotic pressures of blood. Albumin is also seen to bind to exogenous substances, particularly drugs (e.g., ibuprofen, warfarin), and strongly influence their pharmacokinetics. Oxidative stress leading to changes in the redox state of albumin has widely varied effects on its physiological function.
Disclaimer
RESEARCH USE ONLY. This product is regulated in France when intended to be used for scientific purposes, including for import and export activities (Article L 1211-1 paragraph 2 of the Public Health Code). The purchaser (i.e. enduser) is required to obtain an import authorization from the France Ministry of Research referred in the Article L1245-5-1 II. of Public Health Code. By ordering this product, you are confirming that you have obtained the proper import authorization.
Features and Benefits
- Fatty acid-free / low fatty acid content
- Globulin-free / low globulin content
General description
Albumin is the most abundant protein in blood plasma, produced in the liver.
Albumin is a known carrier of fatty acids (FA). Thus control over specific FA′s for cell culture is important, as different cell lines can differ in their sensitivity to particular fatty acids. Fatty acid-free human serum albumin (HSA) is therefore useful for cell culture studies where specific fatty acid content must be strictly controlled, so that researchers can use particular fatty acids specific to their cell lines. Fatty acid-free albumin also allows for optimal and maximum binding sites for using specific fatty acids in cell culture. The use of FA-free HSA also addresses concerns about endogenous FA′s potentially in non-FA-free HSA.
Albumin is a known carrier of fatty acids (FA). Thus control over specific FA′s for cell culture is important, as different cell lines can differ in their sensitivity to particular fatty acids. Fatty acid-free human serum albumin (HSA) is therefore useful for cell culture studies where specific fatty acid content must be strictly controlled, so that researchers can use particular fatty acids specific to their cell lines. Fatty acid-free albumin also allows for optimal and maximum binding sites for using specific fatty acids in cell culture. The use of FA-free HSA also addresses concerns about endogenous FA′s potentially in non-FA-free HSA.
Albumin is the most copious plasma protein in humans. Albumin turnover is seen in infants with iron deficiency anemia. Serum albumin is a reliable prognostic indicator in liver disease. Oxidative damage of albumin is associated with advanced liver disease.
Albumin is widely used as a blocking agent in immunoassays and immunodetection procedures, and as a carrier protein for dilution of antibodies. Awareness of potential trace endogenous content of globulins / IgG in human serum albumin (HSA) is therefore important, because such trace globulins / IgG may serve as antigens for secondary antibodies in immunodetection work. This product undergoes testing for low globulin content / status as essentially globulin-free.
Albumin is widely used as a blocking agent in immunoassays and immunodetection procedures, and as a carrier protein for dilution of antibodies. Awareness of potential trace endogenous content of globulins / IgG in human serum albumin (HSA) is therefore important, because such trace globulins / IgG may serve as antigens for secondary antibodies in immunodetection work. This product undergoes testing for low globulin content / status as essentially globulin-free.
Other Notes
View more information on human serum albumin.
저장 등급
11 - Combustible Solids
wgk
WGK 3
flash_point_f
Not applicable
flash_point_c
Not applicable
ppe
Eyeshields, Gloves
Claudio Dalvit et al.
Magnetic resonance in chemistry : MRC, 55(2), 106-114 (2016-08-16)
Ligand-based
Martina Zatloukalova et al.
Redox biology, 24, 101213-101213 (2019-06-07)
Nitro-fatty acids modulate inflammatory and metabolic stress responses, thus displaying potential as new drug candidates. Herein, we evaluate the redox behavior of nitro-oleic acid (NO2-OA) and its ability to bind to the fatty acid transporter human serum albumin (HSA). The
Fibrillation and Polymorphism of Human Serum Albumin
Bio-nanoimaging, 77(2), 345-362 (2014)
Competitive adsorption of fibrinogen and albumin and blood platelet adhesion on surfaces modified with nanoparticles and/or PEO
Nonckreman C J, et al.
Colloids and Surfaces. B, Biointerfaces, 77(2), 139-149 (2010)
Isabel Correia et al.
Chemistry, an Asian journal, 12(16), 2062-2084 (2017-06-27)
[VO(acac)
문서
Explore serum albumin's role in serum-free cell culture systems for biomanufacturing.
Lipid Induced Insulin Resistance
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