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C-Peptide antibody

Mouse, Monoclonal (CII-106), IgG1
 
Reactivity:Mouse (Murine), Rat (Rattus)
Application:EIA, Detection
ABIN617594
Ships within 7 to 10 Business Days
632.23 $
1 mg

C-Peptide antibody

Mouse, Monoclonal (CII-11), IgG1
 
Reactivity:Mouse (Murine), Rat (Rattus)
Application:EIA, Detection
ABIN617595
Ships within 7 to 10 Business Days
632.23 $
1 mg

C-Peptide antibody

Mouse, Monoclonal (CII-138), IgG1
 
Reactivity:Mouse (Murine), Rat (Rattus)
Application:EIA, Detection
ABIN617596
Ships within 7 to 10 Business Days
632.23 $
1 mg

C-Peptide antibody

Mouse, Monoclonal (CII-29), IgG1
 
Reactivity:Mouse (Murine), Rat (Rattus)
Application:EIA, Capture
ABIN617597
Ships within 7 to 10 Business Days
632.23 $
1 mg

C-Peptide antibody

Mouse, Monoclonal (CII-55), IgG1
 
Reactivity:Mouse (Murine), Rat (Rattus)
Application:EIA, Capture
ABIN617598
Ships within 7 to 10 Business Days
632.23 $
1 mg

C-Peptide antibody

Mouse, Monoclonal (CII-97), IgG1
 
Reactivity:Mouse (Murine), Rat (Rattus)
Application:EIA, Capture
ABIN617599
Ships within 7 to 10 Business Days
632.23 $
1 mg

C-Peptide antibody

Mouse, Monoclonal, IgG1
 
Reactivity:Human
Application:ELISA, IHC (fro), IHC (p)
ABIN865621
Ships within 5 to 7 Business Days
406.67 $
100µl

C-Peptide antibody

Mouse, Monoclonal (1H8), IgG1
ISO
Reactivity:Human
Application:EIA, RIA
ABIN534502
Ships within 7 to 10 Business Days
368.00 $
0.1 mg

C-Peptide antibody

Mouse, Monoclonal (2B7), IgG1
ISO
Reactivity:Human
Application:EIA, RIA
ABIN534503
Ships within 7 to 10 Business Days
368.00 $
0.1 mg

C-Peptide antibody

Mouse, Monoclonal (4H8), IgG1
ISO
Reactivity:Human
Application:EIA, RIA
ABIN534504
Ships within 7 to 10 Business Days
368.00 $
0.1 mg

C-Peptide antibody

Mouse, Monoclonal (5B8), IgG1
ISO
Reactivity:Human
Application:EIA, RIA
ABIN534505
Ships within 7 to 10 Business Days
368.00 $
0.1 mg

C-Peptide antibody

Mouse, Monoclonal (2A11), IgG1
ISO
Reactivity:Human
Application:EIA, RIA
ABIN534506
Ships within 7 to 10 Business Days
368.00 $
0.1 mg

C-Peptide antibody

Mouse, Monoclonal (7-00E-10), IgG1
ISO
Reactivity:Human
Application:EIA, RIA
ABIN534507
Ships within 7 to 10 Business Days
368.00 $
0.1 mg

C-Peptide antibody

Mouse, Monoclonal (6H1), IgG1
ISO
Reactivity:Rat (Rattus)
Application:EIA
ABIN534508
Ships within 7 to 10 Business Days
368.00 $
0.1 mg

C-Peptide antibody

Mouse, Monoclonal (CII-11), IgG1
ISO
Reactivity:Rat (Rattus)
Application:EIA
ABIN534509
Ships within 7 to 10 Business Days
368.00 $
0.1 mg

C-Peptide antibody

Mouse, Monoclonal (CII-29), IgG1
ISO
Reactivity:Rat (Rattus)
Application:EIA
ABIN534510
Ships within 7 to 10 Business Days
368.00 $
0.1 mg

C-Peptide antibody

Mouse, Monoclonal (CII-55), IgG1
ISO
Reactivity:Rat (Rattus)
Application:EIA
ABIN534511
Ships within 7 to 10 Business Days
368.00 $
0.1 mg

C-Peptide antibody

Mouse, Monoclonal (CII-97), IgG1
ISO
Reactivity:Rat (Rattus)
Application:EIA
ABIN534512
Ships within 7 to 10 Business Days
368.00 $
0.1 mg

C-Peptide antibody

Mouse, Monoclonal (CII-106), IgG1
ISO
Reactivity:Rat (Rattus)
Application:EIA
ABIN534513
Ships within 7 to 10 Business Days
368.00 $
0.1 mg

C-Peptide antibody

Mouse, Monoclonal (CII-138), IgG1
ISO
Reactivity:Rat (Rattus)
Application:EIA
ABIN534514
Ships within 7 to 10 Business Days
368.00 $
0.1 mg
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Background

Type 2 diabetic patients exhibit a decreased fat oxidative capacity and high levels of circulating free fatty acids (FFAs). This is a major cause for insulin resistance, in particularly in skeletal muscle, by reducing insulin stimulated glucose uptake, this likely occurs due to accumulation of lipid inside the muscle cell. A reduced skeletal muscle oxidative capacity can worsen this state. Type 2 diabetes mellitus also is associated with impaired metabolic flexibility, i.e. an impaired switching from fatty acid to glucose oxidation in response to insulin. Thus, a reduced fat oxidative capacity and metabolic inflexibility are important components of skeletal muscle insulin resistance. The cause of these derangements in skeletal muscle of type 2 diabetic patients remains to be elucidated. An impaired mitochondrial function is a likely candidate. Evidence from both in vivo and ex vivo studies supports the idea that an impaired skeletal muscle mitochondrial function is related to the development of insulin resistance and type 2 diabetes mellitus. Obesity plays a role not only for the functioning of the muscle but also for the functioning of adipose tissue. Adipose tissue regulates energy usage and food-uptake via a large number of adipokines and related factors, like for instance leptin, adiponectin, omentin, visfatin, resistin, tumor necrosis factor-a (TNF-alpha), interleukin-6 (IL-6), retinol-binding protein 4 (RBP4), and others. The regulation of these factor is malfunctioning in Type 2 Diabetics.