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Interleukin-6 Rat ELISA

  • Regulatory status:RUO
  • Type:Sandwich ELISA, Biotin-labelled antibody
  • Other names:IL-6, Interferon-beta 2, B-cell stimulatory factor 2,HGF
  • Species:Rat
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Cat. No. Size Price


RAF072R 96 wells (1 kit)
PubMed Product Details
Technical Data

Type

Sandwich ELISA, Biotin-labelled antibody

Applications

Serum, Cell culture supernatant

Sample Requirements

50 µl/well

Shipping

At ambient temperature. Upon receipt, store the product at the temperature recommended below.

Storage/Expiration

Store the complete kit at 2–8°C. Under these conditions, the kit is stable until the expiration date (see label on the box).

Calibration Curve

Calibration Range

31.0–2000 pg/ml

Limit of Detection

12.0 pg/ml

Intra-assay (Within-Run)

CV = 5.0%

Inter-assay (Run-to-Run)

CV = 10.0%

Dilutation Linearity

97,00%

Summary

Research topic

Cytokines and chemokines and related molecules, Energy metabolism and body weight regulation, Sepsis, Animal studies

Summary

Interleukin-6 is a multi-functional cytokine that regulates immune responses, acute phase reactions and hematopoiesis, and it may play a central role in host defense mechanisms. IL-6 is usually not produced constitutively by normal cells, but its expression is readily induced by a variety of cytokines, lipopolysaccharide or viral infections.

References to Product

References

  • Cavaliere G, Viggiano E, Trinchese G, et al. Long Feeding High-Fat Diet Induces Hypothalamic Oxidative Stress and Inflammation, and Prolonged Hypothalamic AMPK Activation in Rat Animal Model. Front Physiol. 2018;9:818. Published 2018 Jul 6. doi:10.3389/fphys.2018.00818
  • Peric Kacarevic Z, Snajder D, Maric A, Bijelic N, Cvijanovic O, Domitrovic R, Radic R. High-fat diet induced changes in lumbar vertebra of the male rat offsprings. Acta Histochem. 2016 Aug 27;
  • Trinchese G, Cavaliere G, Penna E, et al. Milk From Cow Fed With High Forage/Concentrate Ratio Diet: Beneficial Effect on Rat Skeletal Muscle Inflammatory State and Oxidative Stress Through Modulation of Mitochondrial Functions and AMPK Activity. Front Physiol. 2019;9:1969. Published 2019 Jan 17. doi:10.3389/fphys.2018.01969
References to Summary

References to Interleukin-6

  • Cayphas S, Van Damme J, Vink A, Simpson RJ, Billiau A, Van Snick J. Identification of an interleukin HP1-like plasmacytoma growth factor produced by L cells in response to viral infection. J Immunol. 1987 Nov 1;139 (9):2965-9
  • Hirano T, Akira S, Taga T, Kishimoto T. Biological and clinical aspects of interleukin 6. Immunol Today. 1990 Dec;11 (12):443-9
  • Hirano T, Kishimoto T. Interleukin-6.Handbook of experimental pharmacology, Peptide Growth Factors and Their Receptors. Springer-Verlag. 1990;:633-665
  • Hirano T, Taga T, Nakano N, Yasukawa K, Kashiwamura S, Shimizu K, Nakajima K, Pyun KH, Kishimoto T. Purification to homogeneity and characterization of human B-cell differentiation factor (BCDF or BSFp-2). Proc Natl Acad Sci U S A. 1985 Aug;82 (16):5490-4
  • Koj A. The Role of Interleukin-6 as the Hepatocyte Stimulating Factor in the Network of Inflammatory Cytokines. Annals of the New York Academy. (1989);:557: 1–8
  • Nordan RP, Potter M. A macrophage-derived factor required by plasmacytomas for survival and proliferation in vitro. Science. 1986 Aug 1;233 (4763):566-9
  • Ray A, Tatter SB, Santhanam U, Helfgott DC, May LT, Sehgal PB. Regulation of expression of interleukin-6. Molecular and clinical studies. Ann N Y Acad Sci. 1989;557:353-61; discussion 361-2
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