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Mouse IL-1 beta/IL-1F2 Quantikine ELISA Kit, 2 Plate

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PYC suppressed LPS-induced proinflammatory cytokine production in BV2 microglia.Cells were incubated with the indicated concentrations of PYC or vehicle for 1h before LPS treatment (500ng/mL). After 24 h incubation, the ...read more

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Reactivity MuSpecies Glossary
Applications ELISA
Conjugate
HRP

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Mouse IL-1 beta/IL-1F2 Quantikine ELISA Kit, 2 Plate Summary

Background
The Quantikine® Mouse IL-1 beta Immunoassay is a 4.5 hour solid phase ELISA designed to measure mouse IL-1 beta in cell culture supernates, tissue lysates, serum, and plasma. It contains E. coli-expressed recombinant mouse IL-1 beta and antibodies raised against the recombinant factor. This immunoassay has been shown to quantitate the recombinant factor accurately. Resul...ts obtained using natural mouse IL-1 beta showed dose-response curves that were parallel to the standard curves obtained using the recombinant kit standards. These results indicate that this kit can be used to determine relative mass values for natural mouse IL-1 beta.
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Specificity
Natural and recombinant mouse IL-1 beta
Source
N/A
Inter-Assay
See PDF Datasheet for details
Intra-Assay
See PDF Datasheet for details
Spike Recovery
See PDF Datasheet for details
Sample Volume
See PDF Datasheet for details
Gene
Il1b

Applications/Dilutions

Dilutions
  • ELISA
Application Notes
No significant interference observed with available related molecules.
Publications
Read Publications using
MLB00C in the following applications:

Packaging, Storage & Formulations

Storage
Store the unopened product at 2 - 8 °C. Do not use past expiration date.

Notes

This product is produced by and ships from R&D Systems, Inc., a Bio-Techne brand.

Alternate Names for Mouse IL-1 beta/IL-1F2 Quantikine ELISA Kit, 2 Plate

  • catabolin
  • IL1 beta
  • IL-1 beta
  • IL-1
  • IL1B
  • IL-1b
  • IL1-BETA
  • IL-1F2
  • IL1F2IL-1 beta
  • interleukin 1, beta
  • interleukin-1 beta
  • preinterleukin 1 beta
  • pro-interleukin-1-beta

Background

The Interleukin 1 (IL-1) family of proteins consists of IL-1 alpha , IL-1 beta , and the IL-1 receptor antagonist (IL-1ra). IL-1 alpha and IL-1 beta bind to the same cell surface receptors and share biological functions (1). IL-1 is not produced by unstimulated cells of healthy individuals with the exception of skin keratinocytes, some epithelial cells, and certain cells of the central nervous system. However, in response to inflammatory agents, infections, or microbial endotoxins, a dramatic increase in the production of IL-1 by macrophages and various other cell types is seen. IL-1 beta plays a central role in immune and inflammatory responses, bone remodeling, fever, carbohydrate metabolism, and GH/IGF-I physiology. Inappropriate or prolonged production of IL-1 has been implicated in a variety of pathological conditions including sepsis, rheumatoid arthritis, inflammatory bowel disease, acute and chronic myelogenous leukemia, insulindependent diabetes mellitus, atherosclerosis, neuronal injury, and aging-related diseases (2-5). 
 IL-1 alpha and IL-1 beta are structurally related polypeptides that show approximately 25% homology at the amino acid (aa) level. Both are synthesized as 31 kDa precursors that are subsequently cleaved into mature proteins of approximately 17.5 kDa (6, 7). Cleavage of the IL-1 beta precursor by Caspase-1/ICE is a key step in the inflammatory response (2, 8). Neither IL-1 alpha nor IL-1 beta contains a typical hydrophobic signal peptide (9-11), but evidence suggests that these factors can be secreted by non-classical pathways (12, 13). A portion of unprocessed IL-1 alpha can be presented on the cell membrane and may retain biological activity (14). The precursor form of IL-1 beta , unlike the IL-1 alpha precursor, shows little or no biological activity in comparison to the processed form (13, 15). Both unprocessed and mature forms of IL-1 beta are exported from the cell. 
 IL-1 alpha and IL-1 beta exert their effects through immunoglobulin superfamily receptors that additionally bind IL-1ra. The 80 kDa transmembrane type I receptor (IL-1 RI) is expressed on T cells, fibroblasts, keratinocytes, endothelial cells, synovial lining cells, chondrocytes, and hepatocytes (16, 17). The 68 kDa transmembrane type II receptor (IL-1 RII) is expressed on B cells, neutrophils, and bone marrow cells (18). The two IL-1 receptor types show approximately 28% homology in their extracellular domains but differ significantly in that the type II receptor has a cytoplasmic domain of only 29 aa, whereas the type I receptor has a 213 aa cytoplasmic domain. IL-1 RII does not appear to signal in response to IL-1 and may function as a decoy receptor that attenuates IL-1 function (19). The IL-1 receptor accessory protein (IL-1 RAcP) associates with IL-1 RI and is required for IL-1 RI signal transduction (20). IL-1ra is a secreted molecule that functions as a competitive inhibitor of IL-1 (21, 22). Soluble forms of both IL-1 RI and IL-1 RII have been detected in human plasma, synovial fluids, and the conditioned media of several human cell lines (23, 24). In addition, IL-1 binding proteins that resemble soluble IL-1 RII are encoded by vaccinia and cowpox viruses (25).

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⚠ WARNING: This product can expose you to chemicals including N,N-Dimethylforamide, which is known to the State of California to cause cancer. For more information, go to www.P65Warnings.ca.gov.

Publications for IL-1 beta/IL-1F2 (MLB00C)(503)

We have publications tested in 5 confirmed species: Human, Mouse, Rat, Guinea Pig, Transgenic Mouse.

We have publications tested in 1 application: ELISA Capture.


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ELISA Capture
(3)
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Human
(4)
Mouse
(494)
Rat
(3)
Guinea Pig
(1)
Transgenic Mouse
(7)
All Species
Showing Publications 1 - 10 of 503. Show All 503 Publications.
Publications using MLB00C Applications Species
Liu, X;Liu, Y;Su, X;Jiang, L;Tang, G;Wang, Y; Geranylgeranylacetone mitigates sepsis-associated intestinal injury through CHIP-dependent anti-inflammation and anti-oxidative effect International immunopharmacology 2024-05-23 [PMID: 38788444] (Mouse) Mouse
Xing, Y;Zhang, F;Yang, T;Yin, C;Yang, A;Yan, B;Zhao, J; Augmented antitumor immune responses of HER2-targeted pyroptotic induction by long-lasting recombinant immunopyroptotins Heliyon 2024-05-15 [PMID: 38737283] (Mouse) Mouse
Li, Z;Wang, S;Han, J;Yang, G;Xi, L;Zhang, C;Cui, Y;Yin, S;Zhang, Y;Zhang, H; Insights into the effect of guanylate-binding protein 1 on the survival of Brucella intracellularly Veterinary microbiology 2024-04-16 [PMID: 38678845] (Mouse) Mouse
Deng, M;Hou, Y;Liu, J;He, J;Lan, Z;Xiao, H; Mesenchymal stem cell-derived exosomes overexpressing SRC-3 protect mice from cerebral ischemia by inhibiting ferroptosis Brain research bulletin 2024-04-16 [PMID: 38614406] (Mouse) Mouse
Tao, X;Xue, F;Xu, J;Wang, W; Platelet-rich plasma-derived extracellular vesicles inhibit NF-?B/NLRP3 pathway-mediated pyroptosis in intervertebral disc degeneration via the MALAT1/microRNA-217/SIRT1 axis Cellular signalling 2024-02-17 [PMID: 38373669] (Mouse) Mouse
Miyashita, Y;Kanou, T;Fukui, E;Matsui, T;Kimura, T;Ose, N;Funaki, S;Shintani, Y; A Novel Peroxisome Proliferator-Activated Receptor Gamma/Nuclear Factor-Kappa B Activation Pathway is Involved in the Protective Effect of Adipose-Derived Mesenchymal Stem Cells Against Ischemia-Reperfusion Lung Injury Transplantation proceedings 2024-02-05 [PMID: 38320873] (Mouse) Mouse
Ouyang, P;Cai, Z;Peng, J;Lin, S;Chen, X;Chen, C;Feng, Z;Wang, L;Song, G;Zhang, Z; SELENOK-dependent CD36 palmitoylation regulates microglial functions and A? phagocytosis Redox biology 2024-02-01 [PMID: 38320455] (Mouse) Mouse
Song, J;Wu, J;Robichaux, DJ;Li, T;Wang, S;Arredondo Sancristobal, MJ;Dong, B;Dobrev, D;Karch, J;Thomas, SS;Li, N; A High-Protein Diet Promotes Atrial Arrhythmogenesis via Absent-in-Melanoma 2 Inflammasome Cells 2024-01-05 [PMID: 38247800] (Mouse) Mouse
Han, G;Kim, H;Jang, H;Kim, ES;Kim, SH;Yang, Y; Oral TNF-? siRNA delivery via milk-derived exosomes for effective treatment of inflammatory bowel disease Bioactive materials 2024-04-01 [PMID: 38223538] (Mouse) Mouse
Park, C;Ji, SY;Hwangbo, H;Shin, SY;Kim, MY;Lee, K;Kim, DH;Cho, BR;Lee, H;Choi, YH;You, HJ; Enhancement of Immune Functions by Limosilactobacillus reuteri KBL346: In Vitro and In Vivo Studies International journal of molecular sciences 2023-12-21 [PMID: 38203313] (Mouse) Mouse
Show All 503 Publications.

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Additional IL-1 beta/IL-1F2 Products

Blogs on IL-1 beta/IL-1F2.

The NLRP3 Inflammasome: Macrophage Activator & Pathology Driver
By Victoria Osinski, PhDWhat is the NLRP3 Inflammasome?With its critical role in innate immunity, the nucleotide-binding oligomerization domain-like receptor family, pyrin domain containing 3 (NLRP3) inflammasome ...  Read full blog post.

Immune Cell Metabolic Flux Influences Type I Diabetes
By Hunter MartinezWhat is Immunometabolism?It is well established that abnormal metabolic environments can be a risk factor for disease development. One characteristic example is the role of dyslipidemia (high lev...  Read full blog post.

Pyroptosis: Mechanisms mediating cell death and pro-inflammatory cytokine release
By Victoria OsinskiPyroptosis is an inflammatory form of programmed cell death characterized by the release of pro-inflammatory cytokines IL-1 beta and IL-18.1,10 It is a process distinct from apoptosis and necrosis (T...  Read full blog post.

IL-1 beta (interleukin 1 beta, lymphocyte activating factor (LAF))
IL-1 was originally identified and cloned as a lymphocyte mitogen and much later, was found to be comprised of two closely related but distinct proteins, interleukin 1 alpha (IL-1 alpha) and interleukin 1 beta (IL-1 beta). Both these proteins bind ...  Read full blog post.

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Bioinformatics

Gene Symbol Il1b