Human IL-11 Antibody Summary
Pro22-Leu199
Accession # P20809
Applications
Please Note: Optimal dilutions should be determined by each laboratory for each application. General Protocols are available in the Technical Information section on our website.
Scientific Data
Cell Proliferation Induced by IL‑11 and Neutralization by Human IL‑11 Antibody. Recombinant Human IL-11 (Catalog # 218-IL) stimulates proliferation in the T11 mouse plasmacytoma cell line in a dose-dependent manner (orange line). Proliferation elicited by Recombinant Human IL-11 (1 ng/mL) is neutralized (green line) by increasing concen-trations of Mouse Anti-Human IL-11 Monoclonal Antibody (Catalog # MAB218). The ND50 is typically ≤ 8 µg/mL.
Detection of Human IL-11 by Western Blot Autocrine IL-6 activates STAT3 signalling in lung cancer cell-induced epidural ADSCs. a Epidural ADSCs were pre-treated with CM from lung cancer cells for 48 h, and pSTAT3 and STAT3 expression levels were detected by western blotting. Epidural ADSCs cultured in untreated medium served as a control. b The effects of lung cancer cell CM on epidural ADSC proliferation were evaluated using the CCK-8 assay. Epidural ADSCs were treated with CM from one of four lung cancer cell lines, and the optical density of both groups at 450 nm was analysed. Data from three separate experiments are shown. c Western blot analysis of pSTAT3 and STAT3 in epidural ADSCs treated with either 10 ng/mL recombinant IL-6, 10 ng/mL recombinant IL-11 or 50 ng/mL recombinant LIF in the presence or absence of either neutralizing antibodies or isotype controls. Loading control, actin. d Western blot analysis of pSTAT3 and alpha -SMA expression in epidural ADSCs treated with lung cancer cell CM in the presence or absence of neutralizing antibodies against IL-6, IL-11 or LIF. Loading control, actin. *P < 0.05; **P < 0.01; ***P < 0.001 Image collected and cropped by CiteAb from the following publication (https://pubmed.ncbi.nlm.nih.gov/31196220), licensed under a CC-BY license. Not internally tested by R&D Systems.
Detection of Human IL-11 by Western Blot Autocrine IL-6 activates STAT3 signalling in lung cancer cell-induced epidural ADSCs. a Epidural ADSCs were pre-treated with CM from lung cancer cells for 48 h, and pSTAT3 and STAT3 expression levels were detected by western blotting. Epidural ADSCs cultured in untreated medium served as a control. b The effects of lung cancer cell CM on epidural ADSC proliferation were evaluated using the CCK-8 assay. Epidural ADSCs were treated with CM from one of four lung cancer cell lines, and the optical density of both groups at 450 nm was analysed. Data from three separate experiments are shown. c Western blot analysis of pSTAT3 and STAT3 in epidural ADSCs treated with either 10 ng/mL recombinant IL-6, 10 ng/mL recombinant IL-11 or 50 ng/mL recombinant LIF in the presence or absence of either neutralizing antibodies or isotype controls. Loading control, actin. d Western blot analysis of pSTAT3 and alpha -SMA expression in epidural ADSCs treated with lung cancer cell CM in the presence or absence of neutralizing antibodies against IL-6, IL-11 or LIF. Loading control, actin. *P < 0.05; **P < 0.01; ***P < 0.001 Image collected and cropped by CiteAb from the following publication (https://pubmed.ncbi.nlm.nih.gov/31196220), licensed under a CC-BY license. Not internally tested by R&D Systems.
Reconstitution Calculator
Preparation and Storage
- 12 months from date of receipt, -20 to -70 °C as supplied.
- 1 month, 2 to 8 °C under sterile conditions after reconstitution.
- 6 months, -20 to -70 °C under sterile conditions after reconstitution.
Background: IL-11
Interleukin-11 (IL-11) is a pleiotropic cytokine produced by stromal cells. It binds to a dimeric receptor complex consisting of the IL-11 Ra chain and the gp130 chain shared by the receptors for the IL-6 cytokine family. IL-11 has multiple effects on hematopoietic cells and osteoblasts.
Product Datasheets
Citations for Human IL-11 Antibody
R&D Systems personnel manually curate a database that contains references using R&D Systems products. The data collected includes not only links to publications in PubMed, but also provides information about sample types, species, and experimental conditions.
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Citations: Showing 1 - 10
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Cardiomyocyte-Restricted Expression of IL11 Causes Cardiac Fibrosis, Inflammation, and Dysfunction
Authors: Sweeney, M;O'Fee, K;Villanueva-Hayes, C;Rahman, E;Lee, M;Vanezis, K;Andrew, I;Lim, WW;Widjaja, A;Barton, PJR;Cook, SA;
International journal of molecular sciences
Species: Mouse
Sample Types: Cell Lysates
Applications: Western Blot -
Targeting endogenous kidney regeneration using anti-IL11 therapy in acute and chronic models of kidney disease
Authors: AA Widjaja, S Viswanatha, SG Shekeran, E Adami, WW Lim, S Chothani, J Tan, JWT Goh, HM Chen, SY Lim, CM Boustany-K, J Hawkins, E Petretto, N Hübner, S Schafer, TM Coffman, SA Cook
Nature Communications, 2022-12-05;13(1):7497.
Species: Mouse
Sample Types: In Vivo
Applications: Neutralization -
Molecular Dissection of Pro-Fibrotic IL11 Signaling in Cardiac and Pulmonary Fibroblasts
Authors: Anissa A. Widjaja, Sivakumar Viswanathan, Dong Jinrui, Brijesh K. Singh, Jessie Tan, Joyce Goh Wei Ting et al.
Frontiers in Molecular Biosciences
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WNT/beta-Catenin Signaling Promotes TGF-beta-Mediated Activation of Human Cardiac Fibroblasts by Enhancing IL-11 Production
Authors: E Dzia?o, M Czepiel, K Tkacz, M Siedlar, G Kania, P B?yszczuk
International Journal of Molecular Sciences, 2021-09-17;22(18):.
Species: Human
Sample Types: Whole Cells
Applications: Neutralization -
DANCR Promotes Metastasis and Proliferation in Bladder Cancer Cells by Enhancing IL-11-STAT3 Signaling and CCND1 Expression
Authors: Z Chen, X Chen, R Xie, M Huang, W Dong, J Han, J Zhang, Q Zhou, H Li, J Huang, T Lin
Mol. Ther., 2019-01-09;27(2):326-341.
Species: Human
Sample Types: Whole Cells
Applications: Inhibition -
Upregulation of IL-11, an IL-6 Family Cytokine, Promotes Tumor Progression and Correlates with Poor Prognosis in Non-Small Cell Lung Cancer
Authors: M Zhao, Y Liu, R Liu, J Qi, Y Hou, J Chang, L Ren
Cell. Physiol. Biochem., 2018-03-10;45(6):2213-2224.
Species: Human
Sample Types: Whole Cells
Applications: Neutralization -
Production and characterization of genetically modified human IL-11 variants
Authors: Kouhei Tsumoto
Biochim. Biophys. Acta, 2016-11-22;1861(2):205-217.
Applications: Western Blot -
MTA2 enhances colony formation and tumor growth of gastric cancer cells through IL-11.
Authors: Zhou C, Ji J, Cai Q, Shi M, Chen X, Yu Y, Zhu Z, Zhang J
BMC Cancer, 2015-05-02;15(0):343.
Species: Human
Sample Types: Whole Cells
Applications: Neutralization -
IL-11 is required for A1 adenosine receptor-mediated protection against ischemic AKI.
Authors: Kim J, Kim M, Ham A, Brown K, Greene R, D'Agati V, Lee H
J Am Soc Nephrol, 2013-06-27;24(10):1558-70.
Species: Human
Sample Types: Whole Cells
Applications: Neutralization -
Autocrine production of IL-11 mediates tumorigenicity in hypoxic cancer cells.
Authors: Onnis, Barbara, Fer, Nicole, Rapisarda, Annamari, Perez, Victor S, Melillo, Giovanni
J Clin Invest, 2013-03-15;123(4):1615-29.
Species: Human
Sample Types: Whole Cells
Applications: Neutralization -
MicroRNA-30c inhibits human breast tumour chemotherapy resistance by regulating TWF1 and IL-11.
Authors: Bockhorn, Jessica, Dalton, Rachel, Nwachukwu, Chika, Huang, Simo, Prat, Aleix, Yee, Kathy, Chang, Ya-Fang, Huo, Dezheng, Wen, Yujia, Swanson, Kaitlin, Qiu, Tyler, Lu, Jun, Park, Seo Youn, Dolan, M Eileen, Perou, Charles, Olopade, Olufunmi, Clarke, Michael, Greene, Geoffrey, Liu, Huiping
Nat Commun, 2013-01-01;4(0):1393.
Species: Human
Sample Types: Whole Cells
Applications: Neutralization -
Helicobacter pylori CagA Triggers Expression of the Bactericidal Lectin REG3 gamma via Gastric STAT3 Activation
Authors: Kai Syin Lee, Anastasia Kalantzis, Cameron B. Jackson, Louise O'Connor, Naoko Murata-Kamiya, Masanori Hatakeyama et al.
PLoS ONE
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IL-11 is a crucial determinant of cardiovascular fibrosis
Authors: S Schafer, S Viswanatha, AA Widjaja, WW Lim, A Moreno-Mor, DM DeLaughter, B Ng, G Patone, K Chow, E Khin, J Tan, SP Chothani, L Ye, OJL Rackham, NSJ Ko, NE Sahib, CJ Pua, NTG Zhen, C Xie, M Wang, H Maatz, S Lim, K Saar, S Blachut, E Petretto, S Schmidt, T Putoczki, N Guimarães-, H Wakimoto, S van Heesch, K Sigmundsso, SL Lim, JL Soon, VTT Chao, YL Chua, TE Tan, SM Evans, YJ Loh, MH Jamal, KK Ong, KC Chua, BH Ong, MJ Chakaramak, JG Seidman, CE Seidman, N Hubner, KYK Sin, SA Cook
Nature, 2017-11-13;552(7683):110-115.
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