product summary
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company name :
Invitrogen
other brands :
NeoMarkers, Lab Vision, Endogen, Pierce, BioSource International, Zymed Laboratories, Caltag, Molecular Probes, Research Genetics, Life Technologies, Applied Biosystems, GIBCO BRL, ABgene, Dynal, Affinity BioReagents, Nunc, Invitrogen, NatuTec, Oxoid, Richard-Allan Scientific, Arcturus, Perseptive Biosystems, Proxeon, eBioscience
product type :
antibody
product name :
CD86 (B7-2) Monoclonal Antibody (GL1), eBioscience™
catalog :
14-0862-82
quantity :
100 µg
price :
US 148
clonality :
monoclonal
host :
rat
conjugate :
nonconjugated
clone name :
GL1
reactivity :
mouse
application :
immunohistochemistry, neutralization, immunoprecipitation, flow cytometry, immunohistochemistry - frozen section
more info or order :
citations: 150
Published Application/Species/Sample/DilutionReference
  • flow cytometry; mouse; 1:200; loading ...; fig s10b
Stoff M, Ebbecke T, Ciurkiewicz M, Pavasutthipaisit S, Mayer Lambertz S, St xf6 rk T, et al. C-type lectin receptor DCIR contributes to hippocampal injury in acute neurotropic virus infection. Sci Rep. 2021;11:23819 pubmed publisher
  • flow cytometry; mouse; loading ...; fig 4b
Weng X, Zhao H, Guan Q, Shi G, Feng S, Gleave M, et al. Clusterin regulates macrophage expansion, polarization and phagocytic activity in response to inflammation in the kidneys. Immunol Cell Biol. 2021;99:274-287 pubmed publisher
  • flow cytometry; mouse; loading ...; fig 2d
Ano Y, Ohya R, Takaichi Y, Washinuma T, Uchida K, Takashima A, et al. β-Lactolin, a Whey-Derived Lacto-Tetrapeptide, Prevents Alzheimer's Disease Pathologies and Cognitive Decline. J Alzheimers Dis. 2020;73:1331-1342 pubmed publisher
  • flow cytometry; mouse; loading ...; fig 1b, 1e
Mizuno R, Sugiura D, Shimizu K, Maruhashi T, Watada M, Okazaki I, et al. PD-1 Primarily Targets TCR Signal in the Inhibition of Functional T Cell Activation. Front Immunol. 2019;10:630 pubmed publisher
  • flow cytometry; mouse; loading ...; fig 6c
Lee Y, Ju J, Shon W, Oh S, Min C, Kang M, et al. Skewed Dendritic Cell Differentiation of MyD88-Deficient Donor Bone Marrow Cells, Instead of Massive Expansion as Myeloid-Derived Suppressor Cells, Aggravates GVHD. Immune Netw. 2018;18:e44 pubmed publisher
  • flow cytometry; mouse; loading ...; fig e5c
Du X, Wen J, Wang Y, Karmaus P, Khatamian A, Tan H, et al. Hippo/Mst signalling couples metabolic state and immune function of CD8α+ dendritic cells. Nature. 2018;558:141-145 pubmed publisher
  • flow cytometry; mouse; loading ...; fig s2a
Singla B, Ghoshal P, Lin H, Wei Q, Dong Z, Csanyi G. PKCδ-Mediated Nox2 Activation Promotes Fluid-Phase Pinocytosis of Antigens by Immature Dendritic Cells. Front Immunol. 2018;9:537 pubmed publisher
  • flow cytometry; mouse; fig 2d
Wasiuk A, Testa J, Weidlick J, Sisson C, Vitale L, Widger J, et al. CD27-Mediated Regulatory T Cell Depletion and Effector T Cell Costimulation Both Contribute to Antitumor Efficacy. J Immunol. 2017;199:4110-4123 pubmed publisher
  • flow cytometry; mouse; loading ...; fig 5d
Shrestha B, You D, Saravia J, Siefker D, Jaligama S, Lee G, et al. IL-4R? on dendritic cells in neonates and Th2 immunopathology in respiratory syncytial virus infection. J Leukoc Biol. 2017;102:153-161 pubmed publisher
  • flow cytometry; mouse; loading ...; fig 5d
Kitada S, Kayama H, Okuzaki D, Koga R, Kobayashi M, Arima Y, et al. BATF2 inhibits immunopathological Th17 responses by suppressing Il23a expression during Trypanosoma cruzi infection. J Exp Med. 2017;214:1313-1331 pubmed publisher
  • immunohistochemistry; mouse; 1:200; loading ...; fig 3a
Hellström Erkenstam N, Smith P, Fleiss B, Nair S, Svedin P, Wang W, et al. Temporal Characterization of Microglia/Macrophage Phenotypes in a Mouse Model of Neonatal Hypoxic-Ischemic Brain Injury. Front Cell Neurosci. 2016;10:286 pubmed publisher
  • flow cytometry; mouse; fig 2
Levit Zerdoun E, Becker M, Pohlmeyer R, Wilhelm I, Maity P, Rajewsky K, et al. Survival of Igα-Deficient Mature B Cells Requires BAFF-R Function. J Immunol. 2016;196:2348-60 pubmed publisher
  • flow cytometry; mouse; 1:100; fig 2
Schachtner H, Weimershaus M, Stache V, Plewa N, Legler D, Höpken U, et al. Loss of Gadkin Affects Dendritic Cell Migration In Vitro. PLoS ONE. 2015;10:e0143883 pubmed publisher
  • flow cytometry; mouse; fig s3
Carmi Y, Spitzer M, Linde I, Burt B, Prestwood T, Perlman N, et al. Allogeneic IgG combined with dendritic cell stimuli induce antitumour T-cell immunity. Nature. 2015;521:99-104 pubmed publisher
  • flow cytometry; mouse; fig 2
Wensveen F, Jelenčić V, Valentić S, Šestan M, Wensveen T, Theurich S, et al. NK cells link obesity-induced adipose stress to inflammation and insulin resistance. Nat Immunol. 2015;16:376-85 pubmed publisher
  • flow cytometry; mouse; tbl s3
Pannu J, Belle J, Forster M, Duerr C, Shen S, Kane L, et al. Ubiquitin specific protease 21 is dispensable for normal development, hematopoiesis and lymphocyte differentiation. PLoS ONE. 2015;10:e0117304 pubmed publisher
  • flow cytometry; mouse; fig 3
Sun H, Zhang J, Chen F, Chen X, Zhou Z, Wang H. Activation of RAW264.7 macrophages by the polysaccharide from the roots of Actinidia eriantha and its molecular mechanisms. Carbohydr Polym. 2015;121:388-402 pubmed publisher
  • flow cytometry; mouse
Cousens L, Najafian N, Martin W, De Groot A. Tregitope: Immunomodulation powerhouse. Hum Immunol. 2014;75:1139-46 pubmed publisher
  • flow cytometry; mouse; fig 2
McDonnell A, Lesterhuis W, Khong A, Nowak A, Lake R, Currie A, et al. Tumor-infiltrating dendritic cells exhibit defective cross-presentation of tumor antigens, but is reversed by chemotherapy. Eur J Immunol. 2015;45:49-59 pubmed publisher
  • flow cytometry; mouse
Chen M, Chen Y, Wu M, Yu G, Lin W, Tan T, et al. PP4 is essential for germinal center formation and class switch recombination in mice. PLoS ONE. 2014;9:e107505 pubmed publisher
  • flow cytometry; mouse; loading ...; fig 3c
Dai M, Yip Y, Hellstrom I, Hellstrom K. Curing mice with large tumors by locally delivering combinations of immunomodulatory antibodies. Clin Cancer Res. 2015;21:1127-38 pubmed publisher
  • flow cytometry; mouse; fig 3
Alsadeq A, Hobeika E, Medgyesi D, Kläsener K, Reth M. The role of the Syk/Shp-1 kinase-phosphatase equilibrium in B cell development and signaling. J Immunol. 2014;193:268-76 pubmed publisher
  • flow cytometry; mouse
Dupont C, Christian D, Selleck E, Pepper M, Leney Greene M, Harms Pritchard G, et al. Parasite fate and involvement of infected cells in the induction of CD4+ and CD8+ T cell responses to Toxoplasma gondii. PLoS Pathog. 2014;10:e1004047 pubmed publisher
  • flow cytometry; mouse; fig 3
Harimoto H, Shimizu M, Nakagawa Y, Nakatsuka K, Wakabayashi A, Sakamoto C, et al. Inactivation of tumor-specific CD8? CTLs by tumor-infiltrating tolerogenic dendritic cells. Immunol Cell Biol. 2013;91:545-55 pubmed publisher
  • flow cytometry; mouse; fig 6
Sadri N, Lu J, Badura M, Schneider R. AUF1 is involved in splenic follicular B cell maintenance. BMC Immunol. 2010;11:1 pubmed publisher
  • flow cytometry; mouse; fig 4
Ellestad K, Tsutsui S, Noorbakhsh F, Warren K, Yong V, Pittman Q, et al. Early life exposure to lipopolysaccharide suppresses experimental autoimmune encephalomyelitis by promoting tolerogenic dendritic cells and regulatory T cells. J Immunol. 2009;183:298-309 pubmed publisher
  • flow cytometry; mouse
Hamazaki Y, Fujita H, Kobayashi T, Choi Y, Scott H, Matsumoto M, et al. Medullary thymic epithelial cells expressing Aire represent a unique lineage derived from cells expressing claudin. Nat Immunol. 2007;8:304-11 pubmed
Li J, Pan Y, Yang J, Wang J, Jiang Q, Dou H, et al. Tumor necrosis factor-α-primed mesenchymal stem cell-derived exosomes promote M2 macrophage polarization via Galectin-1 and modify intrauterine adhesion on a novel murine model. Front Immunol. 2022;13:945234 pubmed publisher
De Santi C, Nally F, Afzal R, Duffy C, Fitzsimons S, Annett S, et al. Enhancing arginase 2 expression using target site blockers as a strategy to modulate macrophage phenotype. Mol Ther Nucleic Acids. 2022;29:643-655 pubmed publisher
Zhang L, Zhu Y, Wei X, Chen X, Li Y, Zhu Y, et al. Nanoplateletsomes restrain metastatic tumor formation through decoy and active targeting in a preclinical mouse model. Acta Pharm Sin B. 2022;12:3427-3447 pubmed publisher
Li Y, Li G, Zhang L, Li Y, Zhao Z. G9a promotes inflammation in Streptococcus pneumoniae induced pneumonia mice by stimulating M1 macrophage polarization and H3K9me2 methylation in FOXP1 promoter region. Ann Transl Med. 2022;10:583 pubmed publisher
Wang X, Jia P, Ren T, Zou Z, Xu S, Zhang Y, et al. MicroRNA-382 Promotes M2-Like Macrophage via the SIRP-α/STAT3 Signaling Pathway in Aristolochic Acid-Induced Renal Fibrosis. Front Immunol. 2022;13:864984 pubmed publisher
Jiang W, Wang X, Su Y, Cai L, Li J, Liang J, et al. Intranasal Immunization With a c-di-GMP-Adjuvanted Acellular Pertussis Vaccine Provides Superior Immunity Against Bordetella pertussis in a Mouse Model. Front Immunol. 2022;13:878832 pubmed publisher
Chen L, Zhou C, Chen Q, Shang J, Liu Z, Guo Y, et al. Oncolytic Zika virus promotes intratumoral T cell infiltration and improves immunotherapy efficacy in glioblastoma. Mol Ther Oncolytics. 2022;24:522-534 pubmed publisher
Liu C, Hu F, Jiao G, Guo Y, Zhou P, Zhang Y, et al. Dental pulp stem cell-derived exosomes suppress M1 macrophage polarization through the ROS-MAPK-NFκB P65 signaling pathway after spinal cord injury. J Nanobiotechnology. 2022;20:65 pubmed publisher
Yao M, Lu Y, Shi L, Huang Y, Zhang Q, Tan J, et al. A ROS-responsive, self-immolative and self-reporting hydrogen sulfide donor with multiple biological activities for the treatment of myocardial infarction. Bioact Mater. 2022;9:168-182 pubmed publisher
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Qin Q, Wang Z, Pan P, Cao Z, Xia Q, Tan H, et al. Lung dendritic cells undergo maturation and polarization towards a T helper type 2-stimulating phenotype in a mouse model of asthma: Role of nerve growth factor. Exp Ther Med. 2014;8:1402-1408 pubmed
von Buttlar H, Siegemund S, Büttner M, Alber G. Identification of Toll-like receptor 9 as parapoxvirus ovis-sensing receptor in plasmacytoid dendritic cells. PLoS ONE. 2014;9:e106188 pubmed publisher
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Yoo J, MANICONE A, McGuire J, Wang Y, Parks W. Systemic sensitization with the protein allergen ovalbumin augments local sensitization in atopic dermatitis. J Inflamm Res. 2014;7:29-38 pubmed publisher
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product information
Product Type :
Antibody
Product Name :
CD86 (B7-2) Monoclonal Antibody (GL1), eBioscience™
Catalog # :
14-0862-82
Quantity :
100 µg
Price :
US 148
Clonality :
Monoclonal
Purity :
Affinity chromatography
Host :
Rat
Reactivity :
Mouse
Applications :
Flow Cytometry: 0.5 µg/test, Functional assay: Assay-Dependent, Immunohistochemistry (Frozen): Assay-Dependent, Immunoprecipitation: Assay-Dependent, Neutralization: Assay-Dependent
Species :
Mouse
Clone :
GL1
Isotype :
IgG2a, kappa
Storage :
4° C
Description :
CD86 is one of two ligands (the other CD80) for CTLA4 and CD28. CD86 acts as costimulatory molecule in eliciting T-cell help during antigen presentation. Antigen presentation in the absence of sufficient co-stimulation involving CD86/CD80 can induce tolerance. CD80 appears to play a role distinct from CD80 in T helper cell differentiation. CD86 is a type I membrane protein that is a member of the immunoglobulin superfamily. The CD86 protein is expressed by antigen-presenting cells, and it is the ligand for two proteins at the cell surface of T cells, CD28 antigen and cytotoxic T-lymphocyte-associated protein 4. Binding of CD86 with CD28 antigen is a costimulatory signal for activation of the T-cell. Binding of CD86 with cytotoxic T-lymphocyte-associated protein 4 negatively regulates T-cell activation and diminishes the immune response. Alternative splicing results in two transcript variants encoding different isoforms of CD86. Additional transcript variants have been described for CD86, but their full-length sequences have not been determined. Diseases associated with CD86 dysfunction include gallbladder squamous cell carcinoma and myocarditis.
Format :
Liquid
Applications w/Dilutions :
Flow Cytometry: 0.5 µg/test, Functional assay: Assay-Dependent, Immunohistochemistry (Frozen): Assay-Dependent, Immunoprecipitation: Assay-Dependent, Neutralization: Assay-Dependent
Aliases :
Activation B7-2 antigen; B7; B7.2; B70; B7-2; B-lymphocyte activation antigen B7-2; BU63; Cd28l2; CD28LG2; CD86; CD86 antigen; CD86 antigen (CD28 antigen ligand 2, B7-2 antigen); CD86 antigen precursor; CD86 molecule; CLS1; CTLA-4 counter-receptor B7.2; early T cell costimulatory molecule-1; early T-cell costimulatory molecule 1; ETC-1; FUN-1; LAB72; Ly58; Ly-58; MB7; MB7-2; membrane glycoprotein; MGC34413; T-lymphocyte activation antigen CD86; TS/A-2
more info or order :
company information
Invitrogen
Thermo Fisher Scientific
81 Wyman Street
Waltham, MA USA 02451
https://www.thermofisher.com
800-678-5599
headquarters: USA