product summary
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company name :
BioLegend
other brands :
Babco, Signet, Sternberger Monoclonals, Senetek, Covance
product type :
antibody
product name :
FITC anti-mouse IFN-γ
catalog :
505805
quantity :
25 μg
price :
33 USD
clonality :
monoclonal
host :
rat
conjugate :
FITC
clone name :
XMG1.2
reactivity :
mouse
application :
immunocytochemistry, flow cytometry
more info or order :
citations: 90
Published Application/Species/Sample/DilutionReference
  • flow cytometry; mouse; fig 2b
Tanaka Y, Onozato M, Mikami T, Kohwi Shigematsu T, Fukushima T, Kondo M. Increased Indoleamine 2,3-Dioxygenase Levels at the Onset of Sjögren's Syndrome in SATB1-Conditional Knockout Mice. Int J Mol Sci. 2021;22: pubmed publisher
  • flow cytometry; mouse; loading ...; fig 4
Zhao Y, Yang Q, Jin C, Feng Y, Xie S, Xie H, et al. Changes of CD103-expressing pulmonary CD4+ and CD8+ T cells in S. japonicum infected C57BL/6 mice. BMC Infect Dis. 2019;19:999 pubmed publisher
  • flow cytometry; mouse; 1:100; loading ...; fig s4c
He Z, Zhang J, Huang Z, Du Q, Li N, Zhang Q, et al. Sumoylation of RORγt regulates TH17 differentiation and thymocyte development. Nat Commun. 2018;9:4870 pubmed publisher
  • flow cytometry; mouse; loading ...; fig e1b
Zhang S, Takaku M, Zou L, Gu A, Chou W, Zhang G, et al. Reversing SKI-SMAD4-mediated suppression is essential for TH17 cell differentiation. Nature. 2017;551:105-109 pubmed publisher
  • flow cytometry; mouse; loading ...; fig s2
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
  • flow cytometry; mouse; loading ...; fig 5c
Takahashi T, Asano Y, Sugawara K, Yamashita T, Nakamura K, Saigusa R, et al. Epithelial Fli1 deficiency drives systemic autoimmunity and fibrosis: Possible roles in scleroderma. J Exp Med. 2017;214:1129-1151 pubmed publisher
  • flow cytometry; mouse
White C, Villarino N, Sloan S, Ganusov V, Schmidt N. Plasmodium suppresses expansion of T cell responses to heterologous infections. J Immunol. 2015;194:697-708 pubmed publisher
  • flow cytometry; mouse
Nancy P, Tagliani E, Tay C, Asp P, Levy D, Erlebacher A. Chemokine gene silencing in decidual stromal cells limits T cell access to the maternal-fetal interface. Science. 2012;336:1317-21 pubmed publisher
  • flow cytometry; mouse
Michaud M, Martins I, Sukkurwala A, Adjemian S, Ma Y, Pellegatti P, et al. Autophagy-dependent anticancer immune responses induced by chemotherapeutic agents in mice. Science. 2011;334:1573-7 pubmed publisher
Zhang L, Zhao W, Huang J, Li F, Sheng J, Song H, et al. Development of a Dendritic Cell/Tumor Cell Fusion Cell Membrane Nano-Vaccine for the Treatment of Ovarian Cancer. Front Immunol. 2022;13:828263 pubmed publisher
Volpedo G, Pacheco Fernández T, Holcomb E, Zhang W, Lypaczewski P, Cox B, et al. Centrin-deficient Leishmania mexicana confers protection against New World cutaneous leishmaniasis. NPJ Vaccines. 2022;7:32 pubmed publisher
Sun C, Fujisawa M, Ohara T, Liu Q, Cao C, Yang X, et al. Spred2 controls the severity of Concanavalin A-induced liver damage by limiting interferon-gamma production by CD4+ and CD8+ T cells. J Adv Res. 2022;35:71-86 pubmed publisher
Cai B, Liu Y, Chong Y, Zhang H, Matsunaga A, Fang X, et al. IRAK1-regulated IFN-γ signaling induces MDSC to facilitate immune evasion in FGFR1-driven hematological malignancies. Mol Cancer. 2021;20:165 pubmed publisher
He X, Zhou S, Dolan M, Shi Y, Wang J, Quinn B, et al. Immunization with short peptide particles reveals a functional CD8+ T-cell neoepitope in a murine renal carcinoma model. J Immunother Cancer. 2021;9: pubmed publisher
Tseng S, Liu L, Peng S, Kim J, Ferrall L, Hung C, et al. Control of Spontaneous HPV16 E6/E7 Expressing Oral Cancer in HLA-A2 (AAD) Transgenic Mice with Therapeutic HPV DNA Vaccine. J Biomed Sci. 2021;28:63 pubmed publisher
Dai X, Bu X, Gao Y, Guo J, Hu J, Jiang C, et al. Energy status dictates PD-L1 protein abundance and anti-tumor immunity to enable checkpoint blockade. Mol Cell. 2021;81:2317-2331.e6 pubmed publisher
Mitchell J, Lund M, Starmer J, Ge K, Magnuson T, Shpargel K, et al. UTX promotes CD8+ T cell-mediated antiviral defenses but reduces T cell durability. Cell Rep. 2021;35:108966 pubmed publisher
Tartey S, Neale G, Vogel P, Malireddi R, Kanneganti T. A MyD88/IL1R Axis Regulates PD-1 Expression on Tumor-Associated Macrophages and Sustains Their Immunosuppressive Function in Melanoma. Cancer Res. 2021;81:2358-2372 pubmed publisher
Deerhake M, Danzaki K, Inoue M, Cardakli E, Nonaka T, Aggarwal N, et al. Dectin-1 limits autoimmune neuroinflammation and promotes myeloid cell-astrocyte crosstalk via Card9-independent expression of Oncostatin M. Immunity. 2021;54:484-498.e8 pubmed publisher
Wu B, Zhang S, Guo Z, Bi Y, Zhou M, Li P, et al. The TGF-β superfamily cytokine Activin-A is induced during autoimmune neuroinflammation and drives pathogenic Th17 cell differentiation. Immunity. 2021;54:308-323.e6 pubmed publisher
Wang J, Xu Y, Chen Z, Liang J, Lin Z, Liang H, et al. Liver Immune Profiling Reveals Pathogenesis and Therapeutics for Biliary Atresia. Cell. 2020;183:1867-1883.e26 pubmed publisher
Montel Hagen A, Sun V, Casero D, Tsai S, Zampieri A, Jackson N, et al. In Vitro Recapitulation of Murine Thymopoiesis from Single Hematopoietic Stem Cells. Cell Rep. 2020;33:108320 pubmed publisher
Yang W, Yu T, Huang X, Bilotta A, Xu L, Lu Y, et al. Intestinal microbiota-derived short-chain fatty acids regulation of immune cell IL-22 production and gut immunity. Nat Commun. 2020;11:4457 pubmed publisher
McCauley M, O Rourke J, Yáñez A, Markman J, Ho R, Wang X, et al. C9orf72 in myeloid cells suppresses STING-induced inflammation. Nature. 2020;585:96-101 pubmed publisher
Ukidve A, Zhao Z, Fehnel A, Krishnan V, Pan D, Gao Y, et al. Erythrocyte-driven immunization via biomimicry of their natural antigen-presenting function. Proc Natl Acad Sci U S A. 2020;117:17727-17736 pubmed publisher
Vardhana S, Hwee M, Berisa M, Wells D, Yost K, King B, et al. Impaired mitochondrial oxidative phosphorylation limits the self-renewal of T cells exposed to persistent antigen. Nat Immunol. 2020;: pubmed publisher
Kim E, Woodruff M, Grigoryan L, Maier B, Lee S, Mandal P, et al. Squalene emulsion-based vaccine adjuvants stimulate CD8 T cell, but not antibody responses, through a RIPK3-dependent pathway. elife. 2020;9: pubmed publisher
Cheng Y, Kiene N, Tatarian A, Eix E, Schorey J. Host cytosolic RNA sensing pathway promotes T Lymphocyte-mediated mycobacterial killing in macrophages. PLoS Pathog. 2020;16:e1008569 pubmed publisher
Ni J, Wang X, Stojanovic A, Zhang Q, Wincher M, Bühler L, et al. Single-Cell RNA Sequencing of Tumor-Infiltrating NK Cells Reveals that Inhibition of Transcription Factor HIF-1α Unleashes NK Cell Activity. Immunity. 2020;52:1075-1087.e8 pubmed publisher
Zeng J, Lei L, Zeng Q, Yao Y, Wu Y, Li Q, et al. Ozone Therapy Attenuates NF-κB-Mediated Local Inflammatory Response and Activation of Th17 Cells in Treatment for Psoriasis. Int J Biol Sci. 2020;16:1833-1845 pubmed publisher
Isakova Sivak I, Matyushenko V, Stepanova E, Matushkina A, Kotomina T, Mezhenskaya D, et al. Recombinant Live Attenuated Influenza Vaccine Viruses Carrying Conserved T-cell Epitopes of Human Adenoviruses Induce Functional Cytotoxic T-Cell Responses and Protect Mice against Both Infections. Vaccines (Basel). 2020;8: pubmed publisher
Hewitson J, West K, James K, Rani G, Dey N, Romano A, et al. Malat1 Suppresses Immunity to Infection through Promoting Expression of Maf and IL-10 in Th Cells. J Immunol. 2020;204:2949-2960 pubmed publisher
Lu Y, Zhao Q, Liao J, Song E, Xia Q, Pan J, et al. Complement Signals Determine Opposite Effects of B Cells in Chemotherapy-Induced Immunity. Cell. 2020;180:1081-1097.e24 pubmed publisher
Ford K, Hanley C, Mellone M, Szyndralewiez C, Heitz F, Wiesel P, et al. NOX4 Inhibition Potentiates Immunotherapy by Overcoming Cancer-Associated Fibroblast-Mediated CD8 T-cell Exclusion from Tumors. Cancer Res. 2020;80:1846-1860 pubmed publisher
Moufarrij S, Srivastava A, Gomez S, Hadley M, Palmer E, Austin P, et al. Combining DNMT and HDAC6 inhibitors increases anti-tumor immune signaling and decreases tumor burden in ovarian cancer. Sci Rep. 2020;10:3470 pubmed publisher
Angelou C, Wells A, Vijayaraghavan J, Dougan C, Lawlor R, Iverson E, et al. Differentiation of Pathogenic Th17 Cells Is Negatively Regulated by Let-7 MicroRNAs in a Mouse Model of Multiple Sclerosis. Front Immunol. 2019;10:3125 pubmed publisher
Field C, Baixauli F, Kyle R, Puleston D, Cameron A, Sanin D, et al. Mitochondrial Integrity Regulated by Lipid Metabolism Is a Cell-Intrinsic Checkpoint for Treg Suppressive Function. Cell Metab. 2020;31:422-437.e5 pubmed publisher
Chao C, Gutiérrez Vázquez C, Rothhammer V, Mayo L, Wheeler M, Tjon E, et al. Metabolic Control of Astrocyte Pathogenic Activity via cPLA2-MAVS. Cell. 2019;179:1483-1498.e22 pubmed publisher
Magen A, Nie J, Ciucci T, Tamoutounour S, Zhao Y, Mehta M, et al. Single-Cell Profiling Defines Transcriptomic Signatures Specific to Tumor-Reactive versus Virus-Responsive CD4+ T Cells. Cell Rep. 2019;29:3019-3032.e6 pubmed publisher
He J, Yang Q, Xiao Q, Lei A, Li X, Zhou P, et al. IRF-7 Is a Critical Regulator of Type 2 Innate Lymphoid Cells in Allergic Airway Inflammation. Cell Rep. 2019;29:2718-2730.e6 pubmed publisher
Gupta S, Sharp R, Hofferek C, Kuai L, Dorn G, Wang J, et al. NIX-Mediated Mitophagy Promotes Effector Memory Formation in Antigen-Specific CD8+ T Cells. Cell Rep. 2019;29:1862-1877.e7 pubmed publisher
Wang X, Sun G, Feng T, Zhang J, Huang X, Wang T, et al. Sodium oligomannate therapeutically remodels gut microbiota and suppresses gut bacterial amino acids-shaped neuroinflammation to inhibit Alzheimer's disease progression. Cell Res. 2019;29:787-803 pubmed publisher
Sasaki K, Himeno A, Nakagawa T, Sasaki Y, Kiyonari H, Iwai K. Modulation of autoimmune pathogenesis by T cell-triggered inflammatory cell death. Nat Commun. 2019;10:3878 pubmed publisher
Gagnon J, Kageyama R, Shehata H, Fassett M, Mar D, Wigton E, et al. miR-15/16 Restrain Memory T Cell Differentiation, Cell Cycle, and Survival. Cell Rep. 2019;28:2169-2181.e4 pubmed publisher
Yang X, Guo Y, Guo Z, Si T, Xing W, Yu W, et al. Cryoablation inhibition of distant untreated tumors (abscopal effect) is immune mediated. Oncotarget. 2019;10:4180-4191 pubmed publisher
Yang B, Wang K, Wan S, Liang Y, Yuan X, Dong Y, et al. TCF1 and LEF1 Control Treg Competitive Survival and Tfr Development to Prevent Autoimmune Diseases. Cell Rep. 2019;27:3629-3645.e6 pubmed publisher
Nika L, Cuadrado Castano S, Asthagiri Arunkumar G, Grünwald Gruber C, McMahon M, Koczka K, et al. An HER2-Displaying Virus-Like Particle Vaccine Protects from Challenge with Mammary Carcinoma Cells in a Mouse Model. Vaccines (Basel). 2019;7: pubmed publisher
Misumi I, Cook K, Mitchell J, Lund M, Vick S, Lee R, et al. Identification of a Locus in Mice that Regulates the Collateral Damage and Lethality of Virus Infection. Cell Rep. 2019;27:1387-1396.e5 pubmed publisher
Hu Q, Sun W, Wang J, Ruan H, Zhang X, Ye Y, et al. Conjugation of haematopoietic stem cells and platelets decorated with anti-PD-1 antibodies augments anti-leukaemia efficacy. Nat Biomed Eng. 2018;2:831-840 pubmed publisher
Misumi I, Starmer J, Uchimura T, Beck M, Magnuson T, Whitmire J. Obesity Expands a Distinct Population of T Cells in Adipose Tissue and Increases Vulnerability to Infection. Cell Rep. 2019;27:514-524.e5 pubmed publisher
Burzynski L, Humphry M, Pyrillou K, Wiggins K, Chan J, Figg N, et al. The Coagulation and Immune Systems Are Directly Linked through the Activation of Interleukin-1α by Thrombin. Immunity. 2019;50:1033-1042.e6 pubmed publisher
Alessandrini F, Menotti L, Avitabile E, Appolloni I, Ceresa D, Marubbi D, et al. Eradication of glioblastoma by immuno-virotherapy with a retargeted oncolytic HSV in a preclinical model. Oncogene. 2019;38:4467-4479 pubmed publisher
Uchimura T, Oyama Y, Deng M, Guo H, Wilson J, Rampanelli E, et al. The Innate Immune Sensor NLRC3 Acts as a Rheostat that Fine-Tunes T Cell Responses in Infection and Autoimmunity. Immunity. 2018;49:1049-1061.e6 pubmed publisher
Ren W, Liao Y, Ding X, Jiang Y, Yan J, Xia Y, et al. Slc6a13 deficiency promotes Th17 responses during intestinal bacterial infection. Mucosal Immunol. 2019;12:531-544 pubmed publisher
Wu B, Zhang S, Guo Z, Wang G, Zhang G, Xie L, et al. RAS P21 Protein Activator 3 (RASA3) Specifically Promotes Pathogenic T Helper 17 Cell Generation by Repressing T-Helper-2-Cell-Biased Programs. Immunity. 2018;49:886-898.e5 pubmed publisher
Sade Feldman M, Yizhak K, Bjorgaard S, Ray J, de Boer C, Jenkins R, et al. Defining T Cell States Associated with Response to Checkpoint Immunotherapy in Melanoma. Cell. 2018;175:998-1013.e20 pubmed publisher
Shimada K, Porritt R, Markman J, O Rourke J, Wakita D, Noval Rivas M, et al. T-Cell-Intrinsic Receptor Interacting Protein 2 Regulates Pathogenic T Helper 17 Cell Differentiation. Immunity. 2018;49:873-885.e7 pubmed publisher
Kong X, Martinez Barricarte R, Kennedy J, Mele F, Lazarov T, Deenick E, et al. Disruption of an antimycobacterial circuit between dendritic and helper T cells in human SPPL2a deficiency. Nat Immunol. 2018;19:973-985 pubmed publisher
Sartorius R, D Apice L, Barba P, Cipria D, Grauso L, Cutignano A, et al. Vectorized Delivery of Alpha-GalactosylCeramide and Tumor Antigen on Filamentous Bacteriophage fd Induces Protective Immunity by Enhancing Tumor-Specific T Cell Response. Front Immunol. 2018;9:1496 pubmed publisher
Dar H, Shukla P, Mishra P, Anupam R, Mondal R, Tomar G, et al. Lactobacillus acidophilus inhibits bone loss and increases bone heterogeneity in osteoporotic mice via modulating Treg-Th17 cell balance. Bone Rep. 2018;8:46-56 pubmed publisher
Zhu C, Xia L, Li F, Zhou L, Weng Q, Li Z, et al. mTOR complexes differentially orchestrates eosinophil development in allergy. Sci Rep. 2018;8:6883 pubmed publisher
Nakornpakdee Y, Sermswan R, Maneewatchararangsri S, Wongratanacheewin S. Hamster IFN-γ+CD4+ and IL-4+CD4+ T cell responses against leptospires are significantly higher than those of mice. Asian Pac J Allergy Immunol. 2018;36:265-272 pubmed publisher
Dar H, Singh A, Shukla P, Anupam R, Mondal R, Mishra P, et al. High dietary salt intake correlates with modulated Th17-Treg cell balance resulting in enhanced bone loss and impaired bone-microarchitecture in male mice. Sci Rep. 2018;8:2503 pubmed publisher
Smith L, Boukhaled G, Condotta S, Mazouz S, Guthmiller J, Vijay R, et al. Interleukin-10 Directly Inhibits CD8+ T Cell Function by Enhancing N-Glycan Branching to Decrease Antigen Sensitivity. Immunity. 2018;48:299-312.e5 pubmed publisher
Guo C, Subjeck J, Wang X. Creation of Recombinant Chaperone Vaccine Using Large Heat Shock Protein for Antigen-Targeted Cancer Immunotherapy. Methods Mol Biol. 2018;1709:345-357 pubmed publisher
Ding Z, Habtetsion T, Cao Y, Li T, Liu C, Kuczma M, et al. Adjuvant IL-7 potentiates adoptive T cell therapy by amplifying and sustaining polyfunctional antitumor CD4+ T cells. Sci Rep. 2017;7:12168 pubmed publisher
Onodera A, Kiuchi M, Kokubo K, Kato M, Ogino T, Horiuchi S, et al. Menin Controls the Memory Th2 Cell Function by Maintaining the Epigenetic Integrity of Th2 Cells. J Immunol. 2017;199:1153-1162 pubmed publisher
Thiemann S, Smit N, Roy U, Lesker T, Gálvez E, Helmecke J, et al. Enhancement of IFNγ Production by Distinct Commensals Ameliorates Salmonella-Induced Disease. Cell Host Microbe. 2017;21:682-694.e5 pubmed publisher
Li B, Schmidt N. Epidermal Fatty Acid Binding Protein (E-FABP) Is Not Required for the Generation or Maintenance of Effector and Memory T Cells following Infection with Listeria monocytogenes. PLoS ONE. 2016;11:e0162427 pubmed publisher
Zamora Chimal J, Fernández Figueroa E, Ruiz Remigio A, Wilkins Rodríguez A, Delgado Domínguez J, Salaiza Suazo N, et al. NKT cell activation by Leishmania mexicana LPG: Description of a novel pathway. Immunobiology. 2017;222:454-462 pubmed publisher
Sood S, Brownlie R, Garcia C, Cowan G, Salmond R, Sakaguchi S, et al. Loss of the Protein Tyrosine Phosphatase PTPN22 Reduces Mannan-Induced Autoimmune Arthritis in SKG Mice. J Immunol. 2016;197:429-40 pubmed publisher
Pinget G, Corpuz T, Stolp J, Lousberg E, Diener K, Robertson S, et al. The majority of murine ?? T cells at the maternal-fetal interface in pregnancy produce IL-17. Immunol Cell Biol. 2016;94:623-30 pubmed publisher
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product information
Antigen :
IFN-gamma
Apps. Abbrev. :
ICFC
Cat # :
505805
Clone :
XMG1.2
Item :
FITC anti-mouse IFN-γ
Isotype :
Rat IgG1, κ
Other Names :
Interferon-γ, Immune interferon, Type II interferon, T cell interferon, Macrophage-activating factor (MAF)
Size :
25 μg
Price (USD) :
33 USD
Reactivity :
Mouse
Clonality :
Monoclonal
Host :
Rat
Conjugate/Tag/Label :
FITC
Immunogen :
E. coli -expressed, recombinant mouse IFN-γ
Application Notes :
ELISA^1-4,11,14 or ELISPOT^5 Detection: The biotinylated XMG1.2 antibody is useful as a detection antibody for a sandwich ELISA or ELISPOT assay, when used in conjunction with purified R4-6A2 antibody (Cat. No. 505702/505706) as the capture antibody and recombinant mouse IFN-γ (Cat. No. 575309) as the standard.ELISA or ELISPOT Capture: The purified XMG1.2 antibody is useful as a capture antibody for a sandwich ELISA or ELISPOT assay, when used in conjunction with biotinylated R4-6A2 antibody (Cat. No. 505704) as the detection antibody and recombinant mouse IFN-γ (Cat. No. 575309) as the standard. The LEAF™ purified antibody is suggested for ELISPOT capture (Cat. No. 505812).Flow Cytometry^7,8,12,13,16: The fluorochrome-labeled XMG1.2 antibody is useful for intracellular immunofluorescent staining and flow cytometric analysis to identify IFN-γ-producing cells within mixed cell populations.Neutralization^1-3,9,10: The XMG1.2 antibody can neutralize the bioactivity of natural or recombinant IFN-γ. The LEAF™ purified antibody (Endotoxin <0.1 EU/µg, Azide-Free, 0.2 µm filtered) is recommended for neutralization of mouse IFN-γ bioactivity in vivo and in vitro (Cat. No. 505812). For in vivo studies or highly sensitive assays, we recommend Ultra-LEAF™ purified antibody (Cat. No. 505834) with a lower endotoxin limit than standard LEAF™ purified antibodies (Endotoxin <0.01 EU/µg).Additional reported applications (for the relevant formats) include: Western blotting, immunohistochemical staining of frozen tissue sections^6,22,23, and immunocytochemistry.Note: For testing mouse IFN-γ in serum, plasma or supernatant, BioLegend's ELISA Max™ Sets (Cat. No. 430801 to 430806) are specially developed and recommended.;
more info or order :
company information
BioLegend
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San Diego, CA 92121
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https://www.biolegend.com
headquarters: USA