Mouse IFN-gamma ELISpot Kit

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Mouse IFN-gamma ELISpot Kit Summary

Assay Type
Quantitative Sandwich ELISA
Format
96-well PVDF-backed microplate
Assay Length
3 hours 15 mins to 4 hours 30 mins*
Sample Type
Whole Cells
Specificity
Please see the product datasheet

* Provided that the recommended microplates, buffers, diluents, substrates and solutions are used, and the assay is run as summarized in the Assay Procedure provided.


PRODUCT SUMMARY
ELISpot kits are highly sensitive, microplate-based assays for the detection of cytokine secreting cells. This kit is designed for the detection and enumeration of mouse IFN-gamma. Complete ELISpot kits are ready-to-run and require no assay development or refinement.

This ELISpot assay employs a capture antibody specific for mouse IFN-gamma, pre-coated onto a PVDF-backed microplate. Appropriately stimulated cells are pipetted directly into the wells and the immobilized antibody in the immediate vicinity of the secreting cells binds secreted mouse IFN-gamma. Following wash steps and incubation with a biotinylated detection antibody, alkaline-phosphatase conjugated to streptavidin is added. Unbound enzyme is subsequently removed by washing and a substrate solution (BCIP/NBT) is added. A blue-black colored precipitate forms at the sites of cytokine localization and appears as spots, with each individual spot representing an individual mouse IFN-gamma secreting cell. The spots can be counted with an automated ELISpot reader system or manually using a stereomicroscope.


PRODUCT FEATURES

  • Detect and quantitate individual cells secreting mouse IFN-gamma
  • High sensitivity - ELISpot assays can measure responses with frequencies well below 1 in 100,000 cells
  • No in vitro expansion of cells required
  • High-throughput - ELISpot assays use only a small number of primary cells


KIT CONTENTS

  • Mouse IFN-gamma Microplate
  • Biotinylated Detection Antibody
  • Streptavidin conjugated to Alkaline Phosphatase
  • Dilution Buffers
  • Wash Buffer Concentrate
  • BCIP/NBT Chromogen
  • Mouse IFN-gamma Positive Control

OTHER REAGENTS REQUIRED

  • Pipettes and pipette tips
  • Deionized or distilled water
  • Squirt bottle, manifold dispenser, or automated microplate washer
  • 500 mL graduated cylinder
  • 37 °C CO2 incubator
  • Sterile culture media
  • Dissection microscope or an automated ELISpot reader

Product Datasheets

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Preparation and Storage

Shipping
The product is shipped with polar packs. Upon receipt, store it immediately at the temperature recommended below.
Stability & Storage
Store the unopened product at 2 - 8 °C. Do not use past expiration date.

Background: IFN-gamma

IFN-gamma (Interferon-gamma) is the prototype proinflammatory cytokine and is produced by a variety of immune cells under inflammatory conditions, notably by T cells and NK cells. It plays a key role in host defense by promoting the development and activation of Th1 cells, chemoattraction and activation of monocytes and macrophages, upregulation of antigen presentation molecules, and immunoglobulin class switching in B cells. It also exhibits antiviral, antiproliferative, and apoptotic effects. In addition, IFN-gamma functions as an anti-inflammatory mediator by promoting the development of regulatory T cells and inhibiting Th17 cell differentiation. IFN-gamma dimers signal through a receptor complex of two IFN-gamma R1 and two IFN-gamma R2 subunits.

Long Name:
Interferon gamma
Entrez Gene IDs:
3458 (Human); 15978 (Mouse); 25712 (Rat); 396991 (Porcine); 281237 (Bovine); 403801 (Canine); 493965 (Feline)
Alternate Names:
IFG; IFI; IFNG; IFNgamma; IFN-gamma; Immune interferon; interferon gamma; interferon, gamma
⚠ WARNING: This product can expose you to chemicals including methanol, which is known to the State of California to cause reproductive toxicity with developmental effects. For more information, go to www.P65Warnings.ca.gov.

Citations for Mouse IFN-gamma ELISpot Kit

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.

51 Citations: Showing 1 - 10
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  1. Immunogenicity Analysis of Chikungunya Virus DNA Vaccine Based on Mutated Putative N-Linked Glycosylation Sites of the Envelope Protein
    Authors: Kim, K;Moon, SY;Kim, S;Ouh, IO;Lee, Y;Lim, H;
    Vaccines
    Species: Mouse
    Sample Types: Whole Cells
  2. Microbiota-induced plastic T cells enhance immune control of antigen-sharing tumors
    Authors: Najar, TA;Hao, Y;Hao, Y;Romero-Meza, G;Dolynuk, A;Littman, DR;
    bioRxiv : the preprint server for biology
    Species: Mouse
    Sample Types: Whole Cells
  3. Zeolitic imidazolate frameworks activate endosomal Toll-like receptors and potentiate immunogenicity of SARS-CoV-2 spike protein trimer
    Authors: Alsaiari, SK;Nadeef, S;Daristotle, JL;Rothwell, W;Du, B;Garcia, J;Zhang, L;Sarmadi, M;Forster, TA;Menon, N;Lin, SQ;Tostanoski, LH;Hachmann, N;Wang, EY;Ventura, JD;Barouch, DH;Langer, R;Jaklenec, A;
    Science advances
    Species: Mouse
    Sample Types: Whole Cells
  4. mRNAs encoding self-DNA reactive cGAS enhance the immunogenicity of lipid nanoparticle vaccines
    Authors: Zhivaki, D;Gosselin, EA;Sengupta, D;Concepcion, H;Arinze, C;Chow, J;Nikiforov, A;Komoroski, V;MacFarlane, C;Sullivan, C;Kagan, JC;
    mBio
    Species: Mouse
    Sample Types: Whole Cells
  5. Activation of human STING by a molecular glue-like compound
    Authors: Li, J;Canham, SM;Wu, H;Henault, M;Chen, L;Liu, G;Chen, Y;Yu, G;Miller, HR;Hornak, V;Brittain, SM;Michaud, GA;Tutter, A;Broom, W;Digan, ME;McWhirter, SM;Sivick, KE;Pham, HT;Chen, CH;Tria, GS;McKenna, JM;Schirle, M;Mao, X;Nicholson, TB;Wang, Y;Jenkins, JL;Jain, RK;Tallarico, JA;Patel, SJ;Zheng, L;Ross, NT;Cho, CY;Zhang, X;Bai, XC;Feng, Y;
    Nature chemical biology
    Species: Mouse
    Sample Types: Whole Cells
  6. The role of zinc sulfate in enhancing cellular and humoral immune responses to foot-and-mouth disease vaccine
    Authors: Ko, MK;Kim, HW;Park, SH;Park, JH;Kim, SM;Lee, MJ;
    Virus research
    Species: Mouse
    Sample Types: Cell Culture Supernates
  7. Killing tumor-associated bacteria with a liposomal antibiotic generates neoantigens that induce anti-tumor immune responses
    Authors: Wang, M;Rousseau, B;Qiu, K;Huang, G;Zhang, Y;Su, H;Le Bihan-Benjamin, C;Khati, I;Artz, O;Foote, MB;Cheng, YY;Lee, KH;Miao, MZ;Sun, Y;Bousquet, PJ;Hilmi, M;Dumas, E;Hamy, AS;Reyal, F;Lin, L;Armistead, PM;Song, W;Vargason, A;Arthur, JC;Liu, Y;Guo, J;Zhou, X;Nguyen, J;He, Y;Ting, JP;Anselmo, AC;Huang, L;
    Nature biotechnology
    Species: Mouse
    Sample Types: Whole Cells
  8. A SARS-CoV-2 and influenza double hit vaccine based on RBD-conjugated inactivated influenza A virus
    Authors: Wang, Z;Li, Z;Shi, W;Zhu, D;Hu, S;Dinh, PC;Cheng, K;
    Science advances
    Species: Mouse
    Sample Types: Whole Cells
  9. Monocyte production of C1q potentiates CD8 + T cell effector function following respiratory viral infection
    Authors: Eddens, T;Parks, OB;Lou, D;Fan, L;Sojati, J;Ramsey, MJ;Schmitt, L;Salgado, CM;Reyes-Mugica, M;Oury, TD;Byersdorfer, C;Chen, K;Williams, JV;
    bioRxiv : the preprint server for biology
    Species: Mouse, Transgenic Mouse
    Sample Types: Whole Cells
  10. Surface-modified measles vaccines encoding oligomeric, fusion-stabilized SARS-CoV-2 spike glycoproteins bypass measles seropositivity, boosting neutralizing antibody responses to omicron and historical variants
    Authors: MÁ Muñoz-Alía, RA Nace, B Balakrishn, L Zhang, N Packiriswa, G Singh, P Warang, I Mena, R Narjari, R Vandergaas, A García-Sas, M Schotsaert, SJ Russell
    bioRxiv : the preprint server for biology, 2022-12-16;0(0):.
    Species: Mouse
    Sample Types: Whole Cells
  11. Suppression of pullulanase-induced cytotoxic T cell response with a dual promoter in GSD IIIa mice
    Authors: JA Lim, PS Kishnani, B Sun
    JCI Insight, 2022-12-08;7(23):.
    Species: Mouse
    Sample Types: Tissue Homgenates
  12. Enhancing the Immunogenicity of Vaccinia Virus
    Authors: SN Shchelkuno, SN Yakubitski, AA Sergeev, EV Starostina, KA Titova, SA Pyankov, GA Shchelkuno, MB Borgoyakov, AM Zadorozhny, LA Orlova, DN Kisakov, LI Karpenko
    Viruses, 2022-06-30;14(7):.
    Species: Mouse
    Sample Types: Cell Culture Supernates
  13. Disruption of the crypt niche promotes outgrowth of mutated colorectal tumor stem cells
    Authors: S Klingler, KS Hsu, G Hua, ML Martin, M Adileh, T Baslan, Z Zhang, PB Paty, Z Fuks, AM Brown, R Kolesnick
    JCI Insight, 2022-03-08;7(5):.
    Species: Mouse
    Sample Types: Whole Cells
  14. Cure of syngeneic carcinomas with targeted IL-12 through obligate reprogramming of lymphoid and myeloid immunity
    Authors: Y Hong, Y Robbins, X Yang, WK Mydlarz, A Sowers, JB Mitchell, JL Gulley, J Schlom, SR Gameiro, C Sievers, CT Allen
    JCI Insight, 2022-03-08;7(5):.
    Species: Mouse
    Sample Types: Whole Cells
  15. Self-Assembled Particles Combining SARS-CoV-2 RBD Protein and RBD DNA Vaccine Induce Synergistic Enhancement of the Humoral Response in Mice
    Authors: MB Borgoyakov, LI Karpenko, AP Rudometov, EA Volosnikov, IA Merkuleva, EV Starostina, AM Zadorozhny, AA Isaeva, VS Nesmeyanov, DV Shanshin, KO Baranov, NV Volkova, BN Zaitsev, LA Orlova, AV Zaykovskay, OV Pyankov, ED Danilenko, SI Bazhan, DN Shcherbako, AV Taranin, AA Ilyichev
    International Journal of Molecular Sciences, 2022-02-16;23(4):.
    Species: Mouse
    Sample Types: Whole Cells
  16. In situ vaccination using unique TLR9 ligand K3-SPG induces long-lasting systemic immune response and synergizes with systemic and local immunotherapy
    Authors: H Okada, K Takahashi, H Yaku, K Kobiyama, K Iwaisako, X Zhao, M Shiokawa, N Uza, Y Kodama, KJ Ishii, H Seno
    Scientific Reports, 2022-02-08;12(1):2132.
    Species: Mouse
    Sample Types: Whole Cells
  17. Disruption of the crypt niche promotes outgrowth of mutated colorectal tumor stem cells
    Authors: S Klingler, KS Hsu, G Hua, ML Martin, M Adileh, T Baslan, Z Zhang, PB Paty, Z Fuks, AM Brown, R Kolesnick
    JCI Insight, 2022;7(5):.
    Species: Mouse
    Sample Types: Whole Cells
  18. Foxp3+ CD4+ regulatory T cells control dendritic cells in inducing antigen-specific immunity to emerging SARS-CoV-2 antigens
    Authors: R Uraki, M Imai, M Ito, H Shime, M Odanaka, M Okuda, Y Kawaoka, S Yamazaki
    PloS Pathogens, 2021-12-09;17(12):e1010085.
    Species: Mouse
    Sample Types: Whole Cells
  19. A two-adjuvant multiantigen candidate vaccine induces superior protective immune responses against SARS-CoV-2 challenge
    Authors: W Jiang, L Shi, L Cai, X Wang, J Li, H Li, J Liang, Q Gu, G Ji, J Li, L Liu, M Sun
    Cell Reports, 2021-11-24;37(11):110112.
    Species: Mouse
    Sample Types: Whole Cells
  20. Adaptive Immune Response to Vaccinia Virus LIVP Infection of BALB/c Mice and Protection against Lethal Reinfection with Cowpox Virus
    Authors: SN Shchelkuno, AA Sergeev, SN Yakubitski, KA Titova, SA Pyankov, IV Kolosova, EV Starostina, MB Borgoyakov, AM Zadorozhny, DN Kisakov, IS Shulgina, LI Karpenko
    Viruses, 2021-08-17;13(8):.
    Species: Mouse
    Sample Types: Whole Cells
  21. Combination of Photodynamic Therapy and a Flagellin-Adjuvanted Cancer Vaccine Potentiated the Anti-PD-1-Mediated Melanoma Suppression
    Authors: HS Hwang, K Cherukula, YJ Bang, V Vijayan, MJ Moon, J Thiruppath, S Puth, YY Jeong, IK Park, SE Lee, JH Rhee
    Cells, 2020-11-07;9(11):.
    Species: Mouse
    Sample Types: Whole Cells
  22. Synthetic mycobacterial molecular patterns partially complete Freund's adjuvant
    Authors: JY Dubé, F McIntosh, JG Zarruk, S David, J Nigou, MA Behr
    Sci Rep, 2020-04-03;10(1):5874.
    Species: Mouse
    Sample Types: Whole Cells
  23. Immunological Analysis of a CCHFV mRNA Vaccine Candidate in Mouse Models
    Authors: T Aligholipo, K Földes, K Ergünay, H Gurdal, A Bastug, A Ozkul
    Vaccines (Basel), 2019-09-16;7(3):.
    Species: Mouse
    Sample Types: Whole Cells
  24. Broad and Effective Protection against Staphylococcus aureus Is Elicited by a Multivalent Vaccine Formulated with Novel Antigens
    Authors: J Deng, X Wang, BZ Zhang, P Gao, Q Lin, RY Kao, K Gustafsson, KY Yuen, JD Huang
    mSphere, 2019-09-04;4(5):.
    Species: Mouse
    Sample Types: Whole Cells
  25. Extracellular overproduction of E7 oncoprotein of Iranian human papillomavirus type 16 by genetically engineered Lactococcus lactis
    Authors: AH Mohseni, S Taghinezha, H Keyvani, V Razavilar
    BMC Biotechnol., 2019-01-24;19(1):8.
    Species: Mouse
    Sample Types: Whole Cells
  26. Memory CD4+ T cells enhance B cell responses to drifting influenza immunization
    Authors: E Gage, N Van Hoeven, ND Cauwelaert, SE Larsen, J Erasmus, MT Orr, RN Coler
    Eur. J. Immunol., 2018-12-21;0(0):.
    Species: Mouse
    Sample Types: Whole Cells
  27. Protection against human papillomavirus type 16-induced tumors in C57BL/6 mice by mucosal vaccination with Lactococcus lactis NZ9000 expressing E6 oncoprotein
    Authors: S Taghinezha, AH Mohseni, H Keyvani, V Razavilar
    Microb. Pathog., 2018-11-02;0(0):.
    Species: Mouse
    Sample Types: Whole Cells
  28. Live attenuated Salmonella typhimurium vaccines delivering SaEsxA and SaEsxB via type III secretion system confer protection against Staphylococcus aureus infection
    Authors: C Xu, BZ Zhang, Q Lin, J Deng, B Yu, S Arya, KY Yuen, JD Huang
    BMC Infect. Dis., 2018-04-25;18(1):195.
    Species: Mouse
    Sample Types: Whole Cells
  29. A modified HLA-A*0201-restricted CTL epitope from human oncoprotein (hPEBP4) induces more efficient antitumor responses
    Authors: W Sun, J Shi, J Wu, J Zhang, H Chen, Y Li, S Liu, Y Wu, Z Tian, X Cao, N Li
    Cell. Mol. Immunol., 2018-01-29;0(0):.
    Species: Mouse
    Sample Types: Whole Cells
  30. Immunogenicity and Protective Efficacy of the DAR-901 Booster Vaccine in a Murine Model of Tuberculosis
    PLoS ONE, 2016-12-20;11(12):e0168521.
    Species: Mouse
    Sample Types: Whole Cells
  31. Transient Expression of Transgenic IL-12 in Mouse Liver Triggers Unremitting Inflammation Mimicking Human Autoimmune Hepatitis
    J Immunol, 2016-08-10;0(0):.
    Species: Mouse
    Sample Types: Whole Cells
  32. A whole recombinant yeast-based therapeutic vaccine elicits HBV X, S and Core specific T cells in mice and activates human T cells recognizing epitopes linked to viral clearance.
    Authors: King T, Kemmler C, Guo Z, Mann D, Lu Y, Coeshott C, Gehring A, Bertoletti A, Ho Z, Delaney W, Gaggar A, Subramanian G, McHutchison J, Shrivastava S, Lee Y, Kottilil S, Bellgrau D, Rodell T, Apelian D
    PLoS ONE, 2014-07-22;9(7):e101904.
    Species: Mouse
    Sample Types: Whole Cells
  33. Elongated TCR alpha chain CDR3 favors an altered CD4 cytokine profile.
    Authors: Reynolds C, Chong D, Raynsford E, Quigley K, Kelly D, Llewellyn-Hughes J, Altmann D, Boyton R
    BMC Biol, 2014-05-09;12(0):32.
    Species: Mouse
    Sample Types: Cell Culture Supernates
  34. Epidermal RelA specifically restricts contact allergen-induced inflammation and apoptosis in skin.
    Authors: Kumari S, Herzberg B, Pofahl R, Krieg T, Haase I
    J Invest Dermatol, 2014-04-16;134(10):2541-50.
    Species: Mouse
    Sample Types: Whole Cells
  35. HIV-1 adenoviral vector vaccines expressing multi-trimeric BAFF and 4-1BBL enhance T cell mediated anti-viral immunity.
    Authors: Kanagavelu, Saravana, Termini, James M, Gupta, Sachin, Raffa, Francesc, Fuller, Katherin, Rivas, Yaelis, Philip, Sakhi, Kornbluth, Richard, Stone, Geoffrey
    PLoS ONE, 2014-02-28;9(2):e90100.
    Species: Mouse
    Sample Types: Whole Cells
  36. Production and immunogenicity of chimeric virus-like particles containing the spike glycoprotein of infectious bronchitis virus.
    Authors: Lv L, Li X, Liu G, Li R, Liu Q, Shen H, Wang W, Xue C, Cao Y
    J Vet Sci, 2013-12-27;15(2):209-16.
    Species: Mouse
    Sample Types: Whole Cells
  37. Vaccination with a fusion protein that introduces HIV-1 gag antigen into a multitrimer CD40L construct results in enhanced CD8+ T cell responses and protection from viral challenge by vaccinia-gag.
    Authors: Gupta, Sachin, Termini, James M, Raffa, Francesc, Williams, Cindi-An, Kornbluth, Richard, Stone, Geoffrey
    J Virol, 2013-11-13;88(3):1492-501.
    Species: Mouse
    Sample Types: Whole Cells
  38. Val-boroPro accelerates T cell priming via modulation of dendritic cell trafficking resulting in complete regression of established murine tumors.
    Authors: Walsh, Meghaan, Duncan, Brynn, Larabee, Shannon, Krauss, Aviva, Davis, Jessica, Cui, Yongzhi, Kim, Su Young, Guimond, Martin, Bachovchin, William, Fry, Terry J
    PLoS ONE, 2013-03-12;8(3):e58860.
    Species: Mouse
    Sample Types: Tissue Homogenates
  39. The Shc family protein adaptor, Rai, acts as a negative regulator of Th17 and Th1 cell development.
    Authors: Savino, Maria Te, Ulivieri, Cristina, Emmi, Giacomo, Prisco, Domenico, De Falco, Giulia, Ortensi, Barbara, Beccastrini, Enrico, Emmi, Lorenzo, Pelicci, Giuliana, D'Elios, Mario M, Baldari, Cosima T
    J Leukoc Biol, 2013-01-23;93(4):549-59.
    Species: Mouse
    Sample Types: Whole Cells
  40. A VLP vaccine induces broad-spectrum cross-protective antibody immunity against H5N1 and H1N1 subtypes of influenza A virus.
    Authors: Wu, Chia-Yin, Yeh, Yi-Chun, Chan, Jia-Tsro, Yang, Yu-Chih, Yang, Ji-Rong, Liu, Ming-Tsa, Wu, Ho-Sheng, Hsiao, Pei-Wen
    PLoS ONE, 2012-08-07;7(8):e42363.
    Species: Mouse
    Sample Types: Whole Cells
  41. Elicitation of broad CTL response against HIV-1 by the DNA vaccine encoding artificial multi-component fusion protein MultiHIV--study in domestic pigs.
    Authors: Molder T, Adojaan M, Kaldma K, Ustav M, Sikut R
    Vaccine, 2009-10-29;28(2):293-8.
    Species: Mouse
    Sample Types: Whole Cells
  42. Novel immunocompetent murine tumor model for evaluation of conditionally replication-competent (oncolytic) murine adenoviral vectors.
    Authors: Robinson M, Li B, Ge Y, Ko D, Yendluri S, Harding T, VanRoey M, Spindler KR, Jooss K
    J. Virol., 2009-02-04;83(8):3450-62.
    Species: Mouse
    Sample Types: Whole Cells
  43. NOD2-deficient mice have impaired resistance to Mycobacterium tuberculosis infection through defective innate and adaptive immunity.
    Authors: Divangahi M, Mostowy S, Coulombe F, Kozak R, Guillot L, Veyrier F, Kobayashi KS, Flavell RA, Gros P, Behr MA
    J. Immunol., 2008-11-15;181(10):7157-65.
    Species: Mouse
    Sample Types: Whole Cells
  44. Type I IFNs play a role in early resistance, but subsequent susceptibility, to the African trypanosomes.
    Authors: Lopez R, Demick KP, Mansfield JM, Paulnock DM
    J. Immunol., 2008-10-01;181(7):4908-17.
    Species: Mouse
    Sample Types: Whole Cells
  45. Critical role of donor tissue expression of programmed death ligand-1 in regulating cardiac allograft rejection and vasculopathy.
    Authors: Yang J, Popoola J, Khandwala S, Vadivel N, Vanguri V, Yuan X, Dada S, Guleria I, Tian C, Ansari MJ, Shin T, Yagita H, Azuma M, Sayegh MH, Chandraker A
    Circulation, 2008-01-22;117(5):660-9.
    Species: Mouse
    Sample Types: Whole Cells
  46. Immunization with adenovirus at the large intestinal mucosa as an effective vaccination strategy against sexually transmitted viral infection.
    Authors: Zhu Q, Thomson CW, Rosenthal KL, McDermott MR, Collins SM, Gauldie J
    Mucosal Immunol, 2008-01-01;1(1):78-88.
    Species: Mouse
    Sample Types: Whole Cells
  47. Nitric oxide mediates T cell cytokine production and signal transduction in histidine decarboxylase knockout mice.
    Authors: Koncz A, Pasztoi M, Mazan M, Fazakas F, Buzas E, Falus A, Nagy G
    J. Immunol., 2007-11-15;179(10):6613-9.
    Species: Mouse
    Sample Types: Whole Cells
  48. One-year Expression From High-capacity Adenoviral Vectors in the Brains of Animals With Pre-existing Anti-adenoviral Immunity: Clinical Implications.
    Authors: Barcia C, Jimenez-Dalmaroni M, Kroeger KM, Puntel M, Rapaport AJ, Larocque D, King GD, Johnson SA, Liu C, Xiong W, Candolfi M, Mondkar S, Ng P, Palmer D, Castro MG, Lowenstein PR
    Mol. Ther., 2007-09-25;15(12):2154-2163.
    Species: Mouse
    Sample Types: Whole Cells
  49. Inactivated Sendai virus particles eradicate tumors by inducing immune responses through blocking regulatory T cells.
    Authors: Kurooka M, Kaneda Y
    Cancer Res., 2007-01-01;67(1):227-36.
    Species: Mouse
    Sample Types: Whole Cells
  50. Elicitation of immunity to HIV type 1 Gag is determined by Gag structure.
    Authors: Young KR, Ross TM
    AIDS Res. Hum. Retroviruses, 2006-01-01;22(1):99-108.
    Species: Mouse
    Sample Types: Whole Cells
    Applications: ELISpot Development
  51. Immunopharmacological and antitumor effects of second-generation immunomodulatory oligonucleotides containing synthetic CpR motifs.
    Authors: Wang D, Li Y, Yu D, Song SS, Kandimalla ER, Agrawal S
    Int. J. Oncol., 2004-04-01;24(4):901-8.
    Species: Mouse
    Sample Types: Whole Cells

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Mouse IFN-gamma ELISpot Kit
By Anonymous on 10/27/2016
Sample Tested: Mouse splenocytes

http://pubs.acs.org/doi/abs/10.1021/jacs.6b05675