这是一篇来自已证抗体库的有关人类 IL 22 (IL 22) 的综述,是根据37篇发表使用所有方法的文章归纳的。这综述旨在帮助来邦网的访客找到最适合IL 22 抗体。
IL 22 同义词: IL-21; IL-22; IL-D110; IL-TIF; ILTIF; TIFIL-23; TIFa; zcyto18

赛默飞世尔
小鼠 单克隆(22URTI)
  • 流式细胞仪; 人类; 图 2d
赛默飞世尔IL 22抗体(ThermoScientific, 22URTI)被用于被用于流式细胞仪在人类样本上 (图 2d). Acta Neuropathol (2021) ncbi
大鼠 单克隆(IL22JOP)
  • 流式细胞仪; 小鼠; 1:100; 图 s9a
赛默飞世尔IL 22抗体(eBioscience, 17-7222-82)被用于被用于流式细胞仪在小鼠样本上浓度为1:100 (图 s9a). Nature (2021) ncbi
小鼠 单克隆(22URTI)
  • 流式细胞仪; 人类
赛默飞世尔IL 22抗体(ThermoFisher, 25-7229-42)被用于被用于流式细胞仪在人类样本上. Cell (2021) ncbi
大鼠 单克隆(IL22JOP)
  • 流式细胞仪; 小鼠; 图 1f
赛默飞世尔IL 22抗体(eBioscience, IL22JOP)被用于被用于流式细胞仪在小鼠样本上 (图 1f). elife (2020) ncbi
小鼠 单克隆(22URTI)
  • 流式细胞仪; 人类; 图 s7j
赛默飞世尔IL 22抗体(ThermoFisher, 50-7229-42)被用于被用于流式细胞仪在人类样本上 (图 s7j). Cell (2019) ncbi
小鼠 单克隆(22URTI)
  • 流式细胞仪; 人类; 图 1e
赛默飞世尔IL 22抗体(Thermo Fisher, 46-7229-42)被用于被用于流式细胞仪在人类样本上 (图 1e). Cell (2019) ncbi
大鼠 单克隆(IL22JOP)
  • 流式细胞仪; 小鼠; 1:200; 图 8c
赛默飞世尔IL 22抗体(BioLegend, 17-7222)被用于被用于流式细胞仪在小鼠样本上浓度为1:200 (图 8c). Front Immunol (2018) ncbi
小鼠 单克隆(22URTI)
  • 流式细胞仪; 人类; 表 1
赛默飞世尔IL 22抗体(Thermo Fisher Scientific, 12-7229-41)被用于被用于流式细胞仪在人类样本上 (表 1). J Clin Invest (2018) ncbi
小鼠 单克隆(22URTI)
  • 流式细胞仪; 人类; 图 s3
赛默飞世尔IL 22抗体(eBiosciences, 12-7229-41)被用于被用于流式细胞仪在人类样本上 (图 s3). Cell (2018) ncbi
小鼠 单克隆(22URTI)
  • 流式细胞仪; 人类; 图 1b
赛默飞世尔IL 22抗体(ebioscience, 22URTI)被用于被用于流式细胞仪在人类样本上 (图 1b). J Immunol (2017) ncbi
小鼠 单克隆(22URTI)
  • 流式细胞仪; 人类; 图 4b
赛默飞世尔IL 22抗体(eBioscience, 22URTI)被用于被用于流式细胞仪在人类样本上 (图 4b). J Immunol (2017) ncbi
小鼠 单克隆(22URTI)
  • 流式细胞仪; 人类; 图 s3b
赛默飞世尔IL 22抗体(eBioscience, 25-7229)被用于被用于流式细胞仪在人类样本上 (图 s3b). Cell (2017) ncbi
小鼠 单克隆(22URTI)
  • 流式细胞仪; 人类; 图 s2a
赛默飞世尔IL 22抗体(eBiosciences, 22URTI)被用于被用于流式细胞仪在人类样本上 (图 s2a). J Allergy Clin Immunol (2018) ncbi
大鼠 单克隆(IL22JOP)
  • 流式细胞仪; 人类; 图 5a
赛默飞世尔IL 22抗体(Ebiosciences, IL22JOP)被用于被用于流式细胞仪在人类样本上 (图 5a). Proc Natl Acad Sci U S A (2016) ncbi
大鼠 单克隆(IL22JOP)
  • 流式细胞仪; 小鼠; 图 s3g
赛默飞世尔IL 22抗体(eBioscience, IL22JOP)被用于被用于流式细胞仪在小鼠样本上 (图 s3g). Immunity (2016) ncbi
小鼠 单克隆(22URTI)
  • 流式细胞仪; 人类; 图 6
赛默飞世尔IL 22抗体(eBioscience, 22URTI)被用于被用于流式细胞仪在人类样本上 (图 6). J Transl Med (2016) ncbi
大鼠 单克隆(IL22JOP)
  • 流式细胞仪; 人类; 图 s12b
赛默飞世尔IL 22抗体(eBiosciences, IL22JOP)被用于被用于流式细胞仪在人类样本上 (图 s12b). JCI Insight (2016) ncbi
小鼠 单克隆(22URTI)
  • 流式细胞仪; 人类; 1:100; 图 3
赛默飞世尔IL 22抗体(eBioscience, 22URTI)被用于被用于流式细胞仪在人类样本上浓度为1:100 (图 3). PLoS ONE (2016) ncbi
小鼠 单克隆(22URTI)
  • 流式细胞仪; 人类; 1:100; 图 2b
赛默飞世尔IL 22抗体(eBiosciences, 12-7229-41)被用于被用于流式细胞仪在人类样本上浓度为1:100 (图 2b). Mol Med Rep (2016) ncbi
大鼠 单克隆(IL22JOP)
  • 流式细胞仪; 小鼠; 图 s4
赛默飞世尔IL 22抗体(eBioscience, 17-7222-82)被用于被用于流式细胞仪在小鼠样本上 (图 s4). Cell (2016) ncbi
大鼠 单克隆(IL22JOP)
  • 流式细胞仪; 猕猴; 图 1c
赛默飞世尔IL 22抗体(eBiosciences, IL22JOP)被用于被用于流式细胞仪在猕猴样本上 (图 1c). J Immunol (2016) ncbi
小鼠 单克隆(22URTI)
  • 流式细胞仪; 人类; 图 2d
赛默飞世尔IL 22抗体(eBiosciences, 22URTI)被用于被用于流式细胞仪在人类样本上 (图 2d). J Allergy Clin Immunol (2016) ncbi
小鼠 单克隆(22URTI)
  • 流式细胞仪; 人类; 图 s2a
赛默飞世尔IL 22抗体(eBioscience, 22URT)被用于被用于流式细胞仪在人类样本上 (图 s2a). J Immunol (2015) ncbi
大鼠 单克隆(IL22JOP)
  • 流式细胞仪; 小鼠; 1:100; 图 s4
赛默飞世尔IL 22抗体(eBioscience, 17-7222-82)被用于被用于流式细胞仪在小鼠样本上浓度为1:100 (图 s4). Nat Commun (2015) ncbi
小鼠 单克隆(22URTI)
  • 流式细胞仪; 人类; 图 2
赛默飞世尔IL 22抗体(eBioscience, 12-7229)被用于被用于流式细胞仪在人类样本上 (图 2). Allergy (2016) ncbi
小鼠 单克隆(22URTI)
  • 流式细胞仪; 人类; 图 1
赛默飞世尔IL 22抗体(eBioscience, 12-7229)被用于被用于流式细胞仪在人类样本上 (图 1). Stem Cell Reports (2015) ncbi
小鼠 单克隆(22URTI)
  • 流式细胞仪; 人类; 图 1
赛默飞世尔IL 22抗体(eBioscience, 22URTI)被用于被用于流式细胞仪在人类样本上 (图 1). Mucosal Immunol (2016) ncbi
大鼠 单克隆(IL22JOP)
  • 流式细胞仪; 人类; 图 3
赛默飞世尔IL 22抗体(eBioscience, 17-7222-82)被用于被用于流式细胞仪在人类样本上 (图 3). Scand J Immunol (2015) ncbi
大鼠 单克隆(IL22JOP)
  • dot blot; 人类; 表 s1
赛默飞世尔IL 22抗体(Ebioscience, 16- 7222-85)被用于被用于dot blot在人类样本上 (表 s1). Proc Natl Acad Sci U S A (2015) ncbi
小鼠 单克隆(22URTI)
  • 流式细胞仪; 人类
赛默飞世尔IL 22抗体(eBioscience, 22URTI)被用于被用于流式细胞仪在人类样本上. J Immunol (2014) ncbi
大鼠 单克隆(IL22JOP)
  • 流式细胞仪; 小鼠
赛默飞世尔IL 22抗体(eBioscience, IL22JOP)被用于被用于流式细胞仪在小鼠样本上. J Exp Med (2014) ncbi
小鼠 单克隆(22URTI)
  • 流式细胞仪; 人类; 图 2
赛默飞世尔IL 22抗体(eBioscience, 22URTI)被用于被用于流式细胞仪在人类样本上 (图 2). Ann Rheum Dis (2014) ncbi
大鼠 单克隆(IL22JOP)
  • 流式细胞仪; African green monkey; 图 s1b
赛默飞世尔IL 22抗体(eBioscience, IL22JOP)被用于被用于流式细胞仪在African green monkey样本上 (图 s1b). J Immunol (2013) ncbi
大鼠 单克隆(IL22JOP)
  • 流式细胞仪; 猕猴
赛默飞世尔IL 22抗体(eBioscience, IL22JOP)被用于被用于流式细胞仪在猕猴样本上. Mucosal Immunol (2012) ncbi
BioLegend
小鼠 单克隆(2G12A41)
  • 流式细胞仪; 人类; 图 4b
BioLegendIL 22抗体(Biolegend, 366704)被用于被用于流式细胞仪在人类样本上 (图 4b). Cell Mol Gastroenterol Hepatol (2020) ncbi
domestic goat 多克隆(Poly5161)
  • 流式细胞仪; 人类; 表 1
BioLegendIL 22抗体(Biolegend, Poly5161)被用于被用于流式细胞仪在人类样本上 (表 1). Cytometry A (2017) ncbi
艾博抗(上海)贸易有限公司
domestic rabbit 多克隆
  • 免疫印迹; 人类; 图 1c
艾博抗(上海)贸易有限公司IL 22抗体(Abcam, ab181007)被用于被用于免疫印迹在人类样本上 (图 1c). Clin Transl Med (2021) ncbi
文章列表
  1. Gu P, Wang D, Zhang J, Wang X, Chen Z, Gu L, et al. Protective function of interleukin-22 in pulmonary fibrosis. Clin Transl Med. 2021;11:e509 pubmed 出版商
  2. Ingelfinger F, Krishnarajah S, Kramer M, Utz S, Galli E, Lutz M, et al. Single-cell profiling of myasthenia gravis identifies a pathogenic T cell signature. Acta Neuropathol. 2021;141:901-915 pubmed 出版商
  3. Bielecki P, Riesenfeld S, Hütter J, Torlai Triglia E, Kowalczyk M, Ricardo Gonzalez R, et al. Skin-resident innate lymphoid cells converge on a pathogenic effector state. Nature. 2021;592:128-132 pubmed 出版商
  4. Rodda L, Netland J, Shehata L, Pruner K, Morawski P, Thouvenel C, et al. Functional SARS-CoV-2-Specific Immune Memory Persists after Mild COVID-19. Cell. 2021;184:169-183.e17 pubmed 出版商
  5. Tizian C, Lahmann A, Hölsken O, Cosovanu C, Kofoed Branzk M, Heinrich F, et al. c-Maf restrains T-bet-driven programming of CCR6-negative group 3 innate lymphoid cells. elife. 2020;9: pubmed 出版商
  6. Grandclaudon M, Perrot Dockès M, Trichot C, Karpf L, Abouzid O, Chauvin C, et al. A Quantitative Multivariate Model of Human Dendritic Cell-T Helper Cell Communication. Cell. 2019;179:432-447.e21 pubmed 出版商
  7. Di Blasi D, Boldanova T, Mori L, Terracciano L, Heim M, De Libero G. Unique T-Cell Populations Define Immune-Inflamed Hepatocellular Carcinoma. Cell Mol Gastroenterol Hepatol. 2020;9:195-218 pubmed 出版商
  8. Bacher P, Hohnstein T, Beerbaum E, Röcker M, Blango M, Kaufmann S, et al. Human Anti-fungal Th17 Immunity and Pathology Rely on Cross-Reactivity against Candida albicans. Cell. 2019;: pubmed 出版商
  9. Glal D, Sudhakar J, Lu H, Liu M, Chiang H, Liu Y, et al. ATF3 Sustains IL-22-Induced STAT3 Phosphorylation to Maintain Mucosal Immunity Through Inhibiting Phosphatases. Front Immunol. 2018;9:2522 pubmed 出版商
  10. D Addio F, Vergani A, Potena L, Maestroni A, Usuelli V, Ben Nasr M, et al. P2X7R mutation disrupts the NLRP3-mediated Th program and predicts poor cardiac allograft outcomes. J Clin Invest. 2018;128:3490-3503 pubmed 出版商
  11. Barrow A, Edeling M, Trifonov V, Luo J, Goyal P, Bohl B, et al. Natural Killer Cells Control Tumor Growth by Sensing a Growth Factor. Cell. 2018;172:534-548.e19 pubmed 出版商
  12. Kyoizumi S, Kubo Y, Kajimura J, Yoshida K, Hayashi T, Nakachi K, et al. Fate Decision Between Group 3 Innate Lymphoid and Conventional NK Cell Lineages by Notch Signaling in Human Circulating Hematopoietic Progenitors. J Immunol. 2017;199:2777-2793 pubmed 出版商
  13. Tyler C, McCarthy N, Lindsay J, Stagg A, Moser B, Eberl M. Antigen-Presenting Human γδ T Cells Promote Intestinal CD4+ T Cell Expression of IL-22 and Mucosal Release of Calprotectin. J Immunol. 2017;198:3417-3425 pubmed 出版商
  14. Lim A, Li Y, Lopez Lastra S, Stadhouders R, Paul F, Casrouge A, et al. Systemic Human ILC Precursors Provide a Substrate for Tissue ILC Differentiation. Cell. 2017;168:1086-1100.e10 pubmed 出版商
  15. Sullivan A, Wang E, Farrell J, Whitaker P, Faulkner L, Peckham D, et al. ?-Lactam hypersensitivity involves expansion of circulating and skin-resident TH22 cells. J Allergy Clin Immunol. 2018;141:235-249.e8 pubmed 出版商
  16. Lévy R, Okada S, Béziat V, Moriya K, Liu C, Chai L, et al. Genetic, immunological, and clinical features of patients with bacterial and fungal infections due to inherited IL-17RA deficiency. Proc Natl Acad Sci U S A. 2016;113:E8277-E8285 pubmed 出版商
  17. Sumatoh H, Teng K, Cheng Y, Newell E. Optimization of mass cytometry sample cryopreservation after staining. Cytometry A. 2017;91:48-61 pubmed 出版商
  18. Wang S, Xia P, Chen Y, Huang G, Xiong Z, Liu J, et al. Natural Killer-like B Cells Prime Innate Lymphocytes against Microbial Infection. Immunity. 2016;45:131-44 pubmed 出版商
  19. Domingues R, de Carvalho G, Aoki V, da Silva Duarte A, Sato M. Activation of myeloid dendritic cells, effector cells and regulatory T cells in lichen planus. J Transl Med. 2016;14:171 pubmed 出版商
  20. Li W, Liu L, Gomez A, Zhang J, Ramadan A, Zhang Q, et al. Proteomics analysis reveals a Th17-prone cell population in presymptomatic graft-versus-host disease. JCI Insight. 2016;1: pubmed 出版商
  21. Marafini I, Monteleone I, Di Fusco D, Sedda S, Cupi M, Fina D, et al. Celiac Disease-Related Inflammation Is Marked by Reduction of Nkp44/Nkp46-Double Positive Natural Killer Cells. PLoS ONE. 2016;11:e0155103 pubmed 出版商
  22. Fu D, Song X, Hu H, Sun M, Li Z, Tian Z. Downregulation of RUNX3 moderates the frequency of Th17 and Th22 cells in patients with psoriasis. Mol Med Rep. 2016;13:4606-12 pubmed 出版商
  23. Xiong H, Keith J, Samilo D, Carter R, Leiner I, Pamer E. Innate Lymphocyte/Ly6C(hi) Monocyte Crosstalk Promotes Klebsiella Pneumoniae Clearance. Cell. 2016;165:679-89 pubmed 出版商
  24. Rueda C, Presicce P, Jackson C, Miller L, Kallapur S, Jobe A, et al. Lipopolysaccharide-Induced Chorioamnionitis Promotes IL-1-Dependent Inflammatory FOXP3+ CD4+ T Cells in the Fetal Rhesus Macaque. J Immunol. 2016;196:3706-15 pubmed 出版商
  25. Di Meglio P, Villanova F, Navarini A, Mylonas A, Tosi I, Nestle F, et al. Targeting CD8(+) T cells prevents psoriasis development. J Allergy Clin Immunol. 2016;138:274-276.e6 pubmed 出版商
  26. Schulz A, Mälzer J, Domingo C, Jürchott K, Grützkau A, Babel N, et al. Low Thymic Activity and Dendritic Cell Numbers Are Associated with the Immune Response to Primary Viral Infection in Elderly Humans. J Immunol. 2015;195:4699-711 pubmed 出版商
  27. Zanvit P, Konkel J, Jiao X, Kasagi S, Zhang D, Wu R, et al. Antibiotics in neonatal life increase murine susceptibility to experimental psoriasis. Nat Commun. 2015;6:8424 pubmed 出版商
  28. Wawrzyniak M, Ochsner U, Wirz O, Wawrzyniak P, Van De Veen W, Akdis C, et al. A novel, dual cytokine-secretion assay for the purification of human Th22 cells that do not co-produce IL-17A. Allergy. 2016;71:47-57 pubmed 出版商
  29. Wang W, Yen M, Liu K, Hsu P, Lin M, Chen P, et al. Interleukin-25 Mediates Transcriptional Control of PD-L1 via STAT3 in Multipotent Human Mesenchymal Stromal Cells (hMSCs) to Suppress Th17 Responses. Stem Cell Reports. 2015;5:392-404 pubmed 出版商
  30. Yawata N, Selva K, Liu Y, Tan K, Lee A, Siak J, et al. Dynamic change in natural killer cell type in the human ocular mucosa in situ as means of immune evasion by adenovirus infection. Mucosal Immunol. 2016;9:159-70 pubmed 出版商
  31. Dyring Andersen B, Bonefeld C, Bzorek M, Løvendorf M, Lauritsen J, Skov L, et al. The Vitamin D Analogue Calcipotriol Reduces the Frequency of CD8+ IL-17+ T Cells in Psoriasis Lesions. Scand J Immunol. 2015;82:84-91 pubmed 出版商
  32. Lu Y, Xue Q, Eisele M, Sulistijo E, Brower K, Han L, et al. Highly multiplexed profiling of single-cell effector functions reveals deep functional heterogeneity in response to pathogenic ligands. Proc Natl Acad Sci U S A. 2015;112:E607-15 pubmed 出版商
  33. Bacher P, Kniemeyer O, Teutschbein J, Thön M, Vödisch M, Wartenberg D, et al. Identification of immunogenic antigens from Aspergillus fumigatus by direct multiparameter characterization of specific conventional and regulatory CD4+ T cells. J Immunol. 2014;193:3332-43 pubmed 出版商
  34. Longman R, Diehl G, Victorio D, Huh J, Galan C, Miraldi E, et al. CX?CR1? mononuclear phagocytes support colitis-associated innate lymphoid cell production of IL-22. J Exp Med. 2014;211:1571-83 pubmed 出版商
  35. Melis L, Van Praet L, Pircher H, Venken K, Elewaut D. Senescence marker killer cell lectin-like receptor G1 (KLRG1) contributes to TNF-? production by interaction with its soluble E-cadherin ligand in chronically inflamed joints. Ann Rheum Dis. 2014;73:1223-31 pubmed 出版商
  36. Canary L, Vinton C, Morcock D, Pierce J, Estes J, Brenchley J, et al. Rate of AIDS progression is associated with gastrointestinal dysfunction in simian immunodeficiency virus-infected pigtail macaques. J Immunol. 2013;190:2959-65 pubmed 出版商
  37. Klatt N, Estes J, Sun X, Ortiz A, Barber J, Harris L, et al. Loss of mucosal CD103+ DCs and IL-17+ and IL-22+ lymphocytes is associated with mucosal damage in SIV infection. Mucosal Immunol. 2012;5:646-57 pubmed 出版商