抗Human IL-22 Phycoerythrin抗体(Anti-Human IL-22 Phycoerythrin antibody)

掲載日情報:2018/11/26 現在Webページ番号:31891

Human IL-22 Phycoerythrinに対する抗体(Anti-Human IL-22 Phycoerythrin )です。
本製品は研究用です。研究用以外には使用できません。

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[在庫・価格 :2024年06月03日 00時00分現在]

※ 表示されている納期は弊社に在庫が無く、取り寄せた場合の納期目安となります。
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Anti-Human IL-22 Phycoerythrin MAb (Clone 142928)
10日程度 ※ 表示されている納期は弊社に在庫がなく、取り寄せた場合の目安納期となります。 1
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説明文
別名:Cytokine Zcyto18
クローン:142928
Genbank No: 50616
Protein Accession No: Q9GZX6
別包装品 別包装品あり
法規制等
保存条件 4℃,暗所保存,凍結禁止 法規備考
抗原種 免疫動物 Mouse クラス IgG 標識 PE
交差性 Human 適用 FCM
クロナリティ Monoclonal フォーマット 性状 Protein A/G Affinity Purified 吸収処理
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製品記事
関連記事
Anti-Human IL-22 Phycoerythrin MAb (Clone 142928)
10日程度 ※ 表示されている納期は弊社に在庫がなく、取り寄せた場合の目安納期となります。 1
  • 使用文献
  • メーカーサイト
  • お問い合わせ
説明文
別名:Cytokine Zcyto18
クローン:142928
Genbank No: 50616
Protein Accession No: Q9GZX6
別包装品 別包装品あり
法規制等
保存条件 4℃,暗所保存 法規備考
抗原種 免疫動物 Mouse クラス IgG 標識 PE
交差性 Human 適用 FCM
クロナリティ Monoclonal フォーマット 性状 Protein A/G Affinity Purified 吸収処理
掲載カタログ

製品記事
関連記事

[在庫・価格 :2024年06月03日 00時00分現在]

※ 表示されている納期は弊社に在庫が無く、取り寄せた場合の納期目安となります。

Anti-Human IL-22 Phycoerythrin MAb (Clone 142928)

文献数: 1

説明文 別名:Cytokine Zcyto18
クローン:142928
Genbank No: 50616
Protein Accession No: Q9GZX6
別包装品 別包装品あり
法規制等
保存条件 4℃,暗所保存,凍結禁止 法規備考
抗原種 免疫動物 Mouse
交差性 Human 適用 FCM
標識 PE 性状 Protein A/G Affinity Purified
吸収処理 クラス IgG
クロナリティ Monoclonal フォーマット
掲載カタログ

製品記事
関連記事

Anti-Human IL-22 Phycoerythrin MAb (Clone 142928)

文献数: 1

説明文 別名:Cytokine Zcyto18
クローン:142928
Genbank No: 50616
Protein Accession No: Q9GZX6
別包装品 別包装品あり
法規制等
保存条件 4℃,暗所保存 法規備考
抗原種 免疫動物 Mouse
交差性 Human 適用 FCM
標識 PE 性状 Protein A/G Affinity Purified
吸収処理 クラス IgG
クロナリティ Monoclonal フォーマット
掲載カタログ

製品記事
関連記事



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Product Details

Species ReactivityHuman
LabelPhycoerythrin
ImmunogenE. coli-derived recombinant human IL-22Ala34-Ile179Accession # Q9GZX6
SourceMonoclonal Mouse IgG1 Clone # 142928
PurificationProtein A or G purified from hybridoma culture supernatant
SpecificityDetects human IL-22 in direct ELISAs. In direct ELISAs, this antibody shows 100% cross-reactivity with recombinant mouse IL‑22 and recombinant rat IL‑22 and no cross-reactivity with recombinant human IL‑10.


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Applications and Data

 Recommended
Concentration
Sample
Intracellular Staining by Flow Cytometry10 µL/106 cellsSee below


Intracellular Staining by Flow Cytometry
Detection of IL‑22 in Human PBMCs by Flow Cytometry.
Human peripheral blood mononuclear cells (PBMCs) treated with PMA, Ca++ Ionomycin, LPS, and Recombinant Human IL‑23 (Catalog # 1290-IL) were stained with Mouse Anti-Human IL‑22 PE‑conjugated Monoclonal Antibody (Catalog # IC7821P) and Mouse Anti-Human CD3 epsilon APC‑conjugated Monoclonal Antibody (Catalog # FAB100A). Quadrant markers were set based on control antibody staining (Catalog # IC002P). To facilitate intracellular staining, cells were fixed with Flow Cytometry Fixation Buffer (Catalog # FC004) and permeabilized with Flow Cytometry Permeabilization/Wash Buffer I (Catalog # FC005). View our protocol for Staining Intracellular Molecules.


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Related Product & Information

BackgroundIL-22
background_contentBackground:
IL-22
Interleukin-22 (IL-22), also known as IL-10-related T cell-derived inducible factor (IL-TIF) was initially identified as a gene induced by IL-9 in mouse T cells and mast cells. Human IL-22 cDNA encodes a 179 amino acid (aa) residue protein with a putative 33 aa signal peptide that is cleaved to generate a 147 aa mature protein that shares approximately 79% and 22% aa sequence identity with mouse IL-22 and human IL-10, respectively. The human IL-22 gene is localized to chromosome 12q15. Although it exists as a single copy gene in human and in many mouse strains, the mouse IL-22 gene is duplicated in some mouse strains including C57B1/6, FVB and 129. The two mouse genes designated IL-TIF alpha and IL-TIF beta, share greater than 98% sequence homology in their coding region. IL-22 has been shown to activate STAT1 and STAT3 in several hepatoma cell lines and upregulate the production of acute phase proteins. IL-22 is produced by normal T cells upon anti-CD3 stimulation in humans. Mouse IL-22 expression is also induced in various organs upon lipopolysaccharide injection, suggesting that IL-22 may be involved in inflammatory responses. The functional IL-22 receptor complex consists of two receptor subunits, IL-22 R (previously an orphan receptor named CRF2-9) and IL-10R beta (previously known as CRF2-4), belonging to the class II cytokine receptor family.


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Citations

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.
  1. A20 upregulation during treated HIV disease is associated with intestinal epithelial cell recovery and function
    Authors: AS Chitre, MG Kattah, YY Rosli, M Pao, M Deswal, SG Deeks, PW Hunt, M Abdel-Mohs, LJ Montaner, CC Kim, A Ma, M Somsouk, JM McCune
    PLoS Pathog., 2018;14(3):e1006806.
    Species: Mouse
    Sample Type: Whole Cells
    Application: Flow

  2. Skin-infiltrating, interleukin-22-producing T cells differentiate pediatric psoriasis from adult psoriasis
    Authors: KM Cordoro, M Hitraya-Lo, K Taravati, PM Sandoval, E Kim, J Sugarman, ML Pauli, W Liao, MD Rosenblum
    J. Am. Acad. Dermatol., 2017;0(0):.
    Species: Human
    Sample Type: Whole Cells
    Application: Flow

  3. Enhancing adoptive cancer immunotherapy with V?2V?2 T cells through pulse zoledronate stimulation
    Authors: MH Nada, H Wang, G Workalemah, Y Tanaka, CT Morita
    J Immunother Cancer, 2017;5(0):9.
    Species: Human
    Sample Type: Whole Cells
    Application: Flow

  4. High frequency of intestinal TH17 cells correlates with microbiota alterations and disease activity in multiple sclerosis
    Authors: I Cosorich, G Dalla-Cost, C Sorini, R Ferrarese, MJ Messina, J Dolpady, E Radice, A Mariani, PA Testoni, F Canducci, G Comi, V Martinelli, M Falcone
    Sci Adv, 2017;3(7):e1700492.
    Species: Human
    Sample Type: Whole Cells
    Application: Flow

  5. Composition and functionality of the intrahepatic innate lymphoid cell-compartment in human non-fibrotic and fibrotic livers
    Authors: M Forkel, L Berglin, E Kekäläinen, A Carlsson, E Svedin, J Michaëlsso, M Nagasawa, JS Erjefält, M Mori, M Flodström-, A Bergquist, HG Ljunggren, M Westgren, U Lindforss, D Friberg, C Jorns, E Ellis, NK Björkström, J Mjösberg
    Eur. J. Immunol., 2017;0(0):.
    Species: Human
    Sample Type: Whole Cells
    Application: Flow

  6. IL-22-producing CD4+T cells in the treatment response of rheumatoid arthritis to combination therapy with methotrexate and leflunomide
    Authors: W Zhong, L Zhao, T Liu, Z Jiang
    Sci Rep, 2017;7(0):41143.
    Species: Human
    Sample Type: Whole Cells
    Application: Flow

  7. Expansion of Th17 Cells by Human Mast Cells Is Driven by Inflammasome-Independent IL-1?
    Authors: J Suurmond, KL Habets, AL Dorjée, TW Huizinga, RE Toes
    J. Immunol, 2016;197(11):4473-4481.
    Species: Human
    Sample Type: Whole Cells
    Application: Flow

  8. Inherited IL-17RC deficiency in patients with chronic mucocutaneous candidiasis.
    Authors: Ling Y, Cypowyj S, Aytekin C, Galicchio M, Camcioglu Y, Nepesov S, Ikinciogullari A, Dogu F, Belkadi A, Levy R, Migaud M, Boisson B, Bolze A, Itan Y, Goudin N, Cottineau J, Picard C, Abel L, Bustamante J, Casanova J, Puel A
    J Exp Med, 2015;212(5):619-31.
    Species: Human
    Sample Type: Whole Cells
    Application: Neut

  9. Th17-related cytokines contribute to recall-like expansion/effector function of HMBPP-specific Vgamma2Vdelta2 T cells after Mycobacterium tuberculosis infection or vaccination.
    Authors: Shen H, Wang Y, Chen C, Frencher J, Huang D, Yang E, Ryan-Payseur B, Chen Z
    Eur J Immunol, 2015;45(2):442-51.
    Species: Primate - Macaca fascicularis (Crab-eating Monkey or Cynomolgus Macaque)
    Sample Type: Whole Cells
    Application: Flow

  10. A higher frequency of circulating IL-22(+)CD4(+) T cells in Chinese patients with newly diagnosed Hashimoto's thyroiditis.
    Authors: Guo H, Peng D, Yang X, Wang Y, Xu B, Ni J, Meng W, Jiang Y
    PLoS ONE, 2014;9(1):e84545.
    Species: Human
    Sample Type: Whole Cells
    Application: Flow



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