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CD163 抗体 (AA 1001-1121)

This anti-CD163 antibody is a 兔 多克隆 antibody detecting CD163 in WB, FACS, ELISA, IHC (p), ICC, IHC (fro), IF (cc) 和 IF (p). Suitable for 人, 小鼠, 大鼠, Pig 和 犬. This Primary Antibody has been cited in 27+ publications.
产品编号 ABIN741570
发货至: 中国

Quick Overview for CD163 抗体 (AA 1001-1121) (ABIN741570)

抗原

See all CD163 抗体
CD163

适用

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人, 小鼠, 大鼠, Pig, 犬

宿主

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  • 99
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克隆类型

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多克隆

标记

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This CD163 antibody is un-conjugated

应用范围

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Western Blotting (WB), Flow Cytometry (FACS), ELISA, Immunohistochemistry (Paraffin-embedded Sections) (IHC (p)), Immunocytochemistry (ICC), Immunohistochemistry (Frozen Sections) (IHC (fro)), Immunofluorescence (Cultured Cells) (IF (cc)), Immunofluorescence (Paraffin-embedded Sections) (IF (p))
  • 抗原表位

    • 36
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    AA 1001-1121

    交叉反应

    犬, 人, 小鼠, Pig, 大鼠

    预测反应

    Horse

    纯化方法

    Purified by Protein A.

    免疫原

    KLH conjugated synthetic peptide derived from human CD163/M130

    亚型

    IgG
  • 应用备注

    WB 1:300-5000
    ELISA 1:500-1000
    FCM 1:20-100
    IHC-P 1:200-400
    IHC-F 1:100-500
    IF(IHC-P) 1:50-200
    IF(IHC-F) 1:50-200
    IF(ICC) 1:50-200
    ICC 1:100-500

    限制

    仅限研究用
  • 状态

    Liquid

    浓度

    1 μg/μL

    缓冲液

    0.01M TBS( pH 7.4) with 1 % BSA, 0.02 % Proclin300 and 50 % Glycerol.

    储存液

    ProClin

    注意事项

    This product contains ProClin: a POISONOUS AND HAZARDOUS SUBSTANCE, which should be handled by trained staff only.

    储存条件

    4 °C,-20 °C

    储存方法

    Shipped at 4°C. Store at -20°C for one year. Avoid repeated freeze/thaw cycles.

    有效期

    12 months
  • Riuzzi, Beccafico, Sagheddu, Chiappalupi, Giambanco, Bereshchenko, Riccardi, Sorci, Donato: "Levels of S100B protein drive the reparative process in acute muscle injury and muscular dystrophy." in: Scientific reports, Vol. 7, Issue 1, pp. 12537, (2019) (PubMed).

    Kobori, Hamasaki, Kitaura, Yamazaki, Nishinaka, Niwa, Nakao, Wake, Mori, Yoshino, Nishibori, Takahashi: "Interleukin-18 Amplifies Macrophage Polarization and Morphological Alteration, Leading to Excessive Angiogenesis." in: Frontiers in immunology, Vol. 9, pp. 334, (2019) (PubMed).

    Yin, Chang, Xu: "Expressions Profiles of the Proteins Associated with Carbohydrate Metabolism in Rat Liver Regeneration." in: BioMed research international, Vol. 2017, pp. 8428926, (2018) (PubMed).

    Chen, Zhang, Wang, Chen, Yan, Zhang, Zhang: "Peptide-modified chitosan hydrogels promote skin wound healing by enhancing wound angiogenesis and inhibiting inflammation." in: American journal of translational research, Vol. 9, Issue 5, pp. 2352-2362, (2017) (PubMed).

    Bobi, Solanes, Fernández-Jiménez, Galán-Arriola, Dantas, Fernández-Friera, Gálvez-Montón, Rigol-Monzó, Agüero, Ramírez, Roqué, Bayés-Genís, Sánchez-González, García-Álvarez, Sabaté, Roura, Ibáñez et al.: "Intracoronary Administration of Allogeneic Adipose Tissue-Derived Mesenchymal Stem Cells Improves Myocardial Perfusion But Not Left Ventricle Function, in a Translational Model of Acute Myocardial ..." in: Journal of the American Heart Association, Vol. 6, Issue 5, (2017) (PubMed).

    Gerzanich, Makar, Guda, Kwon, Stokum, Woo, Ivanova, Ivanov, Mehta, Morris, Bryan, Bever, Simard: "Salutary effects of glibenclamide during the chronic phase of murine experimental autoimmune encephalomyelitis." in: Journal of neuroinflammation, Vol. 14, Issue 1, pp. 177, (2017) (PubMed).

    Lee, Liao, Wang, Yang, Luo, Varki, Qiu, Ren, Fu, Feng: "Preventive Inhibition of Liver Tumorigenesis by Systemic Activation of Innate Immune Functions." in: Cell reports, Vol. 21, Issue 7, pp. 1870-1882, (2017) (PubMed).

    Dinulovic, Furrer, Di Fulvio, Ferry, Beer, Handschin: "PGC-1α modulates necrosis, inflammatory response, and fibrotic tissue formation in injured skeletal muscle." in: Skeletal muscle, Vol. 6, pp. 38, (2017) (PubMed).

    Tauchi, Tanaka, Kumamoto, Tokumoto, Sakimura, Sakurai, Kimura, Toyokawa, Amano, Kubo, Muguruma, Yashiro, Maeda, Ohira, Hirakawa: "Tumor-associated macrophages induce capillary morphogenesis of lymphatic endothelial cells derived from human gastric cancer." in: Cancer science, Vol. 107, Issue 8, pp. 1101-9, (2017) (PubMed).

    Jacobsen, Mentzel, Olesen, Huby, Jørgensen, Barrès, Fredholm, Simar: "Altered Methylation Profile of Lymphocytes Is Concordant with Perturbation of Lipids Metabolism and Inflammatory Response in Obesity." in: Journal of diabetes research, Vol. 2016, pp. 8539057, (2016) (PubMed).

    Kugo, Zaima, Tanaka, Mouri, Yanagimoto, Hayamizu, Hashimoto, Sasaki, Sano, Yata, Urano, Setou, Unno, Moriyama: "Adipocyte in vascular wall can induce the rupture of abdominal aortic aneurysm." in: Scientific reports, Vol. 6, pp. 31268, (2016) (PubMed).

    Drel, Tan, Barnes, Gorin, Lee, Wagner: "Centrality of bone marrow in the severity of gadolinium-based contrast-induced systemic fibrosis." in: FASEB journal : official publication of the Federation of American Societies for Experimental Biology, Vol. 30, Issue 9, pp. 3026-38, (2016) (PubMed).

    Das, Singh, Majid, Sherman, Mukhopadhyay, Wright, Martin, Dunn, Baker: "Syndesome Therapeutics for Enhancing Diabetic Wound Healing." in: Advanced healthcare materials, Vol. 5, Issue 17, pp. 2248-60, (2016) (PubMed).

    Chen, Shi, Zhang, Chen, Wang, Zhang, Tian, Yan, Li, Zhong, Xing, Zhang, Zhang: "Mesenchymal stem cell-laden anti-inflammatory hydrogel enhances diabetic wound healing." in: Scientific reports, Vol. 5, pp. 18104, (2016) (PubMed).

    Fernandez-Bustamante, Agazio, Wilson, Elkins, Domaleski, He, Baer, Moss, Wischmeyer, Repine et al.: "Brief Glutamine Pretreatment Increases Alveolar Macrophage CD163/Heme Oxygenase-1/p38-MAPK Dephosphorylation Pathway and Decreases Capillary Damage but Not Neutrophil Recruitment in ..." in: PLoS ONE, Vol. 10, Issue 7, pp. e0130764, (2016) (PubMed).

    Tepeköylü, Lobenwein, Blunder, Kozaryn, Dietl, Ritschl, Pechriggl, Blumer, Bitsche, Schistek, Kotsch, Fritsch, Grimm, Holfeld: "Alteration of inflammatory response by shock wave therapy leads to reduced calcification of decellularized aortic xenografts in mice†." in: European journal of cardio-thoracic surgery : official journal of the European Association for Cardio-thoracic Surgery, Vol. 47, Issue 3, pp. e80-90, (2015) (PubMed).

    Ge, Li, Jiang, You, Liu, Zhong, Huang, Xing: "Integration of nondegradable polystyrene and degradable gelatin in a core-sheath nanofibrous patch for pelvic reconstruction." in: International journal of nanomedicine, Vol. 10, pp. 3193-201, (2015) (PubMed).

    Franken, Klein, Spasova, Elsukova, Wiedwald, Welz, Knolle, Farle, Limmer, Kurts: "Splenic red pulp macrophages are intrinsically superparamagnetic and contaminate magnetic cell isolates." in: Scientific reports, Vol. 5, pp. 12940, (2015) (PubMed).

  • 抗原

    CD163

    别名

    Cd163/M130

    背景

    Synonyms: M13, MM13, Scavenger receptor cysteine-rich type 1 protein M13, Hemoglobin scavenger receptor, CD163, M130

    Background: Acute phase-regulated receptor involved in clearance and endocytosis of hemoglobin/haptoglobin complexes by macrophages and may thereby protect tissues from free hemoglobin-mediated oxidative damage. May play a role in the uptake and recycling of iron, via endocytosis of hemoglobin/haptoglobin and subsequent breakdown of heme. Binds hemoglobin/haptoglobin complexes in a calcium-dependent and pH -dependent manner. Exhibits a higher affinity for complexes of hemoglobin and multimeric haptoglobin of HP*1F phenotype than for complexes of hemoglobin and dimeric haptoglobin of HP*1S phenotype. Induces a cascade of intracellular signals that involves tyrosine kinase-dependent calcium mobilization, inositol triphosphate production and secretion of IL6 and CSF1. Isoform 3 exhibits the higher capacity for ligand endocytosis and the more pronounced surface expression when expressed in cells. After shedding, the soluble form (sCD163) may play an anti-inflammatory role, and may be a valuable diagnostic parameter for monitoring macrophage activation in inflammatory conditions.

    基因ID

    9332

    UniProt

    Q86VB7
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