HLA-DR Antibody (LN-3) - Azide and BSA Free
Novus Biologicals | Catalog # NBP2-47670
Key Product Details
Species Reactivity
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Description
Antibody with azide - store at 2 to 8C. Antibody without azide - store at -20 to -80C.
Scientific Data Images for HLA-DR Antibody (LN-3) - Azide and BSA Free
Western Blot: HLA-DR Antibody (LN-3)Azide and BSA Free [NBP2-47670]
Western Blot: HLA-DR Antibody (LN-3) - Azide and BSA Free [NBP2-47670] - Western Blot Analysis of Ramos cell lysate using HLA-DR Mouse Monoclonal Antibody (LN-3).Immunocytochemistry/ Immunofluorescence: HLA-DR Antibody (LN-3) - Azide and BSA Free [NBP2-47670]
Immunocytochemistry/Immunofluorescence: HLA-DR Antibody (LN-3) - Azide and BSA Free [NBP2-47670] - Immunofluorescence staining of Ramos cells using HLA-DRMouse Monoclonal Antibody (LN-3) followed by goat anti-Mouse IgG-CF488 (green). Nuclei are stained with Reddot.Immunohistochemistry-Paraffin: HLA-DR Antibody (LN-3) - Azide and BSA Free [NBP2-47670]
Immunohistochemistry-Paraffin: HLA-DR Antibody (LN-3) - Azide and BSA Free [NBP2-47670] - Human Tonsil stained with HLA-DRB Monoclonal Antibody (LN-3).Flow Cytometry: HLA-DR Antibody (LN-3) - Azide and BSA Free [NBP2-47670]
Flow Cytometry: HLA-DR Antibody (LN-3) - Azide and BSA Free [NBP2-47670] - Analysis using the PE/Cy7 conjugate of NBP2-34676. Staining of HLA-DR in human buffy coat using anti-HLA-DR antibody. The primary antibody was used at a dilution of 1:100 and incubated for 25 min at 4C in 2% human serum, 0.5mM EDTA in DPBS. Image from verified customer review.Western Blot: HLA-DR Antibody (LN-3)Azide and BSA Free [NBP2-47670]
Western Blot: HLA-DR Antibody (LN-3) - Azide and BSA Free [NBP2-47670] - Analysis using the PE conjugate of NBP2-34676. Staining of normal human peripheral blood cells with Mouse IgG2b K Isotype Control PE (blue histogram) or Anti-Human HLA-DR PE (purple histogram). Cells in the lymphocyte (left) or monocyte (right) gate wereWestern Blot: HLA-DR Antibody (LN-3)Azide and BSA Free [NBP2-47670]
Western Blot: HLA-DR Antibody (LN-3) - Azide and BSA Free [NBP2-47670] - Western Blot Analysis of Ramos cell and human spleen lysate using HLA-DR Mouse Monoclonal Antibody (LN-3).Immunohistochemistry-Paraffin: HLA-DR Antibody (LN-3) - Azide and BSA Free [NBP2-47670]
Immunohistochemistry-Paraffin: HLA-DR Antibody (LN-3) - Azide and BSA Free [NBP2-47670] - Human Histiocytoma stained with HLA-DRB Monoclonal Antibody (LN-3).Applications for HLA-DR Antibody (LN-3) - Azide and BSA Free
Flow Cytometry
Immunocytochemistry/ Immunofluorescence
Immunofluorescence
Immunohistochemistry-Paraffin
Western Blot
Optimal dilution for a specific application should be determined.
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Advanced Features
- Spectra Viewer - Custom analysis of spectra from multiple fluorochromes
- Spillover Popups - Visualize the spectra of individual fluorochromes
- Antigen Density Selector - Match fluorochrome brightness with antigen density
Formulation, Preparation, and Storage
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Background: HLA-DR
Given the role in adaptive immunity, HLA-DR allele polymorphisms, gene misexpression, and dysfunction has been implicated in many diseases ranging from autoimmune disorders to cancer (2). HLA-DR is also a classical biomarker for disease, including sepsis where reduced expression of HLA-DR molecules on monocytes, as measured by flow cytometry, indicates diagnosis and prognosis (4,5). Immunosuppression observed with sepsis results in decreased surface expression of HLA-DR and concurrent increase in expression of programmed death 1 (PD-1), cytotoxic T-lymphocyte antigen 4 (CTLA-4), and B and T lymphocyte attenuator (BTLA) (4). This altered expression results in poor T cell response and apoptosis, along with reduced interferon-gamma (IFN-gamma) production and increased pro-inflammatory cytokine release (4). Furthermore, the decrease in HLA-DR expression is also correlated with the decrease in CD14lowCD16+ inflammatory monocytes (5). Interestingly, COVID-19 patients also exhibit a reduction in HLA-DR that correlates with disease severity and immunosuppression (5).
References
1. Andersson G. (1998). Evolution of the human HLA-DR region. Frontiers in bioscience : a journal and virtual library. https://doi.org/10.2741/a317
2. Shiina, T., Hosomichi, K., Inoko, H., & Kulski, J. K. (2009). The HLA genomic loci map: expression, interaction, diversity and disease. Journal of human genetics. https://doi.org/10.1038/jhg.2008.5
3. Stern, L. J., & Calvo-Calle, J. M. (2009). HLA-DR: molecular insights and vaccine design. Current pharmaceutical design. https://doi.org/10.2174/138161209789105171
4. Zhuang, Y., Peng, H., Chen, Y., Zhou, S., & Chen, Y. (2017). Dynamic monitoring of monocyte HLA-DR expression for the diagnosis, prognosis, and prediction of sepsis. Frontiers in bioscience (Landmark edition). https://doi.org/10.2741/4547
5. Benlyamani, I., Venet, F., Coudereau, R., Gossez, M., & Monneret, G. (2020). Monocyte HLA-DR Measurement by Flow Cytometry in COVID-19 Patients: An Interim Review. Cytometry. Part A : the journal of the International Society for Analytical Cytology. https://doi.org/10.1002/cyto.a.24249
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Additional HLA-DR Products
Product Documents for HLA-DR Antibody (LN-3) - Azide and BSA Free
Certificate of Analysis
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Product Specific Notices for HLA-DR Antibody (LN-3) - Azide and BSA Free
This product is for research use only and is not approved for use in humans or in clinical diagnosis. Primary Antibodies are guaranteed for 1 year from date of receipt.
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Protocols
Find general support by application which include: protocols, troubleshooting, illustrated assays, videos and webinars.
- 7-Amino Actinomycin D (7-AAD) Cell Viability Flow Cytometry Protocol
- Antigen Retrieval Protocol (PIER)
- Antigen Retrieval for Frozen Sections Protocol
- Appropriate Fixation of IHC/ICC Samples
- Cellular Response to Hypoxia Protocols
- Chromogenic IHC Staining of Formalin-Fixed Paraffin-Embedded (FFPE) Tissue Protocol
- Chromogenic Immunohistochemistry Staining of Frozen Tissue
- ClariTSA™ Fluorophore Kits
- Detection & Visualization of Antibody Binding
- Extracellular Membrane Flow Cytometry Protocol
- Flow Cytometry Protocol for Cell Surface Markers
- Flow Cytometry Protocol for Staining Membrane Associated Proteins
- Flow Cytometry Staining Protocols
- Flow Cytometry Troubleshooting Guide
- Fluorescent IHC Staining of Frozen Tissue Protocol
- Graphic Protocol for Heat-induced Epitope Retrieval
- Graphic Protocol for the Preparation and Fluorescent IHC Staining of Frozen Tissue Sections
- Graphic Protocol for the Preparation and Fluorescent IHC Staining of Paraffin-embedded Tissue Sections
- Graphic Protocol for the Preparation of Gelatin-coated Slides for Histological Tissue Sections
- ICC Cell Smear Protocol for Suspension Cells
- ICC Immunocytochemistry Protocol Videos
- ICC for Adherent Cells
- IHC Sample Preparation (Frozen sections vs Paraffin)
- Immunocytochemistry (ICC) Protocol
- Immunocytochemistry Troubleshooting
- Immunofluorescence of Organoids Embedded in Cultrex Basement Membrane Extract
- Immunofluorescent IHC Staining of Formalin-Fixed Paraffin-Embedded (FFPE) Tissue Protocol
- Immunohistochemistry (IHC) and Immunocytochemistry (ICC) Protocols
- Immunohistochemistry Frozen Troubleshooting
- Immunohistochemistry Paraffin Troubleshooting
- Intracellular Flow Cytometry Protocol Using Alcohol (Methanol)
- Intracellular Flow Cytometry Protocol Using Detergents
- Intracellular Nuclear Staining Flow Cytometry Protocol Using Detergents
- Intracellular Staining Flow Cytometry Protocol Using Alcohol Permeabilization
- Intracellular Staining Flow Cytometry Protocol Using Detergents to Permeabilize Cells
- Preparing Samples for IHC/ICC Experiments
- Preventing Non-Specific Staining (Non-Specific Binding)
- Primary Antibody Selection & Optimization
- Propidium Iodide Cell Viability Flow Cytometry Protocol
- Protocol for Heat-Induced Epitope Retrieval (HIER)
- Protocol for Liperfluo
- Protocol for Making a 4% Formaldehyde Solution in PBS
- Protocol for VisUCyte™ HRP Polymer Detection Reagent
- Protocol for the Characterization of Human Th22 Cells
- Protocol for the Characterization of Human Th9 Cells
- Protocol for the Fluorescent ICC Staining of Cell Smears - Graphic
- Protocol for the Fluorescent ICC Staining of Cultured Cells on Coverslips - Graphic
- Protocol for the Preparation & Fixation of Cells on Coverslips
- Protocol for the Preparation and Chromogenic IHC Staining of Frozen Tissue Sections
- Protocol for the Preparation and Chromogenic IHC Staining of Frozen Tissue Sections - Graphic
- Protocol for the Preparation and Chromogenic IHC Staining of Paraffin-embedded Tissue Sections
- Protocol for the Preparation and Chromogenic IHC Staining of Paraffin-embedded Tissue Sections - Graphic
- Protocol for the Preparation and Fluorescent ICC Staining of Cells on Coverslips
- Protocol for the Preparation and Fluorescent ICC Staining of Non-adherent Cells
- Protocol for the Preparation and Fluorescent ICC Staining of Stem Cells on Coverslips
- Protocol for the Preparation and Fluorescent IHC Staining of Frozen Tissue Sections
- Protocol for the Preparation and Fluorescent IHC Staining of Paraffin-embedded Tissue Sections
- Protocol for the Preparation of Gelatin-coated Slides for Histological Tissue Sections
- Protocol for the Preparation of a Cell Smear for Non-adherent Cell ICC - Graphic
- Protocol: Annexin V and PI Staining by Flow Cytometry
- Protocol: Annexin V and PI Staining for Apoptosis by Flow Cytometry
- R&D Systems Quality Control Western Blot Protocol
- TUNEL and Active Caspase-3 Detection by IHC/ICC Protocol
- The Importance of IHC/ICC Controls
- Troubleshooting Guide: Fluorokine Flow Cytometry Kits
- Troubleshooting Guide: Immunohistochemistry
- Troubleshooting Guide: Western Blot Figures
- Western Blot Conditions
- Western Blot Protocol
- Western Blot Protocol for Cell Lysates
- Western Blot Troubleshooting
- Western Blot Troubleshooting Guide
- View all Protocols, Troubleshooting, Illustrated assays and Webinars