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Multiparameter flow cytometric analysis of CD11b expression on human peripheral blood leucocyte populations. Whole blood was stained with either BD Horizon™ BUV737 Mouse IgG1, κ Isotype Control (Cat. No. 612758; Left Plot) or BD Horizon™ BUV737 Mouse Anti-Human CD11b antibody (Cat. No. 568332; Right Plot) at 1.0 µg/test. The erythrocytes were lysed with BD FACS™ Lysing Solution (Cat. No. 349202). The bivariate pseudocolor density plot showing the correlated expression of CD11b (or Ig Isotype control staining) versus side-light scatter (SSC-A) signals was derived from gated events with the side and forward light scattering characteristics of intact leucocyte populations. Flow cytometry and data analysis were performed using a BD LSRFortessa™X-20 Cell Analyzer System and FlowJo™ software. Data shown on this Technical Data Sheet are not lot specific.
Multiparameter flow cytometric analysis of CD11b expression on human peripheral blood leucocyte populations. Whole blood was stained with either BD Horizon™ BUV737 Mouse IgG1, κ Isotype Control (Cat. No. 612758; Left Plot) or BD Horizon™ BUV737 Mouse Anti-Human CD11b antibody (Cat. No. 568332; Right Plot) at 1.0 µg/test. The erythrocytes were lysed with BD FACS™ Lysing Solution (Cat. No. 349202). The bivariate pseudocolor density plot showing the correlated expression of CD11b (or Ig Isotype control staining) versus side-light scatter (SSC-A) signals was derived from gated events with the side and forward light scattering characteristics of intact leucocyte populations. Flow cytometry and data analysis were performed using a BD LSRFortessa™X-20 Cell Analyzer System and FlowJo™ software. Data shown on this Technical Data Sheet are not lot specific.
Multiparameter flow cytometric analysis of CD11b expression on human peripheral blood leucocyte populations. Whole blood was stained with either BD Horizon™ BUV737 Mouse IgG1, κ Isotype Control (Cat. No. 612758; Left Plot) or BD Horizon™ BUV737 Mouse Anti-Human CD11b antibody (Cat. No. 568332; Right Plot) at 1.0 µg/test. The erythrocytes were lysed with BD FACS™ Lysing Solution (Cat. No. 349202). The bivariate pseudocolor density plot showing the correlated expression of CD11b (or Ig Isotype control staining) versus side-light scatter (SSC-A) signals was derived from gated events with the side and forward light scattering characteristics of intact leucocyte populations. Flow cytometry and data analysis were performed using a BD LSRFortessa™X-20 Cell Analyzer System and FlowJo™ software. Data shown on this Technical Data Sheet are not lot specific.
Multiparameter flow cytometric analysis of CD11b expression on human peripheral blood leucocyte populations. Whole blood was stained with either BD Horizon™ BUV737 Mouse IgG1, κ Isotype Control (Cat. No. 612758; Left Plot) or BD Horizon™ BUV737 Mouse Anti-Human CD11b antibody (Cat. No. 568332; Right Plot) at 1.0 µg/test. The erythrocytes were lysed with BD FACS™ Lysing Solution (Cat. No. 349202). The bivariate pseudocolor density plot showing the correlated expression of CD11b (or Ig Isotype control staining) versus side-light scatter (SSC-A) signals was derived from gated events with the side and forward light scattering characteristics of intact leucocyte populations. Flow cytometry and data analysis were performed using a BD LSRFortessa™X-20 Cell Analyzer System and FlowJo™ software. Data shown on this Technical Data Sheet are not lot specific.
Multiparameter flow cytometric analysis of CD11b expression on human peripheral blood leucocyte populations. Whole blood was stained with either BD Horizon™ BUV737 Mouse IgG1, κ Isotype Control (Cat. No. 612758; Left Plot) or BD Horizon™ BUV737 Mouse Anti-Human CD11b antibody (Cat. No. 568332; Right Plot) at 1.0 µg/test. The erythrocytes were lysed with BD FACS™ Lysing Solution (Cat. No. 349202). The bivariate pseudocolor density plot showing the correlated expression of CD11b (or Ig Isotype control staining) versus side-light scatter (SSC-A) signals was derived from gated events with the side and forward light scattering characteristics of intact leucocyte populations. Flow cytometry and data analysis were performed using a BD LSRFortessa™X-20 Cell Analyzer System and FlowJo™ software. Data shown on this Technical Data Sheet are not lot specific.
Multiparameter flow cytometric analysis of CD11b expression on human peripheral blood leucocyte populations. Whole blood was stained with either BD Horizon™ BUV737 Mouse IgG1, κ Isotype Control (Cat. No. 612758; Left Plot) or BD Horizon™ BUV737 Mouse Anti-Human CD11b antibody (Cat. No. 568332; Right Plot) at 1.0 µg/test. The erythrocytes were lysed with BD FACS™ Lysing Solution (Cat. No. 349202). The bivariate pseudocolor density plot showing the correlated expression of CD11b (or Ig Isotype control staining) versus side-light scatter (SSC-A) signals was derived from gated events with the side and forward light scattering characteristics of intact leucocyte populations. Flow cytometry and data analysis were performed using a BD LSRFortessa™X-20 Cell Analyzer System and FlowJo™ software. Data shown on this Technical Data Sheet are not lot specific.
Any use of products other than the permitted use without the express written authorization of Becton, Dickinson and Company is strictly prohibited.
BD® CompBeads can be used as surrogates to assess fluorescence spillover (compensation). When fluorochrome conjugated antibodies are bound to BD® CompBeads, they have spectral properties very similar to cells. However, for some fluorochromes there can be small differences in spectral emissions compared to cells, resulting in spillover values that differ when compared to biological controls. It is strongly recommended that when using a reagent for the first time, users compare the spillover on cells and BD® CompBeads to ensure that BD® CompBeads are appropriate for your specific cellular application.
For optimal and reproducible results, BD Horizon Brilliant™ Stain Buffer should be used anytime BD Horizon Brilliant dyes are used in a multicolor flow cytometry panel. Fluorescent dye interactions may cause staining artifacts which may affect data interpretation. The BD Horizon Brilliant Stain Buffer was designed to minimize these interactions. When BD Horizon Brilliant Stain Buffer is used in in the multicolor panel, it should also be used in the corresponding compensation controls for all dyes to achieve the most accurate compensation. For the most accurate compensation, compensation controls created with either cells or beads should be exposed to BD Horizon Brilliant Stain Buffer for the same length of time as the corresponding multicolor panel. More information can be found in the Technical Data Sheet of the BD Horizon Brilliant Stain Buffer (Cat. No. 563794/566349) or the BD Horizon Brilliant Stain Buffer Plus (Cat. No. 566385).
Note: When using high concentrations of antibody, background binding of this dye to erythroid cell subsets (mature erythrocytes and precursors) has been observed. For researchers studying these cell populations, or in cases where light scatter gating does not adequately exclude these cells from the analysis, this background may be an important factor to consider when selecting reagents for panel(s).
The ICRF44 monoclonal antibody specifically binds to CD11b, the 165-kDa adhesion glycoprotein that associates with the 95-kDa integrin β2 (CD18) to form the CD11b/CD18 complex, also known as Mac-1 or CR3. CD11b is a type I transmembrane glycoprotein that is encoded by ITGAM (Integrin alpha M). It is expressed on activated lymphocytes, monocytes, granulocytes, and a subset of NK cells. CD11b functions in cell-cell and cell-substrate interactions and is a receptor for iC3b, CD54 (ICAM-1), CD102 (ICAM-2) and CD50 (ICAM-3). This antibody significantly inhibits polymorphonuclear leukocyte aggregation in response to fMLP.
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Comparisons, where applicable, are made against older BD Technology, manual methods or are general performance claims. Comparisons are not made against non-BD technologies, unless otherwise noted.
For Research Use Only. Not for use in diagnostic or therapeutic procedures.