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Uncover 58 Critical Cell Markers for Understanding Innate Immune Biology in a Single Experiment
As part of our family of BD® OMICS-One Protein Panels for deep immune discovery experiments, the BD® OMICS-One Innate Protein Panel is designed with 58 key specificities that will help you profile major natural killer (NK)-cell and antigen-presenting cells (APCs)/myeloid cells and uncover innate immune cell states.
Designed and optimized for the BD Rhapsody™ Single-Cell Analysis System, the BD® OMICS-One Innate Protein Panel works seamlessly with single-cell RNA assays in the BD Rhapsody™ System family to enable CITE-seq studies.
If you’re interested in single-cell protein-only profiling studies, BD® OMICS-One Protein Panels also support a protein-only workflow.
Talk to one of our specialists about bringing this panel to your lab for either CITE-seq or protein-only studies.
Download the BD® OMICS-One Innate Protein Panel flyer
Explore Innate Immune Cell Populations and Their Functional States
Panel Features
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Focused: Lyophilized panel targeting 58 curated NK-cell and APC/myeloid-cell markers to stain up to 2 million cells for your immune biology discovery research
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Flexible: Compatible with other BD® OMICS-One Protein Panels or drop-ins from our growing library of more than 470 single-vial BD® AbSeq Antibody-Oligo Reagents
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SMART: Designed to lower your sequencing cost without compromising sensitivity
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Multiomics enabled: Optimized to work with single-cell RNA-seq assays for multiomic studies
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Intuitive: Supported by the free BD Cellismo™ Data Visualization Tool for data analysis, which requires no bioinformatics expertise or coding experience
Panel Content
BD® OMICS-One Innate Protein Panel Content
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*SMART-titrated targets
**The BD® OMICS-One Innate Protein Panel consists of two individual lyophilized 30-plex protein panels—the BD® OMICS-One NK-Cell Protein Panel and APC/Myeloid-Cell Protein Panel; these are overlapping specificities in the two protein panels.
Not the panel you are looking for? Explore other available panels
Smart Panel Design
Lower Sequencing Cost and Increase Sensitivity with SMART Panel Design
SMART panel design helps lower sequencing costs while increasing data resolution by using pretitrated, optimal concentrations of antibody-oligos against select high-expressing primary markers in the panel. This allows reallocation of sequencing reads otherwise allotted to these high expressors to now detect secondary and tertiary cell surface markers expressed at lower levels. With the SMART panel design approach, low-expression markers can be quantified without having to perform deeper sequencing and incurring high sequencing costs. The six specificities selected for SMART panel design in the BD® OMICS-One Innate Protein Panel are CD2, CD31, CD45 and HLA-DR.
Performance
The 58-plex BD® OMICS-One Innate Protein Panel offers unmatched flexibility by combining two independently lyophilized 30-plex antibody-oligo panels—BD® OMICS-One NK-Cell and APC/Myeloid-Cell Protein Panels—while preserving the performance of each individual panel. This modular design also allows the seamless addition of other BD® OMICS-One Protein Panels or the addition of drop-ins from BD® AbSeq Antibody-Oligo Reagents of interest.
Ensuring optimal performance of antibodies when multiple specificities are brought together in a panel is critical for protein-profiling studies. We tested the performance of the individual antibody-oligos included in the BD® OMICS-One Innate Protein Panel and demonstrated that all 58 antibody-oligos in the panel reliably detect their respective targets.
BD® OMICS-One Protein Panels are designed keeping multiomics in mind. These protein panels work seamlessly with BD Rhapsody™ Single-Cell Whole Transcriptome Analysis (WTA) or Targeted mRNA Profiling Assays.
The Power of More
A Smart Platform for Your SMART Protein Panels
With our complete solution you can now explore more omes in one data readout. Get more quality data and more breakthroughs, all at less than 1 cent per cell.*
Explore how you can harness the POWER OF MORE with the only complete single-cell multiomics solution.
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