Gene Capture

Targeted Analysis for Greater Scalability

Custom Gene Capture

Design a panel tailored to each project.

Immune1000 Gene Capture

Target human immune cell type markers and pathways.

Targeted Panels for
Single Cell RNA-seq

Unlock Greater Scalability

Many research applications are focused on a discrete set of genes and do not require whole transcriptome analysis in every experiment. Gene Capture enables researchers to answer questions across more samples with less sequencing – expanding the utility of the Evercode product line.

Gene Capture Preserves Cell Type Clustering

Human PBMCs processed and sequenced with Evercode WT v2 at 28k reads/cell (left) and Immune1000 Gene Capture at 2k reads/cell (right). The resolution and identification of cell types is preserved at lower sequencing.

High Resolution Data With 10 Times Less Sequencing

With a high on-target rate, shallow sequencing maintains excellent resolution and cell type proportions.

Maintain Cell Type Proportions

The Immune1000 Gene Capture is optimized to avoid bias during enrichment, preserving cell type proportions for the sample.

Cell type proportions are retained

Human PBMCs processed with Evercode WT v2 and Immune1000 Gene Capture show excellent concordance for cell type proportionality.

Design a Custom Panel of Target Genes

Gene Capture can be tailored to individual research goals, targeting 100s or 1000s of genes of interest.

THE GENE CAPTURE WORKFLOW

Complete Workflow

Gene Capture is an add-on to Evercode Whole Transcriptome. Whole Transcriptome libraries are hybridized to panels of gene-specific probes. Library molecules containing target regions are captured with magnetic beads.
1
Parse Biosciences Process - Step 1

Evercode Cell/Nuclei Fixation

Lock in gene expression immediately after sample collection with a rapid fixation protocol. After fixation, samples can be stored for up to 6 months or proceed directly to barcoding.
2
Parse Biosciences Process - Step 2

Evercode Whole Transcriptome

Append barcodes to each transcript by progressing cells through split-pool combinatorial barcoding, then proceed for library preparation.
3
Parse Biosciences Process - Step 3

Gene Capture

Targeted transcripts are hybridized to a designed probe and captured with magnetic beads.
4
Parse Biosciences Process - Step 4

Sequencing

The targeted libraries are sequenced by NGS.
5
Parse Biosciences Process - Step 5

Analysis

A computational pipeline generates an interactive report for rapid insights. All output data files, including gene-cell count matrix, integrate seamlessly with existing open source tools such as Seurat or Scanpy.

Learn More

Read more about the technology and Immune1000 Gene Panel.
Download Product Sheet
Download Immune1000 Panel Gene List

Explore the Sample Data

Investigate the comparison between PBMCs prepared with and without Immune1000 Gene Capture.
Explore sample data

Whole Transcriptome in Up to 1 Million Cells

Sequence up to 1 million cells, no instrument required.
Evercode™ WT Mega

Support

Information and insight for the entire range of Parse Biosciences products.
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