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Bio-Rad was awarded a sum of $23,930,716 by a jury. The 10x Genomics filed a motion for judgement as a matter of law (JMOL) but were denied in 2019, and the court proceedings concluded in 2020. Following this lawsuit, 10x Genomics discontinued their linked-read assay. [15]
In November 2018, a Delaware jury found that 10x Genomics infringed on several University of Chicago patents which were exclusively licensed to Bio-Rad. 10x Genomics were ordered to pay $24 million in damages to Bio-Rad and a 15% royalty on sales. [13] [14] 10x Genomics appealed the verdict but the decision was upheld in August 2020.
MGISEQ-2000: 375M FCS flow cell, 1500M FCL flow cell per flow cell. 1 to 9 days depending on instrument, read length and number of flow cells run at a time. $5– $120 Sequencing by ligation (SOLiD sequencing) 50+35 or 50+50 bp: 99.9%: 1.2 to 1.4 billion: 1 to 2 weeks: $60–130: Low cost per base. Slower than other methods.
Cost per run US$350 US$7,000 US$6,000 (30x human genome) US$4,000 $125–300 USD US$4 (single read/reaction) N/A Cost per Mb US$1.00 US$10 US$0.07 US$0.13 $0.13 - US$0.60 US$2400 $0.007 Cost per instrument US$80,000 US$500,000 US$690,000 US$495,000 US$695,000 US$95,000 N/A
Spatial transcriptomics, or spatially resolved transcriptomics, is a method that captures positional context of transcriptional activity within intact tissue. [1] The historical precursor to spatial transcriptomics is in situ hybridization, [2] where the modernized omics terminology refers to the measurement of all the mRNA in a cell rather than select RNA targets.
In fact, 500 to 10,000 cells are captured per sample from a single cell suspension. The protocol is performed easily and allows a high cell recovery rate of up to 65%. The global workflow of the droplet-based platform takes 8 hours and so is faster than the Microwell-based method (BD Rhapsody), which takes 10 hours.