Element Biosciences at ASHG 2026

Oct 20–24, 2026 Montréal, Canada ~7.5k attendees Website

Element Biosciences brings 4 presentations to ASHG 2026 in Montréal, and exhibits at Booth 1108. Its ASHG 2026 program centres on cancer genomics, difficult-region sequencing, and single-cell and spatial multiomics. Its presentations cover fewer variant-calling errors, single-cell identity mapping, tumor clonal architecture, and time-series multiomics of SETD5 depletion in human stem cells.

OrganizationASHG 2026 Attendance
Element Biosciences
San Diego, California
1 Scientist I · 1 Vice President Research And Development · 1 Sr Director of Strategic Marketing · 1 other presenter
Private company~300 people
Element Biosciences sells sequencing instruments, reagents, and multiomics workflows to research, pharmaceutical, biotechnology, and clinical laboratories.
Element Biosciences appointed global biopharma R&D leader Mikael Dolsten to its board, adding pharma-industry perspective to strategy.
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Element Biosciences appointed global biopharma R&D leader Mikael Dolsten to its board, adding pharma-industry perspective to strategy.
2026-08 · source
Element introduced VITARI, a high-throughput benchtop sequencer it says can deliver a whole genome for $100, a competitive pricing move.
2026-02 · source
Element launched a Teton certified-provider program for CytoProfiling on its AVITI24 platform, opening a services channel for partners.
2025-12 · source
Source: company newsroom
Raised $175M+ Series E (Jun 2026)
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Samsung Electronics, a longstanding investor, contributed $175 million; other investors added an undisclosed amount. · 2026-06-09
“including $175 million from longstanding investor Samsung Electronics, and an undisclosed amount from other investors.”
Source: funding announcement
Booth
Exhibiting at Booth 1108
Wed, Oct 219:45am–4:30pmThu, Oct 229:45am–1:30pmFri, Oct 239:45am–4:30pm
Poster
Wed Oct 21
2:30 pm
Improved sequencing of difficult regions reduces variant calling errors
Sequencing technologyMutation detectionRare variantsExome/genome sequencing
Poster
Fri Oct 23
2:30 pm
Time-series single-cell multiomics captures the transcriptional and morphological consequences of acutely depleting the neurodevelopmental gene SETD5 in hiPSCs
Collaborators: University of California San Diego
AutismChromatinEpigeneticsGene regulation

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