The Infrastructure of

Biological AI

Unique biological data at unprecedented scale. Built for biological discovery and AI.

Biological data at

unprecedented scale

Our Data Production Site combines high-resolution 3D imaging with sequencing to turn biological samples into uniquely rich data.

Your samples

Library cells and tissue

Data Production Site

3D Sequencing and AI prediction

Your data

Molecularly resolved 3D biological data

Current applications

Our data enables new approaches to cell profiling, drug localization and model training.

man sitting facing silver MacBook inside room

Bob Kane

Former Chief Engineering Officer Illumina

“Single’s technology allows us to follow a new roadmap for cost per base and performance. They could get us to genomes under $10, which is really revolutionary.”

3D Sequencing

A new way to measure biology – engineered for biological AI

3D Sequencing

A new way to measure biology – engineered for biological AI

SYSTEM

THETA

Theta is the system we engineered to perform 3D Sequencing, combining high-resolution 3D imaging with sequencing to generate uniquely rich biological data. It connects molecular information with spatial context in 3D, at unprecedented scale.

man sitting facing silver MacBook inside room

Bob Kane

Former Chief Engineering Officer Illumina

“Single’s technology allows us to follow a new roadmap for cost per base and performance. They could get us to genomes under $10, which is really revolutionary.”

man sitting facing silver MacBook inside room

Bob Kane

Former Chief Engineering Officer Illumina

“Single’s technology allows us to follow a new roadmap for cost per base and performance. They could get us to genomes under $10, which is really revolutionary.”

Powering scientific discovery

A new platform for

exploring biology

Scientists are using our platform to explore complex biological systems in new ways. From molecular interactions to brain repair.

Automation Overview dashboard

3D Molecular Imaging

“Being able to map many different molecular targets in 3D will give a much richer picture of how cells are communicating and interacting”

Ian Hoffecker

Assistant Professor, KTH Royal Institute of Technology

Automation Overview dashboard

3D Molecular Imaging

“Being able to map many different molecular targets in 3D will give a much richer picture of how cells are communicating and interacting”

Ian Hoffecker

Assistant Professor, KTH Royal Institute of Technology

Real-time workflow monitoring

Protein Detection'

“By using DNA as the readout, we can increase the throughput enormously. This approach allows us to measure large numbers of proteins in a highly efficient manner”

Ulf Landegren

Professor of Molecular Medicine, Uppsala University

Real-time workflow monitoring

Protein Detection

“By using DNA as the readout, we can increase the throughput enormously. This approach allows us to measure large numbers of proteins in a highly efficient manner”

Ulf Landegren

Professor of Molecular Medicine, Uppsala University

Real-time workflow monitoring

Protein Detection'

“By using DNA as the readout, we can increase the throughput enormously. This approach allows us to measure large numbers of proteins in a highly efficient manner”

Ulf Landegren

Professor of Molecular Medicine, Uppsala University

Relay automation impact

Reprogramming the brain

“This technology will be crucial in determining whether our CRISPR-based strategies for neuronal reprogramming and gene regulation are achieving the desired outcomes”

Stefan Stricker

Professor of Reprogramming and Regeneration, LMU Munich

Relay automation impact

Reprogramming the brain

“This technology will be crucial in determining whether our CRISPR-based strategies for neuronal reprogramming and gene regulation are achieving the desired outcomes”

Stefan Stricker

Professor of Reprogramming and Regeneration, LMU Munich

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Advancing biology.

Together.

At our Data Production Site, we combine high-resolution 3D imaging with molecular sequencing. Connecting cellular morphology with molecular information across millions of individual cells.

Current collaborators

Additional collaborations with research and industry partners are currently under confidentiality.

Sankt Eriksgatan 48F
112 34 Stockholm, Sweden
+46 (0) 735 280 550
info@singletechnologies.com

Let's talk

© Single Technologies AB 2026

Sankt Eriksgatan 48F
112 34 Stockholm, Sweden
+46 (0) 735 280 550
info@singletechnologies.com

Let's talk

© Single Technologies AB 2026

Sankt Eriksgatan 48F
112 34 Stockholm, Sweden
+46 (0) 735 280 550
info@singletechnologies.com

Let's talk

© Single Technologies AB 2026