Cultivated biological compute, grown to order

Compute you grow,substrate that adapts

9cultivation vaults online
99.7%substrate viability
14dseed to first yield
Substrate

Living
hardware.

Cultivated substrate that reorganises around your workload. Grown to your problem rather than provisioned against it.

01

Adaptive topology

The lattice reorganises around your workload. Hot paths thicken, idle regions are reabsorbed, and none of it requires a redeploy.

99.7%topology efficiency
Cultivation

Inoculate.Cultivate.Harvest.

Cultivation vaults
Cultivation plate with nine active nodes

Nine vaults.
One lineage.

Nine cultivation vaults across four sites, all grown from one strain lineage. Sub-50ms latency to 99% of the world.

29vaults

Vaults sited for cold, stable air and clean power, so the substrate spends its energy growing.

99.99%Uptime SLA
<50msGlobal latency
operational
Oregon3 nodes
operational
Iceland2 nodes
operational
Hokkaido2 nodes
operational
Patagonia2 nodes
LIVE

Live
substrate telemetry.

0
Yield drawn today
across 1,412 blocks in culture
across all nine vaults
Substrate viability
0.99%
p99 across the lattice
Perfusion latency
<0ms
OpenAI GPT-4 TurboAnthropic Claude 3Mistral LargeLlama 3+12 more models
Integrations

Connect
everything.

Submit work from the tools your lab already runs. Standard job submission, standard result streams, no bespoke glue.

LLM
OpenAI
LLM
Anthropic
Comms
Slack
Code
GitHub
PM
Jira
Storage
AWS S3
Docs
Google Drive
CRM
Salesforce
Marketing
HubSpot
Auto
Zapier
Data
Snowflake
Payments
Stripe
100+Integrations
OAuthAuth built-in
WebhooksReal-time sync
View all integrations
Containment

Alive,
not loose.

The substrate is alive, which makes containment a physical problem before it is a policy one. Every block is sealed, sectioned and logged.

Active containment
0Containment breaches to date
SOC 2ISO 27001BSL-2GDPR

Sealed cells

Every culture is fully enclosed. Capillaries stop at the wall.

Sealed at the seam

Blocks close along one seam. What is inside stays yours.

Every layer recorded

Growth lays down one lamina per event, readable in section.

Gated channels

Channels you open are perfused. The rest stay grown shut.

Developer SDK

Submit the work.
Let it grow.

An SDK for putting workloads onto living substrate. Describe the shape of your problem and the lattice grows to meet it.

Python and TypeScript

Typed clients for job submission and result streams.

Streaming yield

Read results as the block perfuses, not after it finishes.

Strain selection

Pick a lineage, or bring a profile and we grow to it.

Simulated substrate

Model a block locally before committing vault time.

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Testimonials

Trusted by the labs.

We fold at a scale our own cluster never reached, and we stopped paying for racks that sat idle between runs.
S

Sarah Chen

Head of Computation, Meridian Bio

9xFolding throughput
Featured companies
Pricing

Pay for
yield.

Section through a full-scale substrate body
01

Seed

One block, one problem

$0/month
  • 1 cultivation block
  • 50 yield-hours per month
  • Community support
  • Basic telemetry
  • Shared strain library
Most Popular
02

Culture

For labs running continuous work

$65/month

billed annually

  • 12 cultivation blocks
  • 5,000 yield-hours per month
  • Priority support
  • Full section records
  • Private strain lineage
  • Team workspaces
  • Custom scaffold geometry
03

Vault

For standing institutional capacity

Custom
  • Dedicated vault allocation
  • Unmetered yield
  • 24/7 dedicated support
  • On-site cultivation
  • Viability SLA
  • Bespoke strain development
  • BSL-2 containment
  • Named cultivation team
Encrypted executionFull audit logsMulti-model routing
Compare all features

Ready to grow
your own?

Join the labs running simulation on living substrate. Your first block is inoculated within the hour.

First cultivation block free