BiohybridDevicesBiohybrid Devices home

Engineered Neural Architecture

Living neural tissue, built to specification.

We combine high-resolution microfabrication, human stem cell–derived neural tissue and precision electrophysiology to build biohybrid devices that behave like the nervous system they model — measurable, reproducible and ready for translation.

Who We Work With

Partners who need biology to behave like engineering.

We work with organisations for whom neural function is a hard requirement rather than an academic curiosity. Each engagement starts with your specification — the tissue architecture, readout fidelity and reproducibility your programme depends on — and we build the platform around it.

  • Pharmaceutical & Biotech

    Human-relevant neural assays for target validation, efficacy screening and neurotoxicity work — with functional readouts that translate beyond biochemical endpoints.

  • Medical Device Developers

    Benchtop biohybrid interfaces for stimulation and recording hardware, letting teams characterise device–tissue behaviour long before animal or clinical studies.

  • Neurotechnology

    Engineered tissue substrates and electrode architectures for closed-loop systems, neuromorphic research and next-generation brain–computer interfaces.

  • Defence

    Programme-led development of resilient biohybrid sensing and readout platforms under tight specification, documentation and delivery requirements.

About

A single team across silicon and cells.

Biohybrid Devices exists because the interface between engineered hardware and living neural tissue is still built by hand, one bespoke experiment at a time. We bring manufacturing, cell biology and electrophysiology under one roof so that the device and the tissue are designed together rather than bolted together.

The result is a platform our partners can specify against: reproducible neural architecture, characterised electrically, and delivered with the documentation that regulated and programme-funded work demands.

Our Pipeline

  1. 01

    Device Design

    Electrode geometry and scaffold architecture specified against the functional target.

  2. 02

    Microfabrication

    High-resolution printing and cleanroom processing of the physical substrate.

  3. 03

    Tissue Integration

    Human iPSC-derived neurons seeded and matured onto the device architecture.

  4. 04

    Functional Validation

    Electrophysiological characterisation against pre-agreed acceptance criteria.

Our Capabilities

From molecules to macrocircuits.

Every device we build sits inside a closed loop: we fabricate, record, analyse and refine — letting functional data drive the next iteration of the structure, at every scale from surface chemistry to network topology.

  • Advanced Manufacturing

    Sub-micron additive fabrication, cleanroom processing and precision assembly of the physical device.

  • Neural Tissue Engineering

    Human iPSC-derived neural cultures matured onto engineered substrates with defined architecture.

  • Electrophysiology and Readout

    Multi-electrode recording, stimulation and analysis that turn tissue behaviour into hard data.

AdvancedManufacturingNeural TissueEngineeringElectrophysiologyand ReadoutEngineeredNeuralArchitecture

Three disciplines, one device.

Hover or focus a circle to see how each capability contributes.

Where all three overlap, biology stops being an experiment and starts being a specification.

Suppliers & Partners

Our platform is built on best-in-class cell lines, instrumentation and fabrication systems from partners across the sector.

  • bit.bio
  • STEMCELL Technologies
  • UpNano
  • nDimension
  • Ripple Neurotech

Get in Touch

Tell us what you need the tissue to do.

Whether you have a defined specification or an early-stage question, we are happy to talk through feasibility, timelines and how a programme with us would run.

info@biohybrid.io

Submitting opens your email client with the details pre-filled, so nothing is stored on this site.

Built with v0