Accell1

We have mastered cell communication and signaling.

Accell1 is a signaling platform built on biopolymers with a neural-network-inspired architecture. We do not deliver chemistry we deliver a “signal instruction” that mimics the natural communication between cells, with no release of chemical substances.

Mechanism

01

Signaling biopolymer

  • Generates an ordered, biomimetic signal pattern.
  • The neural-network-inspired architecture allows complex, coordinated signals to be generated precisely.

No release of chemical substances

02

Coordinated biomimetic signals

  • Coordinated signal packages mimic the natural rhythms and dynamics of proliferative communication.
  • What is transmitted is the signal pattern itself, with no chemical intermediary.

The biopolymer acts as an active communicator, not a reagent

03

Recognised as authentic communication

  • The signal acts as a “key” matching the way the cell recognises natural proliferative communication.
  • The cell receives it as an authentic biological signal.

The lock-and-key fit ensures high specificity and authenticity of the signal

04

Synergistic activation of multiple pathways

  • Several signaling pathways are triggered at once.
  • Synergy and crosstalk amplify the cell's final response.

Declared performance increase of 400–500%

Pathways activated through biomimetic signal induction

Microorganisms

  • Signal reception by natural receptors
  • Activation of the culture's biological response
  • Amplification of natural signaling

Eukaryotic cells

  • Recognition of authentic proliferative communication
  • Simultaneous activation of multiple pathways
  • Crosstalk within the cell signaling network

Crops

  • Mechanosensory pathways
  • Gravitropic systems
  • Mechanosensitive ion channels
  • Ca2+ pathways
  • Root sensory systems
  • Abiotic stress MAPK cascades

A platform technology for signaling

A new layer of interaction

  • Signal instead of chemistry
  • No chemical substances released into the process
  • The layer of interaction shifts from chemical to signal-based

Synergy of multiple pathways

  • Crosstalk within the signaling network
  • Simultaneous activation of multiple pathways
  • Declared performance increase of 400–500%

Universality

  • Microorganisms
  • Eukaryotic cells
  • Crops

A scalable tool

  • The biopolymer is selected automatically for the process parameters
  • A molecular machine working inside the process
  • From laboratory to production scale

Coordinated signals

  • Biopolymers with a neural-network-inspired architecture
  • Generation of biomimetic signals

Lock-and-key fit

  • High signal specificity
  • Authenticity of recognition

Declared performance increase

300 – 0%

Achieved through the simultaneous activation of multiple signaling pathways in response to a recognised biomimetic signal.

Activation of multiple pathways

  • Synergistic activation at once
  • Crosstalk within the cell signaling network

An amplified effect

  • Compared with uncoordinated signals
  • Compared with single growth factors

You're welcome to get in touch.