Accell1

Technology

Classical approaches act on the cell chemically.

Most solutions that increase bioprocess efficiency rely on releasing active substances — stimulants, regulators, nutritional additives.

01

Chemical action

A substance released into the process is consumed, modified or removed — single-use, costly, and with a risk of residues.

02

Single pathways

A classical activator usually triggers one metabolic pathway. There is no synergy and no crosstalk within the signaling network.

03

Narrow specialisation

Every industry and every process requires a separate formulation. There is no universal platform working across classes of organisms.

Accell1 shifts the layer of interaction — from chemical to signal-based.

Classical vs biomimetic

Two ways of reaching the cell.

Classical chemical communication

The cell releases molecules that travel to another cell.

  1. 1Release of molecules
  2. 2Diffusion through the extracellular space
  3. 3Receptor binding and pathway activation

Biomimetic signal induction

No chemical substances are released; what is transmitted is the signal pattern itself, which activates the receptor and the cell's response.

  1. 1Transmission of the biomimetic signal
  2. 2Signal transfer without a chemical intermediary
  3. 3Receptor binding and pathway activation

No release of chemical substances

What we offer

We do not deliver chemistry — we deliver a “signal instruction” that mimics the natural communication between cells.

The mechanism in 4 steps

One pattern that opens several routes at once.

This is not about a single stimulus, but about a signal pattern that “opens” several biological routes simultaneously.

1

Signaling biopolymer

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

2

Coordinated biomimetic signals

Coordinated signal packages mimic the natural rhythms and dynamics of proliferative communication.

3

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.

4

Synergistic activation of multiple pathways

Several signaling pathways are triggered at once. Synergy and a crosstalk effect appear, amplifying the cell's final response.

Lock-and-key mechanism

The cell recognises the signal as authentic proliferative communication.

  • Biopolymers with a neural-network-inspired architecture generate coordinated biomimetic signals.
  • The lock-and-key fit ensures high specificity and authenticity of the signal.
  • Synergistic activation of multiple pathways at once — using the crosstalk effect within the cell signaling network.
  • The effect is amplified compared with uncoordinated signals or single growth factors.

Declared performance increase

300 – 0%

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

The lock-and-key mechanism — recognition + synergy + signaling crosstalk.

Contact

You're welcome to get in touch.