The platform

One platform. Grown once, captured gently, expressed four ways.

Algae4F is built on closed-loop vertical photobioreactors and low-temperature membrane capture. We cultivate characterized strains, pull out the signal instead of the biomass, then refine that one source into four markets.

Closed-loop vPBRLow-temp capturecGMP HoustonA2LA verified
The process

From clean water to a market-ready active.

01

Water treatment

Special disinfection and fine membrane filtration clean the water and shut out contaminants before anything grows.

02

Conditioning

Clean air and CO2 feed the algae carbon and keep them moving through the photobioreactors.

03

Media induction

Micronutrients are added and algae are recycled back into the vPBRs to keep the culture dense and characterized.

04

Harvest & filtration

Two-thirds of each column is harvested; membrane filtration removes the biomass to yield the metabolite concentrate, and the rest re-inoculates the system.

Upstream

The Vertical Photobioreactor.

Ultra-dense cultivation in 3-meter glass columns, each holding 1,280 liters per lot. A closed loop prevents water-borne and cross-contamination from invasive species, so the output stays pharmaceutical-grade. A 24-hour automated system holds temperature, pH, and CO2 in range, and we harvest a share of every column every day.

66%

more productive than open-pond cultivation

303

g/m²/day maximum output

1,280 L

per cultivation lot, 3-meter columns

35%

of volume harvested every day

Midstream

Capture, not crush.

Gentle, low-temperature membrane separation pulls out the bioactives and metabolites and leaves the biomass behind. For the most sensitive compounds, low-temperature vacuum extraction plus hollow-fiber sterilization keeps volatile molecules like natural chlorophyll intact, because heat and light would degrade them.

Low-temperature membrane separation

Pulls the active signal out of the culture without cooking it.

Vacuum extraction

Extreme cold and rapid separation prevent heat-induced degradation of volatile molecules.

Hollow-fiber sterilization

Sterilizes without ozone, so the compound that reaches the product is the compound the cell made.

Downstream specialization

One source, refined four ways.

From the shared culture, each vertical gets its own purpose-built refinement.

CGF

S-Nucleotide pipeline

A four-stage path, energy accumulation, bioactive formation, nucleic condensation, and precision extraction, yields the dense five-nucleotide DNA/RNA complex. Broken-cell processing makes it absorbable: 66.9 g protein per 100 g, all 9 essential amino acids.

PDRN

Precision cleaving

Endonuclease, controlled ultrasound, and gentle thermal energy fracture chlorella DNA into the 50–1,500 kDa window, the exact structural key that binds A2A adenosine receptors to trigger targeted cell regeneration.

CAS

Tripeptide synthesis

A proprietary ultra-low molecular weight tripeptide built for deep dermal penetration, demonstrating a 60%+ reduction in reactive oxygen species.

PDT

Bio-photoregeneration

A five-step light-wavelength mechanism that clears aging cells and prompts tissue remodeling without the artificial wounding of traditional lasers.

Membrane infrastructure

Built to run hard, and to be restored.

The filtration backbone is specialized hollow-fiber ultrafiltration, racked into high-pressure industrial skids. The modules use rugged polymer matrices, PVDF blended with UHMWPE, with a pH tolerance window of 2.0 to 10.0, so even aged modules can be reclaimed with aggressive chemical restoration. Cleaning runs on Chemically Enhanced Backwash: periodic automated reverse flushes with clean permeate that dissolve pore blockages.

Membrane
PVDF + UHMWPE, urethane-potted
pH tolerance
2.0 – 10.0
Cleaning
Chemically Enhanced Backwash (CEB)
Decolorization
Ion exchange + ultrafiltration

Put the platform to work.

Add a drop-in active to your product, distribute in your region, or license the platform. The first step is a sample and a trial.