Our Botanical Tradition

Measured Preparation & Structural Integrity

Moving beyond conventional supplement culture through controlled ultrasonic processing and traditional apothecary craft.

Phase I: Preparation

Working with Whole Fruiting Bodies

Mushrooms possess a naturally dense structural matrix composed of Chitin. We employ a dual-action "Freeze & Blanche" method to gently open this structure before preparation begins.

Sourcing: Wild foraged or UK-grown by Dart Valley Fungi. Fruiting bodies only. No fillers.

See our field identification and provenance photos →

The Ultrasonic Standard

Using 28kHz Ultrasonic Cavitation at strictly <30°C, we create controlled pressure fluctuations within the liquid medium. This assists in transferring botanical material into solution without prolonged exposure to high heat.

Phase II: Dual Preparation

Solvent & Water Processing

We use pharmaceutical-grade ethanol as a preparation solvent, followed by distilled water processing. Ethanol is removed during the final stages of preparation.

  • Step A: Short-duration ultrasonic ethanol preparation.
  • Step B: Extended distilled water decoction at controlled temperature.
  • Step C: Vacuum filtration through Buchner funnels for clarity and consistency.
“We carefully reduce our preparations to remove residual solvent. What remains is a concentrated botanical material ready for final suspension.”
Phase III: Final Suspension

Stabilized in Organic Glycerine

The prepared botanical material is suspended in Organic Glycerine with 1% Organic Sunflower Lecithin. This creates a shelf-stable, alcohol-free botanical suspension designed for consistency and longevity.

Phase IV: The Physics of Cavitation

Why 28kHz Matters

Our 28kHz frequency produces larger cavitation bubbles with deeper mechanical impact. As these bubbles collapse near the botanical material, they create localized micro-currents that assist in structural processing.

This allows thorough preparation of dense fungal tissue without prolonged heat exposure, maintaining the physical character of the source material.

Meet Will & Nicole and explore our mission →