OPP Method
ROI Calculator

Calculate the active ingredient potency your brand is losing to heat degradation in conventional manufacturing — and what the One Pot Process (OPP) Method delivers instead. All degradation rates sourced from published peer-reviewed data.

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Peer-Reviewed Data

All degradation rates cited

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OPP Patent Pending

AU 2026901796

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Shareable Results

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GMP Certified

ISO 22716 · SGS

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Australian Made

Ravenhall VIC 3023

Step 1 — Primary Heat-Sensitive Active
Select your primary heat-sensitive active. Degradation rates sourced from peer-reviewed literature.
What concentration are you targeting on label?
5%
What does your active ingredient cost per kg?
Step 2 — Batch & Business Details
50 kg
12 /yr
e.g. 30ml serum ≈ 33 units/kg
Degradation Rate Sources
Retinol: Temova Rakuša et al. (2020) J. Cosmetic Dermatology DOI:10.1111/jocd.13852 — 40–100% at 40°C
Peptides: GHK-Cu formulation data: never exceed 40°C. Biochemical: DSC studies confirm peptide denaturation 38.5–50°C
Postbiotics: PMC10572142 — enzyme activity affected at emulsification temps; PMC12639491 — SCFA release decreased 65–95°C
Live probiotics: Fundamental microbiology — killed above 37°C (complete)
Astaxanthin: PMC11582459 (2024) — significant degradation above 60°C. Springer (2016) — rate constant increases with temperature
OPP enhancement: Zhang et al. (2017) PMID 28763230 — 33× in vitro, 72× in vivo

Your Results

Based on peer-reviewed degradation data & OPP enhancement factors

Actual Active Potency Delivered to Product
Conventional Hot-Process
0.5%
actual potency preserved
OPP Cold-Process
5.0%
actual potency preserved
Potency lost to heat (per batch)
Active ingredient cost wasted (per batch)
Annual active ingredient waste
OPP transdermal enhancement (in vitro) 33×
Effective skin penetration — conventionalSurface only
Effective skin penetration — OPPSub-epidermal
Annual revenue (at your unit price)
Est. annual value of switching to OPP

Enter your details to see your personalised ROI insight.

All degradation percentages are sourced from published peer-reviewed research. Individual actives vary by formulation, pH, antioxidant system and packaging. OPP transdermal enhancement: 33× in vitro, 72× in vivo (Zhang et al., PMID 28763230). This calculator provides estimates for illustration and business planning purposes only — not a guarantee of specific results. Annual value estimate includes ingredient waste recovery and estimated 20% OPP premium pricing uplift.

The Science Behind
These Numbers

Heat Degradation Data

Retinol: 40–100% at 40°C (Temova Rakuša et al., J. Cosmetic Dermatology, 2020). Peptides: above 40–50°C (established biochemistry, GHK-Cu formulation data). Astaxanthin: significant above 60°C (PMC11582459, 2024). Postbiotic enzyme activity: affected at 65–95°C (PMC12639491). Live probiotics: killed above 37°C (fundamental microbiology).

OPP Enhancement Factor

33× baseline (in vitro porcine skin) and 72× in vivo figures from Zhang et al. (2017), Molecular Pharmaceutics, PMID 28763230. 73.4% human dermal absorption from PMC12564063 (2025 clinical trial). These are the primary peer-reviewed foundations for all OPP delivery claims.

Important Limitations

Ferment lysate degradation rates reflect enzymatic bioactivity loss — not total lysate destruction (lysates are already heat-killed during production). Astaxanthin degradation is significant above 60°C (not 40°C). All figures are representative ranges. Individual formulations vary based on pH, antioxidants, packaging and processing time.

Stop Paying for Actives
That Never Reach the Skin

Get a custom manufacturing quote based on your specific active brief. NDA before any technical discussion.