# Bioactive food colors (E-numbers)

A US policy push to phase out synthetic dyes is pulling fermentation-derived and plant-extracted natural colors from niche to mainstream — Sensient is investing up to $250M to expand capacity, and fermentation originators Chromologics and Michroma are scaling fungal pigments engineered to match synthetic-dye performance.

Source: https://en.bioecon.ru/technology/bioactive-food-colors-e-numbers/
Updated: 2026-08-18



## Overview and value chain

Markers: [EC: US synthetic-dye phaseout policy ('MAHA' initiative) — natural-color substitution mandate | OECD: Food systems | Regulator: FDA (USA), EFSA (EU)]

Bioactive food colors replace synthetic dyes and less stable plant extracts
with pigments produced by microbial fermentation or advanced plant-based
extraction, engineered specifically to match synthetic dyes on heat and
pH stability — historically the weak point of natural colorants. Chromologics
raised €7 million in November 2025 and a further $8 million to scale
Natu.Red, a fermented red dye positioned as a stable alternative to both
insect-derived (cochineal/carmine) and synthetic red pigments. Michroma
uses fungal fermentation to produce heat- and pH-stable natural colors,
explicitly targeting the cost, supply and performance barriers that have
held natural colors back from replacing synthetic dyes at scale. The
push has a clear policy driver: a US synthetic-dye phaseout initiative
("MAHA") is accelerating demand, and Sensient Technologies announced on
April 20, 2026 a capital investment of up to $250 million to expand
natural-color production capacity, including its largest site in St.
Louis, Missouri, adding new manufacturing lines to meet what it describes
as unprecedented demand for the shift away from synthetic dyes.

Key directions of bioactive food colors:
1. **Fermentation-derived stable pigments (Fermentation-Derived Stable
   Pigments):** fungal or microbial fermentation producing red, orange and
   other target-hue pigments engineered for heat/pH stability matching
   synthetic dyes.
2. **Insect-derived colorant replacement (Insect-Derived Colorant
   Replacement):** fermented red dyes positioned specifically to displace
   cochineal/carmine (insect-derived) red colorants as well as synthetic ones.
3. **Plant-based coloring-foods extraction (Plant-Based Coloring-Foods
   Extraction):** concentrated plant/fruit extracts formulated into a full
   spectrum of natural colors without a fermentation step.
4. **Synthetic-dye-phaseout capacity expansion (Synthetic-Dye-Phaseout
   Capacity Expansion):** incumbent color manufacturers investing hundreds
   of millions of dollars to scale natural-color production in direct
   response to regulatory/policy pressure on synthetic dyes.

### Sectoral value chain

```
[strain/feedstock selection] ──> [fermentation or extraction] ──> [pigment purification] ──> [stability formulation]
                                                                          │
                                                                  (regulatory
                                                                   color-additive review)
                                                                          │
                                                                          ▼
[food/beverage coloring] <─── [manufacturer sale] <──────────────────────┘
```

### Value chain levels

| Level | Description | Key inputs/outputs |
|:---|:---|:---|
| **Strain/Feedstock Selection** | choosing a pigment-producing microbial strain or plant/fruit source | **In:** candidate strain/plant material. **Out:** production organism/feedstock. |
| **Fermentation or Extraction** | producing the pigment via fermentation or concentrating it from plant material | **In:** strain/feedstock. **Out:** crude pigment. |
| **Pigment Purification** | purifying the crude pigment into a food-grade colorant | **In:** crude pigment. **Out:** purified colorant. |
| **Stability Formulation** | formulating the colorant for heat/pH stability matching synthetic-dye performance | **In:** purified colorant. **Out:** stable, application-ready color. |
| **Regulatory Color-Additive Review** | clearing FDA or EU color-additive/E-number authorization | **In:** safety dossier. **Out:** market authorization. |
| **Food/Beverage Coloring** | the authorized color is used to formulate a food or beverage product | **In:** authorized colorant. **Out:** colored finished product. |

Cross-cutting technologies of the sector:
- **Fungal fermentation pigment production (Fungal Fermentation Pigment Production):** engineered fungal strains producing target-hue pigments at industrial scale.
- **Heat/pH stability engineering (Heat/pH Stability Engineering):** formulation techniques closing natural colorants' historical stability gap versus synthetic dyes.
- **Coloring-foods plant extraction (Coloring-Foods Plant Extraction):** concentrating natural plant/fruit pigments without isolating a single chemical compound, a distinct regulatory category from purified color additives in some markets.

---

## US

The US is the epicenter of both the fermentation-pigment originator
activity and the incumbent capacity expansion driven directly by
synthetic-dye phaseout policy.

### synthetic-dye phaseout policy, fungal fermentation pigments, incumbent capacity investment
- **Michroma:** produces heat- and pH-stable natural colors from fungal fermentation, explicitly targeting the cost, supply and performance barriers that have limited natural-color adoption, and has been described as riding the "MAHA wave" of US synthetic-dye phaseout policy.
- **Sensient Technologies:** announced on April 20, 2026 an investment of up to $250 million to expand natural-color production capacity, including its largest production site in St. Louis, Missouri, citing unprecedented demand from the US shift away from synthetic dyes.

---

## CN

Public information on a dedicated Chinese fermentation-based natural-color
originator was not confirmed in this pass, though Chinese industry research
explicitly frames the sector's shift; the section stays at the policy level.

### industry-research framing of a "natural color" transition, no confirmed flagship originator, market-growth forecasting
- **Explicit industry transition framing:** Chinese market-research coverage explicitly frames the sector's shift "from a chemical palette to natural, healthy color," reflecting significant anticipated demand growth.
- **No confirmed flagship originator:** a Chinese company operating a fermentation-based natural food-color platform at the scale of the US/EU leaders was not confirmed via live sources in this pass.
- **Value-chain shift framing:** the same research coverage frames a shift "from price competition to technology solutions" in the edible-colorant industry, consistent with the performance-engineering focus seen among global leaders.

---

## EU

Denmark and the Netherlands anchor the region's activity, spanning a
fermentation-pigment originator and the leading plant-based coloring-foods
supplier.

### fermented red-dye scale-up, EXBERRY coloring-foods portfolio, insect-derived colorant displacement
- **Chromologics:** a Danish biotech developing fermentation-based natural colors, which raised €7 million in November 2025 (Novo Holdings, EIFO and others) and a further $8 million to scale Natu.Red, a fermented red dye positioned against both insect-derived and synthetic pigments.
- **GNT Group:** supplies the EXBERRY portfolio of plant-based Coloring Foods, expanding into new shades (e.g., a low-dosage vibrant pink) and new application formats such as functional fruit gums.

---

## Leading companies and research institutes

| Company / Institute | Country | Key products / platforms | Tech features | Status 2026 |
|:---|:---|:---|:---|:---|
| **Chromologics** | 🇩🇰 Denmark | *Natu.Red fermented red dye* | fermentation-based; €7M + $8M raised (2025–2026) | Growth |
| **Michroma** | 🇺🇸 USA | *Fungal-fermentation natural colors* | heat/pH-stable pigments | Growth |
| **Sensient Technologies** | 🇺🇸 USA | *Natural color manufacturing* | $250M capacity expansion (2026) | Commercial |
| **GNT Group** | 🇳🇱 Netherlands | *EXBERRY Coloring Foods* | plant-based extraction, full color spectrum | Commercial |
| **Symega** | 🇮🇳 India | *Natural food colors* | plant/botanical-based colorant portfolio | Commercial |

---

## Tech stack and innovations

The stack closes natural colorants' historical performance gap versus synthetic dyes.

1. **Fungal fermentation for target-hue pigments (Fungal Fermentation for Target-Hue Pigments):**
   - engineered fungal strains are fermented specifically to produce a stable pigment in a target hue (e.g., red) at industrial scale.
   - case: Michroma's fungal-fermentation platform is built specifically to solve the cost, supply and performance problems that limited earlier natural colors.
2. **Heat/pH stability formulation (Heat/pH Stability Formulation):**
   - natural pigments are formulated to withstand processing heat and pH ranges that previously degraded plant-extracted colors.
   - case: Chromologics positions Natu.Red specifically as a stable substitute for both insect-derived and synthetic red colorants.
3. **Low-dosage vibrant shade engineering (Low-Dosage Vibrant Shade Engineering):**
   - plant-extraction platforms are engineered to deliver vibrant color at lower use levels, improving cost-in-use versus earlier natural extracts.
   - case: GNT's EXBERRY pink launch is explicitly positioned around achieving vibrant shades at low dosages.

---

## Value chains and production pipelines

### Industrial pipeline of a fermentation-derived food color (FDA/EFSA color-additive review)

```
┌───────────────────────────┐      ┌───────────────────────────┐
│ 1. Strain/feedstock selection│ ───> │ 2. Fermentation or extraction│
└───────────────────────────┘      └───────────────────────────┘
                                                 │
                                                 ▼
┌───────────────────────────┐      ┌───────────────────────────┐
│ 4. Regulatory color review│ <─── │ 3. Purification & stability formulation│
└───────────────────────────┘      └───────────────────────────┘
              │
              ▼
┌───────────────────────────┐      ┌───────────────────────────┐
│ 5. Manufacturer sale      │ ───> │ 6. Food/beverage launch   │
└───────────────────────────┘      └───────────────────────────┘
```

#### Stage 1: Strain/feedstock selection
A pigment-producing fungal/microbial strain or a plant/fruit source is selected for the target hue.

#### Stage 2: Fermentation or extraction
The pigment is produced via fermentation or concentrated from the plant/fruit feedstock.

#### Stage 3: Purification & stability formulation
The crude pigment is purified and formulated to withstand the heat and pH conditions of food/beverage processing.

#### Stage 4: Regulatory color review
The colorant clears FDA color-additive review or EU E-number authorization before sale.

#### Stage 5: Manufacturer sale
The authorized natural color is sold to food and beverage manufacturers replacing a synthetic dye or an earlier, less stable natural extract.

#### Stage 6: Food/beverage launch
The colored finished product launches, with 2026 capacity investment (e.g., Sensient's $250M expansion) signaling how fast demand is scaling as synthetic-dye phaseout policy takes effect.

