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Propyl Gallate vs Calcium Disodium EDTA: which is worse?

Quick answer: Propyl Gallate carries the heavier risk profile. Propyl Gallate is in the EU and in the US; Calcium Disodium EDTA is in the EU and in the US.

PropertyPropyl GallateCalcium Disodium EDTA
EU status
US status
Risk level
Banned inJapan (banned for food use)
Restricted inEuropean Union (restricted to 200 mg/kg in specific fat/oil applications), United Kingdom, AustraliaEuropean Union (restricted to specific food categories; not approved for many applications permitted in US)
Categoryadditiveadditive
Where it hides

What is Propyl Gallate?

Propyl gallate is a synthetic antioxidant preservative derived from gallic acid and propanol. It prevents oxidation of fats and oils, extending shelf life of fat-containing foods. It is often used in combination with BHA and BHT for synergistic antioxidant effect. Chemical formula: C10H12O5.

What is Calcium Disodium EDTA?

Calcium disodium EDTA (ethylenediaminetetraacetate) is a chelating agent used as a food preservative. It binds metal ions (particularly iron and copper) that would otherwise catalyze oxidative and color-degradation reactions in foods. It prevents color loss, flavor changes, and bacterial growth in certain foods.

Documented risks

Propyl Gallate: Animal studies have shown propyl gallate may cause liver damage at high doses. Concerns about estrogenic activity have been raised — some studies suggest propyl gallate may weakly mimic estrogen. Contact dermatitis and allergic reactions are documented in both food and cosmetic applications. Japan banned propyl gallate for food use as part of its precautionary approach to synthetic food preservatives. NTP bioassays found dose-dependent liver effects. EFSA's re-evaluation set an ADI of 0.1 mg/kg body weight — one of the lowest ADIs for food additives, reflecting toxicological concern.

Calcium Disodium EDTA: EDTA chelates essential minerals including zinc, iron, calcium, and magnesium in the gut, potentially reducing absorption of these nutrients with regular consumption. Animal studies at high doses show reproductive toxicity and zinc deficiency effects. EFSA's safety assessment noted that EDTA could reduce zinc bioavailability at consumption levels that could be reached by high consumers of EDTA-containing foods. The ADI is 1.9 mg/kg body weight. EDTA's poor biodegradability also makes it an environmental concern — it accumulates in water supplies and can mobilize heavy metals in sediments.

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