65/ 100
D
OverallF53/100
Men's Orthofeet Biosole Gel Sport

Orthofeet · Athletic Insoles & Orthotics

Men's Orthofeet Biosole Gel Sport

D · Elevated

No water-repellent coating treatment visible. Likely lower PFAS concern.

Verdict: SkipGel insole sport shoe with no known hazard flags; low PFAS concern mitigates primary footwear risk. Standard due diligence on dye and formaldehyde finishes advised.

Orthofeet sport shoe uses gel insoles and standard textile/rubber construction with no disclosed waterproof or stain-resistant coating. Silent on PFAS, but common materials suggest lower risk unless undisclosed treatments present.

Still want this one anyway? Check the price on Amazon. We’d swap it.

Material

Gel insole, textile upper, rubber sole

Brand disclosure

Brand is silent on PFAS

Lab data

No public lab test

Why this grade

Safe base material

Made from a material with no inherent PFAS use (ceramic, mineral, or natural fiber).

Helps the grade

Category baseline

clothing is a category where PFAS exposure is more common.

Hurts the grade

No PFAS disclosure

No public statement about PFAS in this product.

Hurts the grade

The full breakdown

What it's made of and why it matters

Orthofeet Biosole Gel Sport combines a textile upper, elastomeric gel insole, and rubber outsole. The gel insert is typically a thermoplastic elastomer or polyurethane compound designed for shock absorption and arch support; these materials are chemically stable when cured and pose minimal leaching risk under normal foot-temperature conditions (below 40°C). The textile upper and rubber sole are standard footwear construction, though dyes used in the textile and any chemical finishes on the upper warrant attention in the hazard review.

The brand's record and disclosure

Orthofeet is a specialty footwear brand focused on comfort and orthopedic function, with no major public safety recalls or chemical-disclosure controversies on record. The company's silence on PFAS (and broader chemical accountability) is typical of mid-market footwear brands and does not indicate documented misuse of water-repellent coating treatments. No third-party certifications (e.g., bluesign, GOTS) are widely advertised for this model, placing it in the non-certified mainstream footwear segment.

How it compares in its category

Men's sport shoes in this price and function class rarely undergo rigorous chemical auditing. Orthofeet's emphasis on gel-cushioned comfort aligns with athletic and casual footwear norms, without specialized material claims (e.g., recycled content, organic cotton) that would raise or lower hazard expectations. The lack of visible water-repellent treatment is a small advantage over water-repellent coating-treated athletic shoes, which may carry higher PFAS exposure risk.

If you buy it

Wear the shoe in normal conditions (no prolonged high-temperature exposure like ovens or direct flame). Wash textiles separately in cold water if staining or heavy soiling occurs; avoid chlorine bleach and high-heat drying, which can degrade elastomeric components and release volatile compounds. Replace insoles if gel visibly degrades, cracks, or emits chemical odor. Store in a cool, dry place; off-gassing is minimal but adequate ventilation during the first week of wear is prudent.

Beyond PFAS: other things we checked

Established hazard classes for this product type, assessed from public information. These never change the PFAS grade; a Likely flag caps the Verdict at “Buy with care.”

Possible

Azo dyes in textile upper

Footwear textiles frequently use azo dyes without restriction in most markets. No specific allergen or carcinogenic azo dye (e.g., benzidine-based) is known to be in this product, but full dye formulation is not publicly disclosed. Risk is dermal contact; individuals with sensitive skin should test fit before extended wear.

Possible

Formaldehyde resin finishes on textiles

Fabric coatings and wrinkle-resistance or water-repellent treatments applied to footwear textiles may contain formaldehyde releasers. Orthofeet does not advertise formaldehyde-free construction. Symptoms are rare in footwear; off-gassing diminishes sharply after 1-2 weeks of wear.

None known

Gel insole thermal stability under load

Thermoplastic elastomer and polyurethane gels used in orthopedic insoles are chemically stable under normal body-temperature and wear conditions. No leaching of BPA, phthalates, or other plasticizers is documented or expected at foot-contact temperatures below 40°C.

None known

Heavy metals in dyes and pigments

Footwear dyes and colorants are subject to EU and US import restrictions on lead and cadmium in painted or coated items, though standards vary by jurisdiction. No specific heavy-metal contamination has been reported for Orthofeet products. Risk is minimal compared to vintage or budget footwear from unregulated sources.

Possible

Antimony in polyester components

If the textile upper or lining contains polyester, catalyst residues (antimony trioxide) from polyester fiber production may remain at trace levels. Standard polyester in mainstream footwear carries minimal skin-contact risk, but no third-party testing confirms antimony absence in this model.

What we don’t know

This grade is a model-based estimate from public materials, coatings, and brand disclosure at 72% confidence. It is not a lab result.

No independent PFAS lab test is on record for this exact product. A lab test could move the score in either direction.

The brand has not made a specific, verifiable PFAS-free statement, so part of this score reflects that missing disclosure rather than a confirmed material.

Formulations and coatings change between production runs. Always check the current label before buying.

More athletic insoles & orthotics grades

How we score: every product runs through the same public 0–100 rubric based on materials, coatings, brand disclosure, lab findings, and recalls. See the full methodology → Spotted a mistake? Report an error.