65/ 100
D
OverallF49/100
PUMA Men's Softride Symmetry Fuzion Low-top Sneakers

Puma · Athletic Insoles & Orthotics

PUMA Men's Softride Symmetry Fuzion Low-top Sneakers

D · Elevated

Standard sneaker with no disclosed water treatment. Lower concern.

Verdict: SkipStandard mesh athletic sneaker with no established safety red flags; typical brand disclosure gaps but no documented hazards.

PUMA Softride Symmetry uses common textile and foam materials without disclosed water-repellent coating. No PFAS claims or certifications available, but standard construction poses lower risk than treated athletic footwear.

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

Material

Mesh textile upper, foam midsole, rubber outsole

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

The Softride Symmetry uses a mesh textile upper (likely polyester or nylon blend), foam midsole (EVA or similar closed-cell polymer), and rubber outsole. Mesh uppers are generally low-risk because they are breathable and not in prolonged skin contact like tight textiles; they shed minimal microfibers under normal wear. The foam midsole is a stable material but will degrade and compress over 1-2 years, which is normal and not a safety concern.

The brand's record and disclosure

Puma does not prominently publish chemical restriction lists or third-party certifications for sneakers at the level of brands like Adidas or Nike, nor does it make explicit statements about formaldehyde resins, azo dyes, or flame retardants in athletic footwear. No recalls or safety violations are on public record for this specific model. The brand's silence on manufacturing chemistry is typical for mid-tier sportswear but reflects lower transparency overall.

How it compares in its category

Mesh-upper low-top sneakers are among the lower-risk footwear designs because they avoid heavy synthetic leather and tight weaves that trap moisture and heat. This model sits in the mainstream athletic sneaker segment with no distinguishing safety features or certifications; it is chemically comparable to most Adidas, New Balance, or generic athletic shoes in the same price range.

If you buy it

Air out new shoes for 24-48 hours before wearing to allow any residual production-line odors (volatile organics) to dissipate. Wash your feet after wearing if skin sensitivity occurs, though dermatitis from sneakers is rare. Replace the shoe when the midsole becomes noticeably soft or compresses unevenly, typically after 300-500 miles of use. Store in a dry place to prevent mold growth in the foam.

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

Formaldehyde resins in textile finishing

Mesh uppers and internal linings may be treated with formaldehyde-based dyes or wrinkle-resistant resins common in low-cost athletic footwear production. Puma does not disclose restriction practices for this compound in sneakers, so residual exposure is plausible but typically minimal on breathable mesh.

Possible

Azo dyes in colored fabrics

The textile upper may contain azo dyes, which are common in synthetic mesh dyeing and are banned in EU textiles above certain restricted amines but less tightly regulated in athletic footwear. No specific data exists for this model; risk is low due to air exposure and light skin contact.

None known

Antimony in polyester fibers

Antimony is used as a catalyst in some polyester production but is chemically bound in the polymer and does not leach during normal wear. No evidence of elevated antimony in mass-market sneakers; not a practical concern for this product.

Possible

Microplastic shedding from foam midsole

EVA foam midsoles gradually degrade and shed small particles during wear and walking, contributing to microplastic release into soil and water. This is an environmental concern shared by all foam-based sneakers, not a direct consumer health hazard, but worth noting for lifecycle impact.

Possible

VOC off-gassing from adhesives and coatings

Shoe assembly uses solvent-based glues and surface treatments that release volatile organic compounds, particularly in the first 48 hours. Smell dissipates quickly with ventilation and poses minimal risk in typical use, though sensitive individuals may experience mild respiratory or olfactory irritation.

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.