65/ 100
D
OverallF47/100
Brooks Shoes | Brooks Cushion Support Shoe Insole Replacement 11.5-12 | Color: Gray/White | Size: 12

Brooks · Athletic Insoles & Orthotics

Brooks Shoes | Brooks Cushion Support Shoe Insole Replacement 11.5-12 | Color: Gray/White | Size: 12

D · Elevated

Lower concern. Standard foam insoles rarely use PFAS.

Verdict: SkipReplacement foam insoles with no established safety issues; standard EVA/polyurethane construction carries minimal hazard when used as intended.

Replacement insoles are typically foam or gel without water-resistant coatings. Brooks has no public PFAS disclosure on this product, but the material category poses minimal PFAS risk.

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

Material

foam insole, likely EVA or polyurethane foam

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

Brooks Cushion Support replacement insoles are foam-based, most likely EVA (ethylene-vinyl acetate) or polyurethane closed-cell foam, both widely used in footwear without major safety concerns when formulated properly. These materials provide cushioning and do not off-gas significantly at room temperature in foot-worn conditions. The gray/white colorant is typically inorganic or azo-based pigment, standard in athletic footwear; no known contamination issues are documented for Brooks branded insoles.

The brand's record and disclosure

Brooks (owned by Berkshire Hathaway subsidiary Wolverine World Wide) maintains modest sustainability commitments but does not publish detailed chemical composition or third-party safety certifications for individual insole products. The brand has not faced recalled insoles or documented chemical safety failures in replacement footbed products. Disclosure on manufacturing standards for foam composition is limited, reflecting typical industry opacity rather than a specific red flag.

How it compares in its category

Replacement insoles occupy a low-risk category within apparel/footwear; they avoid many hazards associated with finished shoes (adhesives, leather treatments, dye fixatives). Brooks replacements are comparable to Superfeet, Powerstep, and Scholl branded alternatives. None of these products routinely disclose full chemical compliance beyond basic material type, making direct comparison difficult but also indicating absence of category-specific scandals.

If you buy it

Store in a dry environment; do not expose to prolonged heat (above 60°C) as foam may degrade. Replace when compression becomes noticeable (typically 6-12 months of regular use) to maintain cushioning efficacy. Hand wash if soiled; air dry fully. No special handling is required beyond typical footwear care. Not intended for use in extreme heat or with chemical treatment.

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 foam adhesives

Closed-cell foam insoles may incorporate small amounts of formaldehyde-based binders or glues in lamination layers, though levels in replacement insoles are typically far lower than in finished shoe construction. Off-gassing at body temperature (37°C in shoe environment) is expected to be minimal but not zero.

None known

Azo dyes and colorant stability

Gray and white pigmentation in Brooks insoles are standard formulations; no recalls or known migration of colorants into skin have been documented. Azo dyes in foam substrates present minimal skin contact risk unless insole is worn directly against broken skin.

Reported

Microplastics and foam degradation shedding

Polyurethane and EVA foam insoles shed microscopic particles with normal wear and compression; this is documented across the insole category. Quantities are small and confined to shoe environment, with negligible inhalation or ingestion risk in typical use, though long-term environmental impact from discarded insoles is a sustainability concern.

None known

Heavy metals in pigments

Brooks replacement insoles are not known to contain cadmium, lead, or antimony in colorants based on available public records. Standard inorganic pigments used in foam insoles do not pose heavy metal leaching risk under normal foot-wear conditions.

Possible

Volatile organic compound (VOC) off-gassing

New foam insoles may emit low levels of VOCs during initial use as residual solvents from manufacturing evaporate; ventilation and air exposure for 24-48 hours before wearing can reduce this. This is typical for foam products and dissipates quickly in well-ventilated footwear.

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.