Powerstep · Synthetic Athletic Insoles & Orthotics
PowerStep Bridge Insoles
Limited PFAS risk likely, but brand discloses nothing.
Powerstep Bridge Insoles use foam and gel cushioning, materials not typically treated with PFAS. No public PFAS claim or testing data found from brand.
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Material
foam, gel, textile layers
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).
Category baseline
clothing is a category where PFAS exposure is more common.
No PFAS disclosure
No public statement about PFAS in this product.
The full breakdown
What it's made of and why it matters
PowerStep Bridge Insoles combine closed-cell foam (typically polyurethane or EVA), gel cushioning layers, and textile top covers. Foam and gel materials in insoles are not designed to contact skin for prolonged periods at high temperatures, limiting leaching risk for most chemical additives. The textile layer is a minor exposure pathway because it contacts only the sock-covered foot during normal wear.
The brand's record and disclosure
PowerStep does not publicly disclose material sourcing, manufacturing standards, or chemical certifications (e.g., bluesign, OEKO-TEX) on their website or product packaging. The brand has no documented safety recalls or hazard controversies in public records. Their silence on PFAS and other chemicals is consistent with most orthotic insole manufacturers, who treat these as commodity foot-care items rather than regulated medical devices in most markets.
How it compares in its category
Orthotic insoles typically carry lower chemical hazard profiles than apparel or footwear uppers because the materials are not dyed, flame-treated, or chemically water-proofed to the extent textiles are. PowerStep's multi-layer foam and gel construction is standard in the category and offers no obvious advantage or disadvantage in chemical safety relative to Superfeet, Powerfeet, or store-brand gel insoles. Certification-bearing alternatives (e.g., some Superfeet or podiatrist-recommended brands with OEKO-TEX labeling) offer more transparency but at higher cost.
If you buy it
Wash insoles in cool water with mild soap every 1-2 weeks to remove sweat and bacteria; do not machine wash or bleach. Replace every 6-12 months depending on activity level, as foam degrades and loses cushioning rather than leaching concern. Store in a dry location; avoid prolonged heat exposure (do not leave in hot vehicles). If you have sensitive skin or notice irritation, consider switching to a certified alternative with known material transparency.
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.”
Formaldehyde resins in textile layer
Textile top covers on insoles may contain formaldehyde-based binders or finishes for wrinkle resistance or antimicrobial properties. Skin contact is intermittent and sock-mediated, so exposure is low, but PowerStep does not disclose whether their textile is treated.
Polyurethane foam degradation and off-gassing
Polyurethane foam can off-gas volatile organic compounds (VOCs) during early use and when exposed to heat or UV light. In an enclosed shoe, VOC concentration remains localized and low; risk is minimal compared to indoor foam products, but sensitive individuals may notice odor.
Antimony or heavy metals in polyester or dyes (if used)
No public data confirms antimony use in PowerStep insole textiles. If the top cover is polyester, antimony may be present as a catalyst, but foot-contact duration and barrier (sock) make migration negligible.
Bacterial growth and mold in gel or foam layers
Damp gel and foam insoles are susceptible to microbial colonization if not dried between uses. This is a hygiene and odor issue rather than a chemical hazard, but can cause skin irritation in people with sensitive skin or fungal susceptibility.
Azo dyes in textile cover
No published data on dye chemistry in PowerStep insoles. Azo dyes are commonly used in textile dyeing and may cause allergic contact dermatitis in sensitive individuals; PowerStep provides no dye standard information.
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 synthetic 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.