Oral-B Dual-Head Denture Brush - 6/Box (80310196)

MSRP: $10.95
$8.00
(You save $2.95 )
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SKU:
PST-PGO-80310196
  • A clinical-grade specialty manual brush engineered for the comprehensive daily cleaning of full dentures, partial dentures, and removable orthodontic appliances, this tool utilizes two distinct, firm bristle configurations on a single head to remove stubborn biofilms and stains that effervescent soaking tablets alone cannot clear

Uses

  • Full Denture Maintenance:
    • Cleans wide, flat exterior acrylic plates and porcelain tooth surfaces on upper and lower arches
  • Partial Appliance Detailing:
    • Reaches complex frameworks, including metallic retention clasps and attachment grooves
  • Orthodontic Care:
    • Safely cleans removable acrylic retainers, clear aligners, and nightguards without scuffing the materials

Features

  • Dual-Head Configuration:
    • Outfitted with a large, flat multi-tufted head on one side and a smaller, tapered, angle-trimmed head on the reverse
  • Firm Nylon Fibers:
    • Constructed with stiff, resilient nylon bristles optimized specifically for synthetic materials rather than natural teeth
  • Sure Grip Handle:
    • A thick, oversized handle featuring built-in thumb grips to optimize physical leverage and prevent dropping when wet
  • Legacy Compatibility:
    • Serves as the direct, modernized replacement for older P&G catalog part numbers 80310199 and 75048450

Benefits

  • Stain & Plaque Prevention:
    • Provides the rigorous mechanical friction required to scrub away coffee, tea, and tobacco stains alongside sticky food debris
  • Targeted Pocket Cleansing:
    • The reverse angled tip slides seamlessly into deep, narrow denture retention grooves to protect against bad breath bacteria
  • Ergonomic Control:
    • The broad handle design accommodating a full-palm grip is highly beneficial for elderly patients or individuals experiencing limited manual dexterity
  • Appliance Protection:
    • The firm bristles are structurally calibrated to maximize plaque disruption without introducing structural micro-scratches where bacteria could thrive