Nike Air Max DN - Grey - UK 9












The Nike Air Max DN in Particle Grey/Black is designed for adult men seeking a blend of modern aesthetic and responsive athletic support for everyday wear. Featuring Nike's signature Dynamic Air unit technology, these trainers provide exceptional cushioning that adapts to your movement, though users should be mindful that the synthetic and leather construction requires regular maintenance to preserve the material finish.
| Gender | Male |
|---|---|
| Age Group | adult |
| Colour | Grey |
| Accent Colour | Black |
| Material | Leather |
| Shoe Type | Trainers |
| Shoe Size UK | 9 |
| Series | Air Max DN |
| Model Part Number | DV3337-004-90 |
| Brand | Nike |
Yes, they generally fit true to size. If you prefer a roomier fit, some users opt to go up a half size.
These are lifestyle trainers designed for everyday wear and casual activity, not specialized long-distance running.
Gently wipe the clear air unit with a damp cloth to remove dust. Do not use harsh chemicals.
The upper is constructed using recycled synthetic materials as part of Nike's commitment to reduced environmental impact.
Store in a cool, dry place away from direct sunlight to prevent the materials from fading or cracking over time.
This often occurs due to friction between the insole and the shoe interior. Remove the insole and place a small amount of talcum powder underneath before replacing it.
Use a soft microfiber cloth and a gentle cleaning solution specifically designed for synthetic and leather footwear to avoid discoloration.
To ensure your Air Max DN trainers maintain their performance, begin by adjusting the laces to your preferred tension; the secure fit is essential for the Dynamic Air unit to function correctly. These shoes are compatible with standard athletic socks or low-profile liners. For care, avoid machine washing, which can damage the pressurized air chambers and leather accents. Instead, spot clean with a soft-bristled brush, mild soap, and lukewarm water. Always air dry your shoes away from direct heat sources to prevent material warping.