Asics GT-1000 14 - Trainers - Grey - Blue - 11 UK


Currently unavailable


Currently unavailable
The Asics GT-1000 14 is a versatile trainer designed for adult runners who prioritize consistent comfort and reliable support during daily training sessions. Featuring advanced cushioning technology and a lightweight build, these trainers excel at keeping feet cool and stable; however, users should note that the specialized support structure is optimized primarily for road running and may feel less responsive on technical trail terrain.
| Gender | Male |
|---|---|
| Age Group | adult |
| Colour | Grey |
| Accent Colour | Blue |
| Shoe Type | Trainers |
| Shoe Size UK | 11 |
| Series | GT-1000 14 |
| Model Part Number | 1011C077-021 |
| Brand | Asics |
The GT-1000 series is designed with stability features that generally accommodate those needing moderate support.
Yes, their lightweight construction makes them suitable for cross-training and treadmill work.
It is generally recommended to replace running shoes every 300 to 500 miles, depending on your running surface and gait.
Yes, the internal sock liner can be removed if you need to insert custom orthotics.
Try on your trainers in the evening when your feet are at their largest, and ensure there is roughly a thumb's width of space at the toe.
Ensure the laces are tensioned correctly and verify the size is appropriate for your foot width; the break-in period may take 2-3 runs.
Check that the socks being used are moisture-wicking; remove the inner sock liner after exercise to allow the shoe to air out completely.
To ensure the best performance from your GT-1000 14 trainers, verify you are wearing the correct UK size for your foot shape. When storing your shoes, keep them in a cool, dry place away from direct sunlight to preserve the integrity of the cushioning foam. If the shoes become dirty, gently remove surface dust with a soft brush and clean the mesh using a damp cloth with mild soap; avoid submerging them in water or using a washing machine, as high heat and agitation can degrade the structural components.