Christian Louboutin Marchacroche Dune Platform Chelsea Boot
Christian Louboutin
$1545.00
Product Insights & Style Tips
Christian Louboutin Marchacroche Dune Platform Chelsea Boot fuses city grit with red-carpet polish. The silhouette rides high on a chunky lugged heel and platform, giving it confident height and an unmistakable street-ready stance. The signature red lacquered sole punctuates every step, while a leather upper and lining sits on a rubber sole for grounded durability. Pull-on style with elastic gore insets keeps the line clean and sleek.
Ease meets edge in the pull-on construction, with elastic gore insets that let the boot glide on and fit snugly. The platform and chunky heel add lift without sacrificing stability, making it easy to navigate day-to-night wear. Care is simple: wipe with a soft dry cloth and store in a dust bag; be mindful that the red lacquer on the soles will wear off with normal use, and avoid wet weather or abrasive surfaces to minimize the effect.
True to Louboutin's iconic codes, Marchacroche channels the brand's love of contrast — dramatic profile, refined construction, and the red sole as a calling card. Made in Italy, it pairs with everything from tailored trousers to denim for a look that feels polished, modern, and unmistakably established in the designer shoe world.
Materials / Fabrication
- Leather upper
- Leather lining
- Rubber sole
- Red lacquered sole detail
- Platform with chunky lugged heel
- Pull-on style with elastic gore insets
- Made in Italy
Recommended Care
- Wipe clean with a soft dry cloth after wear to remove dust and oils.
- Condition leather periodically with a leather conditioner; avoid harsh chemicals.
- Clean rubber sole with mild soap and water; dry thoroughly before wearing again.
- Avoid soaking leather or submerging the footwear; do not machine wash.
- Store in a dust bag; use shoe trees or tissue to maintain shape away from direct sunlight and heat.
- Be mindful that the red lacquered sole will wear with normal use; avoid wet weather or abrasive surfaces to minimize wear.