Place Bid

Buy For £1,358


Sell for £966 or Ask for More

Dior And Shawn B23 High Top Bee Embroidery

Dior And Shawn B23 High TopBee Embroidery

Last Sale:

£1,048

£643

(159%)


StockX Verified

Condition:New

Our Promise


Related Products


Product Details

Style

3SH118YYO_H960

Colourway

Black/White

Retail Price

US$1,150

Release Date

06/11/2020

Product Description

Introducing the Dior And Shawn B23 High Top Bee Embroidery, a collaboration that infuses Dior's luxurious design with streetwear sensibility, courtesy of Shawn Stussy. This unique sneaker showcases intricate bee embroidery, a nod to one of Dior's most beloved motifs, set against a stark black and white canvas. The result is a stunning piece of footwear that bridges the gap between high fashion and urban style, released on November 6, 2020.

Every stitch of the bee embroidery tells a story of craftsmanship and luxury, while the high-top silhouette offers a contemporary edge. The sneaker's design combines Shawn Stussy's iconic streetwear influence with Dior's unmatched quality, creating a bold statement piece that's both artistic and wearable. It's an emblem of collaboration at its finest, reflecting a shared commitment to pushing the boundaries of design and fashion.

Priced at $1,150, the Dior And Shawn B23 High Top Bee Embroidery has captivated the attention of sneaker collectors and fashion enthusiasts worldwide. Its release marked a momentous occasion where two distinct worlds of fashion converged to create something truly special. This sneaker is not just footwear; it's a testament to the power of collaboration and innovation in the luxury fashion space.


You Might Like

Sponsored



12-Month Historical

 
 
 
 
 
 
 
 
 
 
 
 

StockX Verified

StockX-verified is our own designation and means that we inspect every item, every time.

Learn More

Our Promise

We strive to earn and keep your trust. If we make a mistake, we'll put it right.

Learn More

Start Selling ASAP

You can start selling on StockX in just a few clicks, no application process necessary.

Learn More