
[Tweed] Zip-Up Dress
¥54,000
White / USA2/UK6
- White / USA2/UK6
- White / USA4/UK8
- White / USA6/UK10
- White / USA8/UK12
- White / USA10/UK14
- ネイビー / USA2/UK6
- ネイビー / USA4/UK8
- ネイビー / USA6/UK10
- ネイビー / USA8/UK12
- ネイビー / USA10/UK14

A new form of elegance and comfort
The Stretch Tweed Collection solves three common issues with tweed: "weight," "shoulder strain," and "non-washable" limitations. This collection is lightweight, stretchy, and machine-washable, offering exceptional practicality. The luxurious fabric, woven with delicate glittering threads, adds a sophisticated sparkle and elevates everyday wear. Experience the ultimate comfort and elegance achieved through Japan Tech innovation.

Simple elegance that’s perfect for busy mornings
This refined, semi-mermaid silhouette at a midi length presents an elegant style. The front zipper allows for easy wear, making it ideal for busy mornings. A complete look with one piece, suitable for the office or formal occasions. Enjoy style-enhancement with the comfort of this piece.

Refined details elevate formal scenes
An elegant raised waistline enhances the style, complemented by carefully crafted slash pockets that maintain the silhouette. Suitable for ceremonies and formal settings, it combines sophistication with functionality.

Machine washable at home, keeping it fresh and beautiful even after sweating.
Highly durable, washable fabric with easy-care properties that resist stretching, shrinking, and wrinkling. No need for dry cleaning, saving time on daily care.

Passing down Japanese craftsmanship now at just 1.5%.
When kay me was founded in 2011, only 3% of apparel in the Japanese market was domestically produced, compared to 50% in 1990. The brand began with a sense of urgency regarding this decline. The COVID-19 pandemic further accelerated factory closures and craftsmen leaving the industry, resulting in a current domestic production rate of just 1.5%. Made with advanced Japanese craftsmanship, kay me is dedicated to preserving Japanese manufacturing traditions for the next generation.