Select Model

    WE INDEPENDENTLY CHOOSE ALL PRODUCTS FEATURED ON OUR SITE. WE MAY RECEIVE A COMMISSION WHEN YOU CLICK ON LINKS TO THOSE PRODUCTS. YOU CAN LEARN MORE ABOUT OUR AFFILIATE POLICY IN OUR TERMS OF USE.

    A Ma Maniére x Air Jordan 17 Low
    Spring 2024

    A Ma Maniére x Air Jordan 17 Low Collection Coming Spring 2024

    Release

    Spring 2024

    Heat

    54.80°

    Brand

    Jordan

    Spring 2024

    Follow

    The collaborative prowess of A Ma Maniére and Jordan Brand is a duo that continues to enamor the sneaker community. The James Whitner-led boutique has set itself apart with its impeccable flair in reinventing Air Jordan Retros, entwined with meaningful, community-centric initiatives, all while employing a defined luxury continuity. This powerful alliance is now setting the stage for another collaborative release, this time on the Air Jordan 17 Low, as reported by Sneakerfiles.

    The new venture comprises two distinctive colorways, said to embody a “Beach” and “Cabin” theme, and is inspired by the tranquil Folly Beach in South Carolina.

    In a mock-up illustration by zsneakerheadz, the “Beach” edition of the Air Jordan 17 Low is depicted above.

    The sneaker exude coastal vibes with hints of ocean blue and green, harmoniously blended with sandy hues reminiscent of serene shores. This version serves as an ode to a beach getaway's laid-back and idyllic atmosphere.

    Details of the “Cabin” counterpart are still shrouded in mystery, but speculations suggest a palette embracing earthy, woodland-inspired colors. This could range from rich browns to subtle greens, conjuring the essence of a retreat nestled amidst nature.

    While further specifics remain undisclosed, it’s clear that this collaboration aims to bridge the gap between urban aesthetics and natural beauty, offering a piece of escapism through meticulously craft.

    Keep your eyes glued to our official Twitter account for further updates.

    Other Releases

    Keep ScrollingServing up your next slice of heat

    Loading Next Article