
Bledders 2026
Erwin van den Eshof's high-energy comedy Bledders (2026) throws two street-smart friends into an elite private school where luxury meets discipline—and a stash of hidden diamonds spins their undercover mission into chaos.
Director: Erwin van den Eshof
Cast






Frequently Asked Questions
What is Bledders (2026) about?
Two lifelong criminal buddies go undercover at a prestigious private school to pull off a simple job, but their plan unravels when they uncover a hidden stash of diamonds—and a world of privilege they weren't prepared for.
Who directed Bledders?
Erwin van den Eshof directs this chaotic comedy, known for blending sharp humor with unexpected twists.
Who stars in Bledders?
Nesim el Ahmadi and Sinan Eroglu lead the cast as Kadir and Yilmaz, joined by Vajèn van den Bosch, Mehdi Chafi, and Thijs Boermans in this star-studded heist-comedy.
Is Bledders (2026) worth watching?
With a fresh mix of crime caper energy and comedy, Bledders looks set to deliver laughs and suspense—especially for fans of films that balance street smarts with high-society chaos. Keep an eye on early reviews to gauge audience reactions.
How long is Bledders?
Runtime details are not listed.
About Bledders (2026): A Crime-Comedy Heist at an Elite School — Full Movie Info
Erwin van den Eshof's high-energy comedy Bledders (2026) throws two street-smart friends into an elite private school where luxury meets discipline—and a stash of hidden diamonds spins their undercover mission into chaos. Kadir and Yilmaz arrive thinking they've cracked the perfect con, but the polished hallways and razor-sharp rules expose their rough-around-the-edges instincts. As glittering privilege collides with their own gritty world, their loyalty is tested like never before in a whirlwind of laughs, twists, and unexpected heart.
Packed with sharp dialogue and a vibrant clash of cultures, Bledders (2026) blends laughs with a dash of crime caper flair, all set against the backdrop of a world where wealth whispers and danger lurks just beneath the surface.