Vicky Kaushal boards Rohit Shetty cop universe directorial “Singham Again”
Vicky Kaushal boards Rohit Shetty cop universe directorial “Singham Again”
Yet another new development in the Rohit Shetty cop universe directorial “Singham Again” with Vicky Kaushal going on board.
No doubt of the fact that at this point of time following the YRF Spy Universe, Rohit Shetty’s Cop Universe is the second biggest IP of Indian Cinema.
The high-octane action filmmaker has got some of the biggest names of Hindi Film Industry in his Cop Universe that started back in the day with Singham played by Ajay Devgn, followed by Simmba with Ranveer Singh and finally, Akshay Kumar’s Sooryavanshi.
Amid the promotions of Cirkus, Rohit Shetty had confirmed that Deepika Padukone will be the newest cop in his universe.
And now, we have learnt that Rohit plans to rope in URI actor, Vicky Kaushal as well as a cop.
Infact for a while now, Vicky and Rohit are in talks for Singham Again and the director is chalking out a proper character for Vicky. However, his cop will be very different from Ranveer, who is an over-the-top character. A trade source reveals that Rohit wants to explore the heroic and macho side of Vicky in his cop universe .
Vicky and Rohit reportedly, have been discussing a film for the last 3 years, prior to the pandemic, and it looks the collaboration is finally taking shape this year with Singham Again. Rohit is working on the script to carve a track for Vicky and is happy with the way things are moving ahead.
No sooner the script gets locked, an official paperwork will happen. Nevertheless, Rohit is excited to work with an actor in a different space.
Singham Again with this, emerges as the biggest ensemble film with the extended cast to comprise Ajay Devgn, Kareena Kapoor, Ranveer Singh, Akshay Kumar and Deepika Padukone. Vicky figures the 6th major name to join the cast once things materialize.
If all goes well, Singham Again will have its theatrical release on Independence Day 2024, avoiding clash with Bhool Bhulaiyaa 3.
News input KV Raman