[AKIRA] – Ransomware Victim: RECYCLA

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Ransomware Group: AKIRA

VICTIM NAME: RECYCLA

NOTE: No files or stolen information are [exfiltrated/downloaded/taken/hosted/seen/reposted/disclosed] by RedPacket Security. Any legal issues relating to the content of the files should be directed at the attackers directly, not RedPacket Security. This blog is simply posting an editorial news post informing that a company has fallen victim to a ransomware attack. RedPacket Security is in no way affiliated or aligned with any ransomware threat actors or groups and will not host infringing content. The information on this page is fully automated and redacted whilst being scraped directly from the AKIRA Onion Dark Web Tor Blog page.


AI Generated Summary of the Ransomware Leak Page

The ransomware leak pertains to RECYCLA, a company based in Mexico that specializes in waste treatment, disposal, and recovery services rooted in circular economy principles. The attack resulted in the compromise of approximately 160 gigabytes of sensitive corporate data, including detailed employee personal information such as dates of birth, addresses, and credit card details, as well as client data, financial records, contracts, agreements, and nondisclosure agreements. The attack was discovered on June 5, 2025, and the data breach was publicly announced shortly afterward. The leak page indicates intentions to upload the compromised data, highlighting a significant impact on the company’s operational and confidential information.

The page includes visual evidence such as screenshots of internal documents, which underscore the severity of the breach. It also mentions that the leak is associated with the hacking group “akira” and suggests that the targeted ransomware incident has exposed a broad spectrum of sensitive information, potentially affecting both employees and clients. The incident’s disclosure underscores the gravity of cyberattack threats to companies within the waste management sector and emphasizes the critical need for robust cybersecurity measures to prevent such protective breaches in the future.


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