JI
Ransomware Victim Healthcare

jindallifescience.com

Ransomware attack by Krybit ยท Disclosed August 26, 2026 ยท ๐Ÿ‡ฎ๐Ÿ‡ณ India

jindallifescience.com

Date Disclosed
Aug 26, 2026
2026
Threat Group
Krybit
136 total victims
Industry
Healthcare

ThreatAI Analysis

Compiled from this incident record and the threat intelligence profile for Krybit. Figures and technique mappings are quoted from the source data, not inferred.

Krybit listed jindallifescience.com on its dark web leak site on 26 August 2026. Jindal Life Science Private Limited, an Indian CRO based in India, offers full-service contract research.

About jindallifescience.com

Jindal Life Science Private Limited is an Indian full-service Contract Research Organization (CRO) established in 2023, ...

Source record: ransomware.live

About the Krybit group

Krybit is an emerging RaaS group that launched in late March 2026, offering affiliates an 80/20 revenue split with support for Windows, Linux, ESXi, and NAS device encryption, and became notable for a public feud with rival group 0APT in which each breached and leaked the other's operator data. Krybit has listed 96 victims since March 2026.

Incident Analysis

jindallifescience.com was targeted by Krybit ransomware, one of the most active ransomware groups in our database with 136 confirmed victims globally. The attack was disclosed on August 26, 2026, when jindallifescience.com appeared on the group's dark web leak site.

jindallifescience.com is based in India , operating in the Healthcare sector. India ranks #8 globally for ransomware attacks, with 445 victims in our database.

Sector context: Healthcare organisations are high-value ransomware targets because patient data is extremely sensitive, regulatory penalties for breaches are severe, and operational downtime can threaten patient safety โ€” all factors that increase ransom payment pressure.

Krybit typically employs a double extortion model: first exfiltrating sensitive data from the victim's systems, then deploying ransomware to encrypt files. Victims face two simultaneous threats โ€” paying to restore access and paying to prevent publication of stolen data. The group's leak site publishes victim names and exfiltrated data as leverage.

Data source: This incident record is sourced from public ransomware group leak site disclosures aggregated via the ransomware.live API. Disclosure date reflects when the victim was published on the leak site, which may differ from the initial date of compromise. This platform does not publish or link to stolen data. Last data update: Sep 5, 2026 16:00 UTC.

Frequently Asked Questions

Was jindallifescience.com attacked by ransomware?

Yes. jindallifescience.com was listed as a victim of the Krybit ransomware group on August 26, 2026. The organisation is based in India and operates in the Healthcare sector. The disclosure appeared on the group's dark web leak site.

Which ransomware group attacked jindallifescience.com?

jindallifescience.com was attacked by Krybit ransomware. Krybit is one of the most active ransomware groups, having claimed 136 victims globally. The group typically employs a double-extortion model: encrypting the victim's files and threatening to publish stolen data.

When did the jindallifescience.com ransomware attack occur?

The ransomware attack on jindallifescience.com was disclosed on August 26, 2026. This date reflects when the victim was published on the threat group's leak site, which may differ from the actual date of initial compromise.

What data was stolen in the jindallifescience.com ransomware attack?

The specific data stolen from jindallifescience.com has not been independently verified by this platform. Ransomware groups typically exfiltrate data before encrypting systems and use the threat of publication to pressure victims. As a Healthcare organisation, jindallifescience.com likely held patient records, medical data, and personally identifiable information (PII).

How can organisations protect against Krybit attacks?

To defend against Krybit and similar threat actors, organisations should: maintain regular offline backups tested for restoration; implement network segmentation to limit lateral movement; deploy multi-factor authentication on all remote access; use endpoint detection and response (EDR) tools; conduct regular phishing and security awareness training; and monitor threat intelligence feeds for indicators of compromise (IOCs) associated with active groups.