๐Ÿ” CVE Alert

CVE-2025-54808

HIGH 7.8

Oxford Nanopore Technologies MinKNOW Insufficiently Protected Credentials

CVSS Score
7.8
EPSS Score
0.0%
EPSS Percentile
9th

Oxford Nanopore Technologies' MinKNOW software at or prior to version 24.11 stores authentication tokens in a file located in the system's temporary directory (/tmp) on the host machine. This directory is typically world-readable, allowing any local user or application to access the token. If the token is leaked (e.g., via malware infection or other local exploit), and remote access is enabled, it can be used to establish unauthorized remote connections to the sequencer. Remote access must be enabled for remote exploitation to succeed. This may occur either because the user has enabled remote access for legitimate operational reasons or because malware with elevated privileges (e.g., sudo access) enables it without user consent. This vulnerability can be chained with remote access capabilities to generate a developer token from a remote device. Developer tokens can be created with arbitrary expiration dates, enabling persistent access to the sequencer and bypassing standard authentication mechanisms.

CWE CWE-522
Vendor oxford nanopore technologies
Product minknow
Published Oct 23, 2025
Last Updated Jun 4, 2026
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CVSS v3 Breakdown

CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H
Attack Vector
Local
Attack Complexity
Low
Privileges Required
Low
User Interaction
None
Scope
Unchanged
Confidentiality
High
Integrity
High
Availability
High

Affected Versions

Oxford Nanopore Technologies / MinKNOW
0 < 24.11

References

NVD โ†— CVE.org โ†— EPSS Data โ†—
cisa.gov: https://www.cisa.gov/news-events/ics-medical-advisories/icsma-25-294-01 github.com: https://github.com/cisagov/CSAF/blob/develop/csaf_files/OT/white/2025/icsma-25-294-01.json nanoporetech.com: https://nanoporetech.com/software/ nanoporetech.com: https://nanoporetech.com/about/contact

Credits

Sara Rampazzi, Christina Boucher, Carson Stillman, Jonathan E. Bravo of the University of Florida reported these vulnerabilities to Oxford Nanopore Technologies.