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Exploring 14-3-3ζ: insights into its role in cancer mechanisms and future therapeutic applications

delete2026-03-01
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PRE
AI
F
Farah, Husni
K
Kadhim-Abosaoda, Munthar
M
Mohaisen-Mousa, Hayjaa
J
Jyothi, S. Renuka
P
Priyadarshini-Nayak, Priya
J
Janney-J, Bethanney
S
Singh, Gurjant
S
Singh-chauhan, Ashish
K
Kumar-Mishra, Manoj *
DOI:10.1186/s41065-026-00658-xdelete
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Abstract

Abstract

En 中文
14-3-3 zeta is becoming an important marker and possible treatment target because many studies link it with cancer recurrence and resistance to chemotherapy. When cancer cells make too much 14-3-3 zeta, they tend to survive better, especially under stressful conditions, and they can grow even without attachment, which is usually a sign of more aggressive behavior. On the other hand, when the level of 14-3-3 zeta is lowered, tumors grow slower and the cells become more sensitive to different anticancer drugs. In clinical settings high 14-3-3 zeta can work as prognostic biomarker, helping to identify patients whose tumors might not respond fit to standard treatments, allowing doctors to think about more personalized therapy options. This protein also interacts with several cancer-related pathways for example working together with HER2, which can push tumors to become more invasive, and harder to treat. Many cancers show amplification of the 14-3-3 zeta gene and this usually correlates with worse outcomes for patients. Even though scientists are still figuring out how directly target 14-3-3 zeta, a lot of studies suggest that stopping this protein or blocking the signals it activates might make cancer cells respond better in chemo and slow the tumor from getting worse [14]. So overall, going after 14-3-3 zeta looks like the pretty promising approach for dealing with therapy resistance, and it could maybe help improve patient outcomes in the future.
Keywords:
14-3-3 zeta
Tumor suppressor
Cancer progression
Signaling pathways
Chemoresistance

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