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Pancreatic cancer remains one of the most difficult cancers to treat, in part because mutations in the KRAS gene are extraordinarily common in pancreatic ductal adenocarcinoma (PDAC). These mutations keep growth-promoting signals switched on, allowing cancer cells to proliferate and survive. Although drugs targeting certain KRAS mutations have emerged in recent years, they work against only a subset of mutant forms, leaving a need for strategies capable of targeting a broader range of KRAS-driven cancers.
A research paper published in Volume 17 of Oncotarget, titled “The anticancer effects of PCAIs in pancreatic cancer cells involve MAPK and PI3K/AKT pathways hyperactivation,” investigated a class of experimental compounds known as polyisoprenylated cysteinyl amide inhibitors, or PCAIs. Rather than simply shutting down signaling pathways normally associated with cancer growth, the researchers uncovered a more unexpected effect: PCAIs pushed some of these pathways into unusually high activity while simultaneously promoting oxidative stress, disrupting cell structure, and triggering cancer cell death.
Full blog post - https://www.oncotarget.org/2026/08/24/experimental-compounds-push-cancer-promoting-pathways-into-overdrive-in-pancreatic-cancer-cells/
DOI - https://doi.org/10.18632/oncotarget.28879
Correspondence to - Nazarius S. Lamango - nazarius.lamango@famu.edu
Abstract video - https://www.youtube.com/watch?v=asbhjME7rFQ
Sign up for free Altmetric alerts about this article - https://oncotarget.altmetric.com/details/email_updates?id=10.18632%2Foncotarget.28879
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Keywords - cancer, PCAIs, PDAC, MAPK, PI3K/AKT, KRAS
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A research paper published in Volume 17 of Oncotarget, titled “The anticancer effects of PCAIs in pancreatic cancer cells involve MAPK and PI3K/AKT pathways hyperactivation,” investigated a class of experimental compounds known as polyisoprenylated cysteinyl amide inhibitors, or PCAIs. Rather than simply shutting down signaling pathways normally associated with cancer growth, the researchers uncovered a more unexpected effect: PCAIs pushed some of these pathways into unusually high activity while simultaneously promoting oxidative stress, disrupting cell structure, and triggering cancer cell death.
Full blog post - https://www.oncotarget.org/2026/08/24/experimental-compounds-push-cancer-promoting-pathways-into-overdrive-in-pancreatic-cancer-cells/
DOI - https://doi.org/10.18632/oncotarget.28879
Correspondence to - Nazarius S. Lamango - nazarius.lamango@famu.edu
Abstract video - https://www.youtube.com/watch?v=asbhjME7rFQ
Sign up for free Altmetric alerts about this article - https://oncotarget.altmetric.com/details/email_updates?id=10.18632%2Foncotarget.28879
Subscribe for free publication alerts from Oncotarget - https://www.oncotarget.com/subscribe/
Keywords - cancer, PCAIs, PDAC, MAPK, PI3K/AKT, KRAS
To learn more about Oncotarget, please visit https://www.oncotarget.com and connect with us on social media:
Facebook - https://www.facebook.com/Oncotarget/
X - https://twitter.com/oncotarget
Instagram - https://www.instagram.com/oncotargetjrnl/
YouTube - https://www.youtube.com/@OncotargetJournal
LinkedIn - https://www.linkedin.com/company/oncotarget
Pinterest - https://www.pinterest.com/oncotarget/
Reddit - https://www.reddit.com/user/Oncotarget/
Spotify - https://open.spotify.com/show/0gRwT6BqYWJzxzmjPJwtVh
MEDIA@IMPACTJOURNALS.COM
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