Modulatory effects of EPA and DHA on proliferation and apoptosis of pancreatic cancer c... - 0 views
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It was concluded that omega-3 fatty acid could inhibit the proliferation of pancreatic cancer cell line SW1990 cells and promote their apoptosis. The down-regulation of the cyclin E expression by omega-3 fatty acid might be one of the mechanisms for its anti-tumor effect on pancreatic cancer. \n\nModulatory effects of EPA and DHA on proliferation and apoptosis of pancreatic cancer cells.\nZhang W, Long Y, Zhang J, Wang C.\nJ Huazhong Univ Sci Technolog Med Sci. 2007 Oct;27(5):547-50.\nPMID: 18060632
Prevention and treatment of pancreatic cancer by curcumin in combination with omega-3 f... - 0 views
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Mice fed fish oil and curcumin showed a significantly reduced tumor volume, 25% (P < 0.04) and 43% (P < 0.005), respectively, and importantly, a combination of curcumin and fish oil diet showed > 72% (P < 0.0001) tumor volume reduction. Expression and activity of iNOS, COX-2, and 5-LOX are downregulated, and p21 is upregulated in tumor xenograft fed curcumin combined with fish oil diet when compared to individual diets. The preceding results evidence for the first time that curcumin combined with omega-3 fatty acids provide synergistic pancreatic tumor inhibitory properties. \n\nPrevention and treatment of pancreatic cancer by curcumin in combination with omega-3 fatty acids.\nSwamy MV, Citineni B, Patlolla JM, Mohammed A, Zhang Y, Rao CV. \nNutr Cancer. 2008;60 Suppl 1:81-9. \nPMID: 19003584
MedlineRanker: flexible ranking of biomedical literature - 0 views
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MedlineRanker is free for use and is available at http://cbdm.mdc-berlin.de/tools/medlineranker.
10 + 1 PubMed Tips for Residents (and Their Instructors) - 0 views
Molecular immunological approaches to biotherapy of human cancers--a review, hypothesis... - 0 views
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Molecular immunological approaches to biotherapy of human cancers--a review, hypothesis and implications.\nBecker Y.\nAnticancer Res. 2006 Mar-Apr;26(2A):1113-34. Review.\nPMID: 16619514 \n\nPolarized Th1 cells produce interleukin (IL)-2, IL-12 and interferon (IFN)-gamma, and polarized Th2 cells and the hematopoietic cells produce IL-4, IL-5, IL-6, IL-10 and IL-13. In healthy individuals there is a Th1/Th2 cytokine balance, but during microbial-induced inflammation the pathogens induce an overproduction of the Th2 cytokines that inhibit the adaptive immune response against the pathogen. A review of studies on the Th1/Th2 cytokine balance in humans harboring different tumor types revealed that tumor cells induce increased Th2 cytokine levels in patients' sera that can serve as indicators for the existence of tumors. I\n
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