Popular articles
Popular articles
Mayo Clinic discovers 'new pathway' against pancreatic cancer"This is a very exciting -- and surprising -- finding," says Daniel Billadeau, Ph.D., lead author of the report. To identify new target molecules with potentially therapeutic impact for a cancer for which there is currently no real useful treatment is incredibly important.
"Based on the literature, you would predict the opposite of what we found. But in fact, we determined that we can decrease a known regulator of cancer cell survival -- in effect, turn this regulator off -- and when we do, the pancreatic cancer cells undergo apoptosis ( commit cell suicide ) and die."
Significance of the Research
• With this finding, a new path is cleared for researchers to target these key molecular players with new small molecule inhibitors to block their action, effectively turning off molecules that promote pancreatic cancer growth.
• The finding may be applied to make pancreatic cells more sensitive to gemcitabine, the sole drug available for treating pancreatic cancer.
• This discovery may lead to new drug development strategies for other cancers. Additional research will tell whether these same actors play a similar role in the spread of other cancer types.
The Key Finding
The Mayo Clinic researchers discovered a previously unrecognized role in pancreatic cancer for the GSK-3 Beta molecule. They determined that GSK-3 Beta is vital to pancreatic cancer cell survival and growth through its effects on a well-known gene regulator called NF Kappa B ( pronounced "en-ef-kappa-bee" ).
The NF Kappa B protein is well known to researchers as a transcription factor that regulates many genes. In cancer cells, NF Kappa B regulates genes involved in cancer cell survival, proliferation and blood vessel formation ( angiogenesis ). NF Kappa B is hyperactive in many human cancers including pancreatic. The Mayo Clinic study shows that in pancreatic cancer, the activity of NF Kappa B is regulated by GSK-3 Beta. Researchers determined this by showing that if they could decrease GSK-3 Beta protein or inactivate it using small molecular inhibitors, they could likewise decrease NF Kappa B -- and deprive the pancreatic cancer cells of a means to grow and survive.
Notably, in pancreatic cancer, NF Kappa B activity is high -- which can cause resistance to chemotherapy drugs used to treat the disease. This new information suggests a potential means of treating pancreatic cancer by a two-pronged attack of administering the gemcitabine in combination with a drug to block GSK-3 Beta.
Nearly all die within five years of diagnosis
Despite recent advances in understanding how cancers work at the molecular level, pancreatic cancer lacks an effective treatment. Approximately 30,000 Americans are diagnosed with pancreatic cancer annually, and the disease kills the same number each year. Ninety percent of these cancers are pancreatic ductular adenocarcinoma, the fourth leading cause of cancer deaths in the United States. Pancreatic cancer patients have one of the poorest prognoses -- the five-year survival rate is 3 percent. Because pancreatic cancer is aggressive, spreads rapidly and few treatment options are available, researchers welcome any promising leads for improving diagnosis and therapy.
Collaborators and Support
Other collaborators include Andrei Ougolkov; Martin Fernandez-Zapico, M.D.; Doris Savoy; and Raul Urrutia, M.D., all of Mayo Clinic. Their work was supported by National Cancer Institute and the Mayo Foundation.
To obtain the latest news releases from Mayo Clinic, go to http://www.mayoclinic.org/news. MayoClinic.com ( http://www.mayoclinic.com ) is available as a resource for your health stories.
Contact: Bob Nellis
newsbureau@mayo.edu
507-284-5005
Mayo Clinic
http://www.mayo.edu
--------------------------------------------------------------------------------------------------
Alba Spectrum popular articles series: FAQ, Reviews, Introductions, Product Selections,
Advises, Definitions, online marketing
We are serving wholesale & retail customers in
Illinois, California, Texas, Wisconsin, New York, Washington, Ohio, Michigan,
Indiana, Arizona, New Mexico, Louisiana, Florida, Georgia, Minnesota, Utah, Virginia, Georgia, Hawaii,
Iowa, Colorado, Ontario, Quebec, Alberta, British Columbia. We also serve customer
internationally in New Zealand, Europe: UK, France, Poland, Italy, Germany, Russia, India, Byrma, Thailand, Holland, Denmark, Sweden, Norway, Indonesia, Austria, New Zealand, Pakistan, Afghanistan, Iran, Spain, Argentina, Brazil, Chile, Uruguay, Paraguay, Peru, Equador, Colombia, Venezuela, Panama, Costa Rica, Canada, South Africa, Nigeria,
Portugal, Greece, Turkey, Asia: India, China, Philippines, South Korea, plus business metros: Chicago, Los Angeles, Phoenix, Boston, Atlanta, Minneapolis, Fargo, Seattle, Miami, Orlando, Detroit, Buffalo, Toronto, Paris, London, Montreal, Denver, Warsaw, Berlin, Prague, Rome, Karachi, Sao Paulo, Rio de Janeiro, Moscow, Buenos Aires, Dehli, Mumbai, Beigin, Cairo, San Francisco, Fremont, Naperville, Oakland, Mellburn, Sidney, Sent Petersburg, Tampa, New Orleans, Houston, Dallas, Mexico City, Bogota, Caracas, Lima, Salvador, Recife, Sao Paulo, Rio de Janeiro, Brasilia, Curitiba, Goiania. http://www.albaspectrum.com
044801
044802
044803
044804
044805
044806
044807
044808
044809
044810
044811
044812
044813
044814
044815
044816
044817
044818
044819
044820
044821
044822
044823
044824
044825
044826
044827
044828
044829
044830
044831
044832
044833
044834
044835
044836
044837
044838
044839
044840
044841
044842
044843
044844
044845
044846
044847
044848
044849
044850
044851
044852
044853
044854
044855
044856
044857
044858
044859
044860
044861
044862
044863
044864
044865
044866
044867
044868
044869
044870
044871
044872
044873
044874
044875
044876
044877
044878
044879
044880
044881
044882
044883
044884
044885
044886
044887
044888
044889
044890
044891
044892
044893
044894
044895
044896
044897
044898
044899
044900