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Wednesday, July 29, 2009

Video: Homeowner Dealing With A Bat Invasion

A Kentucky homeowner is dealing with 100 endangered bats taking up residence in her home. They have started coming through her drywall, but there may be little she can do about it.

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Thursday, May 17, 2007

Baby Aspirin Better for Your Health, University of Kentucky Study Says


Nearly a quarter of a million Americans each year may be hospitalized with bleeding complications caused by needlessly taking a daily dose of an adult-sized aspirin rather than a baby aspirin to prevent a heart attack or stroke.

A study by a group of UK HealthCare Linda and Jack Gill Heart Institute cardiologists found that the commonly prescribed 325 mg adult tablet may be more than many people need each day. The study, which is published in the Journal of the American Medical Association, found that doses higher than a baby aspirin, 75 to 81 mg, are no better at preventing cardiovascular events long-term and are associated with increased risk of gastrointestinal bleeding.

Gill Heart Institute cardiologists and University of Kentucky College of Medicine faculty Dr. Charles Campbell, Dr. Steven Steinhubl and Dr. Susan Smyth, along with Dr. Gilles Montalescot of the Instjtut de Cardiologie-Centre Hospitalier Universitaire Pitié--Salpêtrière in Paris, France, systematically reviewed published data regarding clinical studies involving aspirin dosing. Even in patients with diabetes, who may be more difficult to treat, they found no large-scale studies that support higher doses of aspirin.

"While aspirin is an effective drug for the prevention of clots," says Campbell, lead author of the report, "the downside of aspirin therapy is an increased tendency for bleeding (particulary from the GI tract). We believe the minimum effective dose should be utilized (75-81 mg)." However, Campbell notes, "We also believe more study in this area is warranted to determine if the minimum dose is effective for everyone, or if dose should be adjusted from person to person."

Aspirin is the most-used drug in the world. More than 50 million people, or 36 percent of the adult population in the United States, consume 10 to 20 billion aspirin tablets each year to protect their hearts from clots, which are the leading cause of heart attacks and strokes.
"Patients should check with their doctor to be sure, but there is almost no one who needs to take more than 81 mg of aspirin a day for protection from heart attacks," Steinhubl says.

Going forward, the study notes that the greatest challenge ahead for physicians may be to determine how to identify the best blood-thinning regimen for their patients.


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Sunday, January 14, 2007

Researchers 1st To Map Gene That Regulates Adult Stem Cell Growth


A new discovery in stem cell research may mean big things for cancer patients in the future. Gary Van Zant, Ph.D., and a research team at the University of Kentucky published their findings in Nature Genetics, an international scientific journal.


The researchers genetically mapped a stem cell gene and its protein product, Laxetin, and building on that effort, carried the investigation all the way through to the identification of the gene itself. This is the first time such a complete study on a stem cell gene has been carried out. This particular gene is important because it helps regulate the number of adult stem cells in the body, particularly in bone marrow. Now that it has been identified, researchers hope the gene, along with its protein product Latexin, can be used clinically, such as for ramping up the stem cell count in cancer patients undergoing chemotherapy and bone marrow transplantation.


The researchers agreed that this very process is not only interesting, but important because of its usefulness in a wide variety of future genetics studies.

"We're thinking about cancer in a big way," Van Zant says. "This is a great example of translational research – from the most basic type of genetic research all the way to possible treatments for patients."


One big obstacle chemotherapy patients face is stem cell loss after treatments. This limits the dosage amount and types of chemotherapy that can be given. But if Latexin were used to increase the stem cell count, patients would be able to receive increased doses of chemotherapy and be able to recover more quickly. Increased stem cell counts also would be valuable during bone marrow transplants, where the greatest number of stem cells are desired to help a patient recover from cancer.


Another possible use for Latexin would be to help increase the number of stem cells available in umbilical cord blood, which also is used to transplant healthy stem cells in blood marrow transplants. Currently, stem cell transplants with cord blood can only be used in children because cord blood does not contain enough stem cells for an amount needed to be transplanted into an adult.

The only stem cell population that has been examined for effects of Latexin to date is in bone marrow. Van Zant says it is possible, even probable, that other stem cell populations in tissues such as the liver, skin, pancreas or brain may be similarly affected by Latexin. This could open up new therapeutic strategies such as using stem cells for the treatment of other diseases and conditions such as liver disease, diabetes and central nervous system damage as a result of trauma or stroke.


The researchers also are looking into the possible role the gene plays in transforming healthy stem cells into cancerous ones, such as in leukemia and lymphomas. If the gene does in fact play such a role, it is possible that it also could provide the keys to new therapies.

Van Zant describes his discovery as an elation. He worked on the project for six years with Ying Liang, a former graduate student who is now a postdoctoral fellow at UK. Van Zant says this research and publication of the journal article is the culmination of a difficult but rewarding scientific journey.



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