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Melting ice under pressure
The deep interior of Neptune, Uranus and Earth may contain some solid ice. Through first-principle molecular dynamics simulations, Lawrence Livermore National Laboratory scientists, together with University of California, Davis collaborators, used a two-phase approach to determine the melting temperature of ice VII (a high-pressure phase of ice)... view more... (2008-09-24)

'Supersolid' or melted 'superfluid' film: A quantum difference
New calculations support an alternative to "superfluidity" of a solid as the explanation for the behavior of an isotope of helium, 4He, at temperatures approaching Absolute Zero, according to a report in Physical Review Letters.   view more (2005-06-16)

Fluorescent cancer cells to guide brain surgeons
Gliomas are malignant brain tumors that arise from glial (supporting) cells of the brain. Gliomas are often resistant to chemotherapy.   view more (2009-04-06)

Longer anthracycline therapy reduces heart failure in adult cancer patients
Stretching out a dose of chemotherapy over six or more hours may reduce the risk of heart problems caused by certain commonly used cancer drugs.   view more (2006-11-27)

Promising new methods of treatment for fatal abdominal tumor
GIST is a soft-parts tumor that occurs in the abdomen but is distinguishable from gastro-intestinal cancer. Previously, surgery has been the only treatment option since this type of tumor does not respond to either chemotherapy or radiation. Scientists at the Sahlgrenska Academy at Göteborg University have now shown that the prognosis for... view more... (2003-03-17)

Analysis of breast-cancer gene role offers promising target
Researchers at UT Southwestern Medical Center have for the first time described how multiple copies of a gene are responsible for metastases in early-stage breast cancer and poor prognosis for patients.   view more (2006-10-31)

Tiny tool to control growing blood vessels opens new potential in tumor research
Researchers at Uppsala University have developed a new tool that makes it possible to study the signals in the body that control the generation of blood vessels.   view more (2009-02-23)

A tumor suppressor that promotes cancer cell growth?
Researchers have shown that the tumor suppressor gene H-REV107-1 may actually stimulate tumor progression in some non-small cell lung carcinomas.   view more (2006-10-09)

Brown Chemists Create Cancer-Detecting Nanoparticles
A team led by a Brown University chemist has created the smallest iron oxide nanoparticles to date for cancer detection by magnetic resonance imaging (MRI). The magnetic nanoparticles operate like tiny guided missiles, seeking and attaching themselves to malignant tumor cells. Once they bind, the particles emit stronger signals that MRI scans can... view more... (2008-05-28)

New brain tumor model developed
A collaboration of researchers, led by Dr. Martine Roussel (St. Jude Children's Research Hospital), has developed a novel mouse model of medulloblastoma - the most prevalent malignant pediatric brain tumor.   view more (2005-10-31)

7 years without a nose
Patients whose nose has been destroyed by a tumor or injury carry a severe psychological and social burden. Esthetic reconstruction ranges among the most challenging tasks in plastic surgery.   view more (2008-11-07)

Young engineer to give water the treatment after receiving a prestigious bursary
Rita Henderson, 24, has been awarded the prestigious £7000 Sir Angus Paton Bursary from the Royal Academy of Engineering. She will be using this award to fund her MSc studies at Cranfield University in Water Pollution Control Technology. After receiving a First Class Honours degree in Environmental Chemistry at the University of Edinburgh,... view more... (2003-10-23)

Flow technique could simplify targeting cancer therapy
A quick and simple technique to characterize breast cancer cells may expedite and improve treatment decisions, researchers from the University of Illinois at Chicago report in the journal of Experimental and Molecular Pathology.   view more (2006-02-02)

Mathematics reveals genetic pattern of tumor growth
Using mathematical theory, UC Irvine scientists have shed light on one of cancer's most troubling puzzles - how cancer cells can alter their own genetic makeup to accelerate tumor growth.   view more (2007-06-25)

Subtypes of ependymomas arise from rare stem cells in the nervous system
Brain tumors called ependymomas that occur in different parts of the central nervous system appear to arise from subpopulations of stem cells called radial glia cells (RGCs).   view more (2005-10-18)

Solitons Seen in a Solid
Isolated vibrations within a three-dimensional solid have been observed for the first time by researchers in the U.S. and Germany. The work could help explain how metals such as uranium behave when bent, compressed or heated.   view more (2006-04-07)

Researchers identify new anti-tumor gene
Researchers from Virginia Commonwealth University have identified a new anti-tumor gene called SARI that can interact with and suppress a key protein that is overexpressed in 90 percent of human cancers. The discovery could one day lead to an effective gene therapy for cancer.   view more (2008-12-17)

New approach to gene therapy may shrink brain tumors, prevent their spread
Massachusetts General Hospital (MGH) researchers are investigating a new approach to gene therapy for brain tumors - delivering a cancer-fighting gene to normal brain tissue around the tumor to keep it from spreading.   view more (2008-09-26)

Arsenic aids tumor imaging when joined to cancer-homing drug, UT Southwestern researchers find
Arsenic linked to a drug that binds to the blood vessels of cancerous tumors provides a powerful imaging agent that could one day allow physicians to detect hard-to-find tumors and more closely monitor cancer's response to therapy, researchers at UT Southwestern Medical Center have found.   view more (2008-03-03)

New insight into the genetics of brain tumor formation
In a G&D paper published online ahead of its April 1 print publication date, Dr. William Kaelin (Dana Farber Cancer Institute) and colleagues identify a potential new neuronal tumor suppressor.   view more (2008-03-18)
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