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Microarray

Scientists at Affymetrix, Inc. (Nasdaq: AFFX) reported today in Science magazine online that they have completed a high-resolution scan of structure and function for nearly 30 percent of the human genome sequence. In collaboration with the National Cancer Institute, the research team used high-density GeneChip(R) microarrays to study every fifth base, on average, of 10 human chromosomes; they found that thousands of regions of the genome are transcribed into overlapping RNA sequences and those sequences are separated by regions in which RNA is transcribed more scarcely. All of the data is freely available.

Health & Medicine

Two compounds that zero in on cancer cells spreading throughout the body, while ignoring primary tumor cells, could someday give doctors a whole new weapon in the fight against tough-to-treat metastatic disease, according to Weill Medical College of Cornell University researchers.

Health & Medicine

The largest, most comprehensive study ever done comparing the effectiveness of hand hygiene products shows that nothing works better in getting rid of disease-causing viruses than simply washing one’s hands with good old-fashioned soap and water.

Biotechnology

In what sounds like a modern-day version of the David and Goliath story, University of Michigan scientists hope to slay a big killer with pebbles. In this case, the killer is not a fearsome giant, but a dreaded disease: cancer. And the pebbles are not the kind you hurl from slingshots; they're nanoscale polymer beads known as Photonic Explorers for Biomedical use with Biologically Localized Embedding (PEBBLEs).

Biology

Elephants learn to imitate sounds that are not typical of their species, the first known example after humans of vocal learning in a non-primate terrestrial mammal. The discovery, reported in today's Nature, further supports the idea that vocal learning is important for maintaining individual social relationships among animals that separate and reunite over time, like dolphins and whales, some birds, and bats.

Gene Therapy

Natural killer (NK) immune system cells can be genetically modified to brandish a powerful "on-switch" that prompts them to aggressively attack and kill leukemic cells. This finding, from researchers at St. Jude Children's Research Hospital, suggests a way to improve the outcome of children who receive treatment for acute lymphoblastic leukemia (ALL) or other blood cancers.

Results of the St. Jude study are published in the current online issue of Blood.