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Disney Elevates Heterosexuality To Powerful, Magical Heights
In the world of Disney, falling in heterosexual love can break a spell, save Christmas, change laws, stop wars and even, in the case of The Little Mermaid, cause an individual to give up her personal identity.
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HIV Transmission In Europe Occurs Primarily In Vacation Destinations, Study Finds
HIV in Europe is transmitted primarily in vacation destinations, according to a study published recently in the journal Retrovirology, the PA/Google.com reports. For the study, researchers led by Dimitrios Paraskevis of the University of Athens analyzed samples of HIV-1 subtype B virus, the most prevalent form of HIV in Europe, from 16 European countries and Israel (PA/Google.com, 5/20). The researchers created a family tree of the virus and examined its genetic characteristics to determine how it has evolved.The study found that tourists are more likely to contract HIV in Greece, Portugal, Serbia and Spain, which are popular vacation destinations. Meanwhile, HIV-positive people in Austria, Belgium, Denmark and Luxembourg are more likely to have contracted the virus outside of these countries. The study also found that HIV-positive people in Israel, Norway, the Netherlands, Sweden, Switzerland and the United Kingdom contract the virus both within these countries and in other countries. In addition, the study found that in Poland the virus spread mainly among residents through injection drug use. "Viruses move around with travelers -- thus health programs within countries should not only target the national populations, prevention efforts must also be aimed at migrants, travelers and tourists -- who are both major s and targets of HIV," Paraskevis said (BBC News, 5/20). Lisa Power, head of policy at the Terrence Higgins Trust, said that the findings are not a "surprise," adding, "We"ve known for some time with high levels of mobility in the world these days that it"s very easy for viruses to move around. What it tells us is that you can"t limit HIV prevention and support just to permanent residents" (PA/Google.com, 5/20).
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Veterinarians At High Risk For Viral, Bacterial Infections From Animals
The recent H1N1 influenza epidemic has raised many questions about how animal viruses move to human populations. One potential route is through veterinarians, who, according to a new report by University of Iowa College of Public Health researchers, are at markedly increased risk of infection with zoonotic pathogens -- the viruses and bacteria that can infect both animals and humans.
Diagnostics

Genetically Engineered Bacteria Compute The Route

US researchers have created "bacterial computers" with the potential to solve complicated mathematics problems. The findings of the research, published in BioMed Central"s open access Journal of Biological Engineering, demonstrate that computing in living cells is feasible, opening the door to a number of applications. The second-generation bacterial computers illustrate the feasibility of extending the approach to other computationally challenging math problems. A research team made up of four faculty members and 15 undergraduate students from the biology and mathematics departments at Missouri Western State University in Missouri and Davidson College in North Carolina, USA engineered the DNA of Escherichia coli bacteria, creating bacterial computers capable of solving a classic mathematical problem known as the Hamiltonian Path Problem. The research extends previous work published last year in the same journal to produce bacterial computers that could solve the Burnt Pancake Problem. The Hamiltonian Path Problem asks whether there is a route in a network from a beginning node to an ending node, visiting each node exactly once. The student and faculty researchers modified the genetic circuitry of the bacteria to enable them to find a Hamiltonian path in a three-node graph. Bacteria that successfully solved the problem reported their success by fluorescing both red and green, resulting in yellow colonies. Synthetic biology is the use of molecular biology techniques, engineering principles, and mathematical modeling to design and construct genetic circuits that enable living cells to carry out novel functions. "Our research contributed more than 60 parts to the Registry of Standard Biological Parts, which are available for use by the larger synthetic biology community, including the newly split red fluorescent protein and green fluorescent protein genes," said Jordan Baumgardner, recent graduate of Missouri Western and first author of the research paper. "The research provides yet another example of how powerful and dynamic synthetic biology can be. We used synthetic biology to solve mathematical problems; others find applications in medicine, energy and the environment. Synthetic biology has great potential in the real world." According to Dr. Eckdahl, the corresponding author of the article, synthetic biology affords a new opportunity for multidisciplinary undergraduate research training. "We have found synthetic biology to be an excellent way to engage students in research that connects biology and mathematics. Our students learn firsthand the value of crossing traditional disciplinary lines." Notes: The faculty mentors of the undergraduate research team are Dr. Todd Eckdahl and Dr. Jeff Poet, of Missouri Western State University, and Dr. A. Malcolm Campbell and Dr. Laurie Heyer of Davidson College. Solving a Hamiltonian Path Problem with a bacterial computer Jordan Baumgardner, Karen Acker, Oyinade Adefuye, Samuel THOMAS Crowley, Will DeLoache, James O Dickson, Lane Heard, Andrew T Martens, Nickolaus Morton, Michelle Ritter, Amber Shoecraft, Jessica Treece, Matthew Unzicker, Amanda Valencia, Mike Waters, A. MALCOLM Campbell, Laurie J. Heyer, Jeffrey L. Poet and Todd T. Eckdahl Journal of Biological Engineering (in press) http://www.jbioleng.org/ Charlotte Webber BioMed Central


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