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'Past Time' To Denounce Tiller Murder, Violence Perpetrated By Some Antiabortion Advocates, Opinion Piece Says
In the wake of the shooting death of Kansas abortion provider George Tiller, columnist Ellen Goodman writes in the Boston Globe that she "can"t help wondering whether rhetoric can justify a crime in the mind of a fanatic." She continues, "Can"t words provide the sort of perverse moral platform that jihadists stand on and the alternate universe in which a "lone nut" can find a home?" Goodman writes that she does not blame Tiller"s death on "everyone who checks a pro-life box on the pollster"s chart," but it is "well past time for the antiabortion movement to denounce those who are in the profession of inflaming passions."Tiller "was a doctor of last resort for many women, especially those women for whom the sonogram did not bring joy but tragic tidings," Goodman writes, adding, "He refused to be cowed. At the very least, he should be buried with truth." In his recent commencement address at the University of Notre Dame, President Obama asked, "As citizens of a vibrant and varied democracy, how do we engage in vigorous debate? How does each of us remain firm in our principles, and fight for what we consider right, without demonizing those with just as strongly held convictions on the other side?" Goodman writes, "One way is for those who truly "denounce the murder" to take on the chorus, the back-up singers, who still provide the doo-wop for the next deranged soloist." She concludes, "You see, this suspect was not such a lone gunman. And no, I am afraid, this was not an isolated incident" (Goodman, Boston Globe, 6/5).
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ERT Launches New Online Gateway To Improve Cardiac Safety In Clinical Trials
ERT (Nasdaq: ERES), a leading provider of centralized ECG, ePRO, eClinical technology and other services to the biopharmaceutical, medical device and related industries, announced today the launch of a unique online web interface - My Study Portal(TM). Following the successful launch of ERT"s new website, My Study Portal is aimed at enhancing the accuracy and efficiency of cardiac safety data management in clinical trials.
News of the day
Many Floors In U. S. Homes Have "Measurable" Levels Of Pesticides
Insecticides used in and around homes - including products voluntarily removed from the market years ago - were measured on the floors of U.S. residences, according to the first study large enough to generate national data on pesticide residues in homes. It is scheduled for the June 15 issue of ACS" semi-monthly journal Environmental Science & Technology.
Oncology

DNA Binding Compound That Kills Bacteria In 2 Minutes Could Lead To New Antibiotics

A synthetic DNA binding compound has proved surprisingly effective at binding to the DNA of bacteria and killing all the bacteria it touched within two minutes. The DNA binding properties of the compound were first discovered in the Department of Chemistry at the University of Warwick by Professor Mike Hannon and Professor Alison Rodger (Professor Mike Hannon is now at the University of Birmingham). However the strength of its antibiotic powers have now made it a compound of high interest for University of Warwick researchers working on the development of novel antibiotics. Dr Adair Richards from the University of Warwick said: "This research will assist the design of new compounds that can attack bacteria in a highly effective way which gets around the methods bacteria have developed to resist our current antibacterial drugs. As this antibiotic compound operates by targeting DNA, it should avoid all current resistance mechanisms of multi-resistant bacteria such as MRSA." The compound [Fe2L3]4+ is an iron triple helicate with three organic strands wrapped around two iron centres to give a helix which looks cylindrical in shape and neatly fits within the major groove of a DNA helix. It is about the same size as the parts of a protein that recognise and bind with particular sequences of DNA. The high positive charge of the compound enhances its ability to bind to DNA which is negatively charged. When the iron-helicate binds to the major groove of DNA it coils the DNA so that it is no longer available to bind to anything else and is not able to drive biological or chemical processes. Initially the researchers focused on the application of this useful property for targeting the DNA of cancer cells as it could bind to, coil up and shut down the cancer cell"s DNA either killing the cell or stopping it replicate. However the team quickly realised that it might also be a very clever way of targeting drug-resistant bacteria. New research at the University of Warwick, led by Dr Adair Richards and Dr Albert Bolhuis, has now found that the [Fe2L3]4+ does indeed have a powerful effect on bacteria. When introduced to two test bacteria Bacillus subtilis and E. coli they found that it quickly bound to the bacteria"s DNA and killed virtually every cell within two minutes of being introduced - though the concentration required for this is high. Professor Alison Rodger, Professor of Biophysical Chemistry at the University of Warwick, said: "We were surprised at how quickly this compound killed bacteria and these results make this compound a key lead compound for researchers working on the development of novel antibiotics to target drug resistant bacteria." The researchers will next try and understand how and why the compound can cross the bacteria cell wall and membranes. They plan to test a wide range of compounds to look for relatives of the iron helicate that have the same mechanism for action in collaboration with researchers around the world.Professor Mike Hannon from the University of Birmingham said:"This research is a great example of how the Universities of Birmingham and Warwick are working together to deliver exciting new research that can impact on medicine and healthcare - key themes of the AWM "Birmingham Science City" initiative which seeks to make the West Midlands the leading player in science and technology in the UK." The research has just been published in the International Journal of Antimicrobial Agents in a paper entitled Antimicrobial activity of an iron triple helicate by Dr Adair D. Richards, and Professor Alison Rodger from the University of Warwick, Professor Michael J. Hannon from the University of Birmingham and Dr Albert Bolhuis from Bath University. Issue 33 pp469-472 http://www.ijaaonline.com/article/S0924-8579(08)00577-3 Adair Richards University of Warwick


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