Wednesday, April 17, 2013

Aubrey Plaza asked to leave MTV Movie Awards

LOS ANGELES (AP) ? Aubrey Plaza interrupted Will Ferrell's acceptance speech at the MTV Movie Awards, then left the building.

MTV officials confirmed Monday that the "Parks and Recreation" actress was asked to leave the ceremony after unexpectedly walking on stage and trying to take Ferrell's trophy as he accepted the Comedic Genius Award.

The irreverent awards show, held Sunday at Sony Pictures Studios, is known for its quirky stunts, but it's unclear whether the actress' stage-crashing move was planned.

"What's happening? Are you OK?" Ferrell asked the actress, who had the name of her new film scrawled across her chest in pen, as she grabbed his trophy with one hand and held a drink with the other.

He held tight to the golden popcorn and the actress returned to her seat in the front row.

"Aubrey Plaza, everyone," Ferrell continued. "Just like we rehearsed it."

Rebel Wilson hosted the ceremony and also won two awards: breakthrough performance and best musical moment for her work in "Pitch Perfect."

"The Avengers" was the night's big winner, taking three awards including movie of the year. "Silver Linings Playbook" also won three awards.

Emma Watson received the Trailblazer Award and Jamie Foxx accepted the Generation Award.

Ferrell was the inaugural recipient of the Comedic Genius Award, and he wore a three-piece suit covered in dollar bills to accept the prize.

"For those of you sitting here tonight who don't think I'm funny, I'll be happy to fight you in the parking lot after the show," he said.

No word on whether Plaza was waiting in the parking lot.

___

Follow AP Entertainment Writer Sandy Cohen: www.twitter.com/APSandy

___

Online:

http://www.mtv.com/ontv/movieawards/2013

Source: http://news.yahoo.com/aubrey-plaza-asked-leave-mtv-movie-awards-174844493.html

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Tuesday, April 16, 2013

Justin Bieber criticized for hoping Anne Frank would've been a 'belieber'

By Gael Fashingbauer Cooper, TODAY

Singer Justin Bieber stirred controversy over the weekend for claiming that Anne Frank, who wrote movingly of her years spent hiding from the Nazis, might have been a fan of his.

Frazer Harrison / Getty Images

Staff of the Anne Frank House in Amsterdam, where Frank and family hid from the Nazis until they were betrayed in 1944, posted on Facebook that Bieber visited the landmark building.

The staff noted that Bieber signed the museum's guestbook with, "Truly inspiring to be able to come here. Anne was a great girl. Hopefully she would have been a belieber."

Facebook readers were not happy with Bieber's assumption.

"She would've been a WHAT?" wrote Kevin Garcia Leon. "That little idiot is way too full of himself. She's an important historical figure so show some respect."

"Way to turn an inspiring moment into something about yourself," wrote Meghan Mausteller.

According to the Facebook page, fans waited outside the Anne Frank House to see Bieber, who spent an hour in the museum and was in The Netherlands for a concert.

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Neighbors move electrons jointly: Ultrafast collective electron transfer after excitation of single electron

Apr. 16, 2013 ? Applying femtosecond x-ray methods, researchers at the Max-Born-Institute in Berlin (Germany) and the Ecole Polytechnique Federale de Lausanne (Switzerland) observed an extremely fast, collective electron transfer of ~100 molecular ions after excitation of a single electron in a crystal of transition metal complexes.

Photochemistry and molecular photovoltaics make frequent use of so-called transition metal complexes which consist of a central metal ion bonded to a group of surrounding ligands. Such materials display a strong absorption of ultraviolet or visible light, making them attractive as primary light absorbers in molecular solar cells and other devices of molecular optoelectronics. Absorption of light is followed by an extremely fast shift of electrons from the metal ion to the ligands, a mechanism that is essential for generating an electric voltage. All applications rely on solid state materials in which transition metal complexes are densely packed and can interact with each other. So far, the influence of this interaction on the very fast electron motions following the absorption of light has remained unclear.

To observe ultrafast electron motions in space and time, one needs to measure the position of electrons in the material with a precision of the order of 0.1 nm (0.1 nm =10-10 m), roughly corresponding to the distance between neighboring atoms, and on a sub-100 fs time scale (1 fs = 10-15s). This is possible by imaging the material with extremely short x-ray pulses which are scattered from the electrons and provide their spatial arrangement. The electron motions are initiated by an ultrashort optical pulse which excites an electron on an individual complex.

In the current issue of Journal of Chemical Physics, Benjamin Freyer, Flavio Zamponi, Vincent Juve, Johannes Stingl, Michael Woerner, Thomas Elsaesser and Majed Chergui report the first in-situ x-ray imaging of electron and atom motions induced by such an electron transfer excitation. For the prototype material [Fe(bpy)3]2+(PF6-)2, they show time-dependent 'electron maps' derived from x-ray snapshots taken with 100 fs long hard x-ray flashes. Taking x-ray snapshots at various times during and after the optical pulse that triggers the charge transfer, creates a molecular movie of electron and atom motions.

To the big surprise of the researchers, the time-dependent 'electron maps' reveal a transfer of electronic charge not only from the Fe atoms to the bipyridine units but -- so far unknown -- an even larger amount of electronic charge from the PF6- counterions to the bipyridine units. The analysis of the x-ray snapshots shows that the charge transfer affects approximately 30 complexes around the directly photo-excited one. This collective electron response is caused by the electric Coulomb forces between the different ions and minimizes the total electrostatic energy in the crystal. Such behavior is highly favorable for charge collection and injection in optoelectronic devices.

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The above story is reprinted from materials provided by Forschungsverbund Berlin e.V. (FVB).

Note: Materials may be edited for content and length. For further information, please contact the source cited above.


Journal Reference:

  1. Benjamin Freyer, Flavio Zamponi, Vincent Juve?, Johannes Stingl, Michael Woerner, Thomas Elsaesser, Majed Chergui. Ultrafast inter-ionic charge transfer of transition-metal complexes mapped by femtosecond X-ray powder diffraction. The Journal of Chemical Physics, 2013; 138 (14): 144504 DOI: 10.1063/1.4800223

Note: If no author is given, the source is cited instead.

Disclaimer: Views expressed in this article do not necessarily reflect those of ScienceDaily or its staff.

Source: http://feeds.sciencedaily.com/~r/sciencedaily/top_news/top_technology/~3/mE_NDZiag8M/130416102201.htm

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Monday, April 15, 2013

Sydney Limousine hire for all special occasions | JC Limousines in

Hiring a limo for special occasions has become a trend these days. Seeing the craze many limo companies in Sydney now offer affordable limo services for all events so that everybody can experience to travel in luxury and grandeur.

Cheap limo hire Sydney is available for:

Airport transfers: When traveling for business or leisure; the one thing that bothers all of us is how to reach the airport timely. Peak rush hours, jam packed roads?. Seeing this all reliable Sydney airport Limousine becomes need of an hour.

Corporate travels: When traveling to meeting venues, conferences or seminars; one needs services that can put positive impression on the clients. Corporate Limo services help you vow your clients by offering you with the best services in the area. Uniformed and well mannered chauffeurs, luxury limousines, timely services?. These all strives to make your meeting a success.

Wedding Limousine: Wedding is the most special day in one?s life. This big day needs to be celebrated in a huge manner. Book a Wedding limo to surprise your bride. Soft music, champagne, cake, red carpet, flowers?? all will be arranged to make your wedding an unforgettable memory for you and your guest.

Concerts and sporting events: When planning to go for a concert or a sporting event; nothing can be better than hiring a limo that can comfortably pick and drop you and your group to and from the venue. Stay away from the parking and traffic hassles and be ready to cheer your favourite team or singer.

To book a limo for any of these events; search for Sydney Limos online or else you can find their contact numbers in the local directories. In the online directories you can also read about the company reviews and can also have the other important information.

Make a list of the companies you think are fitting your requirements and then enquire about their packages. Talk to their customer representative and clear all your queries. Select the fleet according to the number of people traveling with you and luggage if any. Also ask them about their license, insurance and registration status. If satisfied book one and give them all proper pick up and drop details.

Sydney Limousine Hire

When in Sydney; you can hire limos with JC Limousines. They offer corporate limo service for all events including weddings, corporate services, airport transfers and fun leisure. Their fleets include Maserati Quattroporate, Stretch Hummers, Stretch Chrysler, Stretch Ford LTD, Stretch Dodge Nitro, Mercedes S Class, BMW 7 series and Audi Q8.

Source: http://www.jclimousines.com.au/blog/?p=204

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Source: http://pekingese-distributions.blogspot.com/2013/04/sydney-limousine-hire-for-all-special.html

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Saturday, April 13, 2013

Self-medication in animals much more widespread than believed

Apr. 11, 2013 ? It's been known for decades that animals such as chimpanzees seek out medicinal herbs to treat their diseases. But in recent years, the list of animal pharmacists has grown much longer, and it now appears that the practice of animal self-medication is a lot more widespread than previously thought, according to a University of Michigan ecologist and his colleagues.

Animals use medications to treat various ailments through both learned and innate behaviors. The fact that moths, ants and fruit flies are now known to self-medicate has profound implications for the ecology and evolution of animal hosts and their parasites, according to Mark Hunter, a professor in the Department of Ecology and Evolutionary Biology and at the School of Natural Resources and Environment.

In addition, because plants remain the most promising source of future pharmaceuticals, studies of animal medication may lead the way in discovering new drugs to relieve human suffering, Hunter and two colleagues wrote in a review article titled "Self-Medication in Animals," to be published online today in the journal Science.

"When we watch animals foraging for food in nature, we now have to ask, are they visiting the grocery store or are they visiting the pharmacy?" Hunter said. "We can learn a lot about how to treat parasites and disease by watching other animals."

Much of the work in this field has focused on cases in which animals, such as baboons and woolly bear caterpillars, medicate themselves. One recent study has suggested that house sparrows and finches add high-nicotine cigarette butts to their nests to reduce mite infestations.

But less attention has been given to the many cases in which animals medicate their offspring or other kin, according to Hunter and his colleagues. Wood ants incorporate an antimicrobial resin from conifer trees into their nests, preventing microbial growth in the colony. Parasite-infected monarch butterflies protect their offspring against high levels of parasite growth by laying their eggs on anti-parasitic milkweed.

Hunter and his colleagues suggest that researchers in the field should "de-emphasize the 'self' in self-medication" and base their studies on a more inclusive framework.

"Perhaps the biggest surprise for us was that animals like fruit flies and butterflies can choose food for their offspring that minimizes the impacts of disease in the next generation," Hunter said. "There are strong parallels with the emerging field of epigenetics in humans, where we now understand that dietary choices made by parents influence the long-term health of their children."

The authors argue that animal medication has several major consequences on the ecology and evolution of host-parasite interactions. For one, when animal medication reduces the health of parasites, there should be observable effects on parasite transmission or virulence.

For example, when gypsy moth caterpillars consume foliage high in certain toxic compounds, transmission of viruses between the caterpillars is reduced, facilitating moth outbreaks.

In addition, animal medication should affect the evolution of animal immune systems, according to Hunter and his colleagues. Honeybees are known to incorporate antimicrobial resins into their nests. Analysis of the honeybee genome suggests that they lack many of the immune-system genes of other insects, raising the possibility that honeybees' use of medicine has been partly responsible -- or has compensated -- for a loss of other immune mechanisms.

The authors also note that the study of animal medication will have direct relevance for human food production. Disease problems in agricultural organisms can worsen when humans interfere with the ability of animals to medicate, they point out.

For example, increases in parasitism and disease in honeybees can be linked to selection by beekeepers for reduced resin deposition by their bees. A reintroduction of such behavior in managed bee colonies would likely have great benefits for disease management, the authors say.

The first author of the Science paper is Jacobus de Roode of Emory University. The other author is Thierry Lefevre of the Institut de Recherche pour le Developpement in France.

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The above story is reprinted from materials provided by University of Michigan.

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Journal Reference:

  1. J. C. de Roode, T. Lefevre, M. D. Hunter. Self-Medication in Animals. Science, 2013; 340 (6129): 150 DOI: 10.1126/science.1235824

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Source: http://feeds.sciencedaily.com/~r/sciencedaily/most_popular/~3/j2v2-vYpJtc/130411142716.htm

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Saturday, April 6, 2013

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Tuesday, April 2, 2013

New drug target companion prognostic test for hormone therapy resistance

Apr. 1, 2013 ? A team of international cancer researchers led by Dr. Mathieu Lupien at the Princess Margaret Cancer Centre, University Health Network, has identified the signalling pathway that is over-activated in estrogen receptor (ER)-positive breast cancer cells that are resistant to hormone therapies such as tamoxifen, aromatase inhibitors or fulvestrant.

Resistance to hormone therapy is reported in almost half of ER-positive breast cancer patients and no cure is currently available. The fact that the pathway, called Notch, is a drug target creates hope for a new therapy.

The findings, published online today in the Proceedings of the National Academy of Sciences, "provide a new therapeutic target against hormone therapy-resistant breast cancers and a companion test to identify tumours that would become resistant" says Dr. Lupien, a scientist at the Ontario Cancer Institute, the research arm of the cancer centre, and an Assistant Professor in the Department of Medial Biophysics, University of Toronto. He specializes in epigenetics of hormone-dependent cancers -- the study of non-genetic determinants of cellular identity that can also be altered to initiate or modify disease.

"In studying the epigenetics of hormone therapy resistance, we discovered that breast cancer cells behave like a chameleon. Indeed, as the chameleon changes its skin colour to camouflage itself and evade predators," says Dr. Lupien, "breast cancer cells change the appearance of their DNA through epigenetics to evade, in this case, hormone therapy." In so doing, hormone therapy-resistant breast cancer cells highlight regions of their DNA related to the Notch pathway.

At the molecular level, the research team characterized the epigenetic appearances of the DNA of drug-resistant and drug-responsive breast cancer cells. The team discovered that the Notch signaling pathway plays the predominant role in drug-resistant breast cancer cells even if cells remain positive for ER.

"This is a highly promising discovery that could rapidly translate in the clinic. Drugs against the Notch pathway are available." says Dr. Lupien. The key will be to test the efficacy of these drugs against hormone therapy resistance in breast cancer.

The research was funded by the National Cancer Institute, the American Cancer Society and the Ontario Institute for Cancer Research. Dr. Lupien's research is also supported by The Princess Margaret Cancer Foundation.

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The above story is reprinted from materials provided by University Health Network.

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Journal Reference:

  1. Luca Magnani, Alexander Stoeck, Xiaoyang Zhang, Andr?s L?nczky, Anne C. Mirabella, Tian-Li Wang, Bal?zs Gyorffy, and Mathieu Lupien. Genome-wide reprogramming of the chromatin landscape underlies endocrine therapy resistance in breast cancer. Proceedings of the National Academy of Sciences, 2013; DOI: 10.1073/pnas.1219992110

Note: If no author is given, the source is cited instead.

Disclaimer: This article is not intended to provide medical advice, diagnosis or treatment. Views expressed here do not necessarily reflect those of ScienceDaily or its staff.

Source: http://feeds.sciencedaily.com/~r/sciencedaily/top_news/~3/pUzj0i7pl44/130401151035.htm

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