Sunday, June 24, 2012

Biodegradable artery graft will enhance bypass surgeries

ScienceDaily (June 24, 2012) ? With the University of Pittsburgh's development of a cell-free, biodegradable artery graft comes a potentially transformative change in coronary artery bypass surgeries: Within 90 days after surgery, the patient will have a regenerated artery with no trace of synthetic graft materials left in the body.

Research published online June 24 in Nature Medicine highlights work led by principal investigator Yadong Wang, a professor in Pitt's Swanson School of Engineering and School of Medicine's Department of Surgery, who designed grafts that fully harness the body's regenerative capacity. This new approach is a philosophical shift from the predominant cell-centered approaches in tissue engineering of blood vessels.

"The host site, the artery in this case, is an excellent source of cells and provides a very efficient growth environment," said Wang. "This is what inspired us to skip the cell culture altogether and create these cell-free synthetic grafts."

Wang and fellow researchers, Wei Wu, a former Pitt postdoctoral associate (now a postdoctoral associate at Yale University), and Robert Allen, a PhD student in bioengineering, designed the graft with three properties in mind. First, they chose a graft material -- an elastic polymer called PGS -- that is resorbed quickly by the body. Then, they examined graft porosity and selected parameters that allow immediate cell infiltration. Wang's team borrowed a procedure developed by another team of Pitt researchers -- David Vorp, professor of bioengineering and surgery, and William R. Wagner, interim director of the University's McGowan Institute for Regenerative Medicine and a Pitt professor of surgery, bioengineering, and chemical engineering -- wrapping the vascular graft with a fibrous sheath to trap the cells. Finally, Wang and his fellow researchers wanted a coating for the grafts that would reduces blood clotting and bind many growth factors, so they used heparin, a molecule that does just that.

"The results were porous grafts that are suturable," said Wang. "And the rapid remodeling of the grafts led to strong and compliant new arteries. The extent of the changes in the grafts that occurred in just 90 days was remarkable."

Wang and his colleagues made grafts as small as 1 mm in diameter and monitored the graft's transformation in vivo for three months. Because the graft was highly porous, cells were easily able to penetrate the graft wall, and mononuclear cells occupied many of the pores within three days. Within 14 days, smooth muscle cells -- an important blood vessel builder -- appeared. At 28 days, cells were distributed more evenly throughout the graft. At 90 days, most inflammatory cells were gone, which correlated with the disappearance of the graft materials. The artery was regenerated in situ and pulsed in sync with the host. Furthermore, the composition and properties of the new arteries are nearly the same as native arteries.

"This report is the first that shows a nearly complete transformation of a synthetic plastic tube to a new host artery with excellent integration within three months," said Wang. "Most likely, the amount of time it takes to regenerate an artery can be further shortened as we refine the system."

Current approaches toward tissue-engineered arteries require a long production cycle because of the required cell culture steps. The newly developed graft is made in a few days, stores in a dry pouch at ambient temperature, and is readily available off the shelf. The ease of use and storage are similar to the conventional Dacron? grafts.

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The above story is reprinted from materials provided by University of Pittsburgh, via EurekAlert!, a service of AAAS.

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


Journal Reference:

  1. Wei Wu, Robert A Allen & Yadong Wang. Fast-degrading elastomer enables rapid remodeling of a cell-free synthetic graft into a neoartery. Nature Medicine, 2012 DOI: 10.1038/nm.2821

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.

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Calif. mayor, 2 others accused of pot shop bribes

LOS ANGELES (AP) - If someone wanted to do business in the small Southern California city of Cudahy, federal prosecutors say one-time city manager Angel Perales had some advice.

"Money makes the monkey dance," Perales told an FBI informant, according to court documents.

Perales, Mayor David Silva and Councilman Osvaldo Conde were arrested Friday and charged with soliciting and accepting cash bribes totaling $17,000 to support the opening of a medical marijuana dispensary. If convicted of a bribery charge, they each face up to 10 years in prison.

The three officials were in court Friday afternoon for bail hearings. Silva and Perales were released on $50,000 appearance bonds. Conde was released on $100,000 bond.

It wasn't immediately known if they had retained attorneys.

Court documents laid out the scheme to approve a pot shop in exchange for cash and also portrayed the suburb of 25,000 as a virtual den of iniquities where drug use, voter fraud and illicit sex permeated City Hall.

The arrests are the latest in a series of corruption scandals plaguing small cities south of Los Angeles. Most notable were the 2010 arrests of the former city manager and several other officials from neighboring Bell, who are accused of misappropriating funds to overpay themselves.

Federal prosecutors said in an affidavit that after weeks of soliciting bribes, Conde, Perales and Silva accepted $15,000 in February from an FBI informant who formerly owned a medical marijuana shop in a nearby city.

Conde later met with the informant and received $2,000, court documents show. The informant estimated the dispensary could generate up to $2.5 million within a year.

"The allegations in this case describe a corrosive and freewheeling attitude among certain officials in the city of Cudahy," said U.S. Attorney Andre Birotte Jr. "The stain left by public corruption is indelible, extending beyond any individual case because of the general erosion of public confidence in government."

Recorded conversations show that Perales, who ran the city's code enforcement division, helped arrange the deal and knew plenty of the city's dirty secrets.

Among them was the firing of former City Manager George Perez in March 2011. The council said Perez was let go "for cause," but Perales, 43, told the informant the ex-official was doing drugs on the job.

Perez could not immediately be located for comment.

Perales also said Conde, 50, was the most powerful man in Cudahy. Conde seemed to confirm that to the informant as well.

"In other words, I'm leading and bring all these ideas," said Conde, according to the affidavit.

One of the ideas was to be a business partner with Perales to build a massage parlor where sex would be provided to patrons, the affidavit said. Perales tells the informant the new venture could generate $10,000 to $15,000 every month.

In two meetings with the informant, Conde showed up with a pair of armed bodyguards, who turned out to be employees of the 1.2-square-mile city. Conde also had a revolver with him at one of the meetings, according to court documents.

Perales also suggested he helped get Conde elected five years ago. He tells the informant during a recorded conversation he persuaded 60 to 70 people to vote for Conde.

Conde finished with 472 votes and won by a margin of 33 votes, court documents show.

Thom Mrozek, a U.S attorney's spokesman, said the investigation is ongoing and he couldn't say whether additional charges would be filed.

Perales suggested the shakedown of the prospective pot clinic owner wasn't the first time Conde and Silva looked to receive bribes.

"These guys are not your typical, uh, council people," Perales tells the informant, according to the affidavit. "They've dealt with, uh, you know, people that throw money down."

All three men are scheduled to return to court July 19 for arraignment.

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Saturday, June 23, 2012

Android app swipes contactless credit card details

Jacob Aron, technology reporter

rexfeatures_254189e.jpg(Image: Andrew Drysdale/Rex Features)

Got a credit card equipped with a contactless payment chip? Then watch out next time someone bumps into you in the street - they may have just mugged you with an app.

Contactless cards use near field communications (NFC) chips to exchange your payment details with a merchant's till, and some smartphones also come equipped with NFC chips to let you use them as a wallet. Now security researcher Thomas Skora has written an app that turns any NFC phone into a reader and successfully read card numbers, expiry dates, transactions and merchant IDs from German credit cards.

The app, called paycardreader, was removed from the Google Play store yesterday, but Skora has also placed the source code on GitHub, a code-sharing website, and says the app doesn't actually save the swiped data, it just displays it.

It is possible that more malicious app developers could use similar methods to actively steal data though - an investigation by Channel 4 television in the UK earlier this year revealed it was possible to swipe details via a phone and use them to make purchases on Amazon.


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Arriba! Domino's Launches New Mexico Pizza Range

(PRWEB UK) 23 June 2012

Enjoy a taste of Mexico with Domino?s three new Mexicano pizzas ? chicken, beef and vegetarian. The meat varieties feature chorizo with beef or chicken plus red and green chillies for a bit of a kick, tomatoes and onions topped onto Domino?s fresh dough base, along with vine-ripened tomato sauce and 100 per cent mozzarella cheese. The vegetarian version features the same tasty veggie toppings but with added sweetcorn and spinach. All the Mexicano pizzas are topped off with a drizzle of cool sour cream.

If you fancy a bit of extra heat, Domino?s is also launching Mexicano Stuffed Crust. The new stuffed crust has fresh green and red chillies and mozzarella cheese with a hint of garlic and herbs, stuffed into Domino?s famous fresh dough crust.

To celebrate the new Mexicano range, Domino?s is running a special prelaunch on Facebook to enable pizza lovers to try the pizzas before they go on general sale. For a limited period, fans of Domino?s UK page can now order a large Mexicano pizza first and also grab a tempting ?5 off the usual pizza price. Fans just need to visit the Mexicano tab on the Domino?s Pizza UK Facebook page and click on the order button to be taken through to http://www.dominos.co.uk where the pizza will automatically be added to their checkout basket.

Simon Wallis, sales and marketing director of Domino?s Pizza, said: ?We wanted to inject a bit of Mexican sunshine and bring a bit of heat to pizza lovers this summer so we?re delighted to launch the new Mexicano range. There is a strong trend for Mexican food at the moment and with two meat versions, a vegetarian one and a Mexicano Stuffed Crust too, there?s something for everyone. We can?t wait to hear what our amigos on Facebook think of the new range before it goes on general sale.?

The Mexicano range will be available on general sale from June 25, 2012 in Domino?s UK stores.

Find Domino?s on Facebook at http://www.facebook.com/DominosPizza. To grab a slice of the action, order online at http://www.dominos.co.uk, via the iPhone, iPad, Android and Windows Phone 7 apps or visit your local store.

-Ends-

Notes to Editors:
Facebook prelaunch deal runs from June 20 ? 24, 2012. The Mexicano range will be available on general sale from June 25, 2012 in Domino?s UK stores.

Mexicano Stuffed Crust is available on large pizzas only during the prelaunch. A medium sized Mexicano Stuffed Crust will also be available after the prelaunch has ended.

Domino?s Pizza Group plc is the leading player in the fast-growing pizza delivery market and holds the exclusive master franchise to own, operate and franchise Domino?s Pizza stores in the UK, the Republic of Ireland and Germany. The first UK store opened in Luton in 1985 and the first Irish store opened in 1991. In April 2011, the Group acquired a majority stake in the exclusive master franchise to own, operate and franchise Domino?s Pizza stores in Germany.

As at 25 March 2012, there were 732 stores in the UK, Republic of Ireland and Germany. Of these, 580 stores are in England, 49 are in Scotland, 28 are in Wales, 19 are in Northern Ireland, one is on the Isle of Man, one is a mobile unit, 48 are in the Republic of Ireland and six are in Germany.

Founded in 1960, Domino?s Pizza is one of the world?s leading pizza delivery brands. Through its primarily franchised system, Domino?s Pizza operates a global network of more than 9,350 Domino?s Pizza stores in 70 international markets. Domino?s Pizza has a singular focus ? the home delivery of pizza, freshly made to order with high quality ingredients.

Customers in the UK can order online at http://www.dominos.co.uk, customers in the Republic of Ireland can order online at http://www.dominos.ie and customers in Germany can order online at http://www.dominos.de. In addition, mobile customers can order by downloading Domino?s free iPhone, iPad, Android and Windows Phone 7 apps.

For more information, please contact:
The Domino?s Pizza Press Office
Domino?s Pizza Group Ltd
Tel: 01908 580654
E: pr(at)dominos(dot)co(dot)uk

Ref: DPGL/CM/655


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Friday, June 22, 2012

New HBO Drama 'The Newsroom": Is It Worth Watching?

HBO's new series, The Newsroom, is an Aaron Sorkin project. For that reason alone, its premiere this Sunday at 10 p.m. ET is getting plenty of buzz. See the preview below:

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Extensive water in Mars' interior

Extensive water in Mars' interior [ Back to EurekAlert! ] Public release date: 21-Jun-2012
[ | E-mail | Share Share ]

Contact: Erik Hauri
ehauri@carnegiescience.edu
202-478-8471
Carnegie Institution

Washington, D.C.Until now, Earth was the only planet known to have vast reservoirs of water in its interior. Scientists analyzed the water content of two Martian meteorites originating from inside the Red Planet. They found that the amount of water in places of the Martian mantle is vastly larger than previous estimates and is similar to that of Earth's. The results not only affect what we know about the geologic history of Mars, but also have implications for how water got to the Martian surface. The data raise the possibility that Mars could have sustained life.

The research was led by former Carnegie postdoctoral scientist Francis McCubbin, now at the University of New Mexico. The analysis was performed by Carnegie Institution investigator Erik Hauri and team and is published in the journal Geology.

The scientists analyzed what are called shergottite meteorites. These are fairly young meteorites that originated by partial melting of the Martian mantlethe layer under the crustand crystallized in the shallow subsurface and on the surface. They came to Earth when ejected from Mars approximately 2.5 million years ago. Meteorite geochemistry tells scientists a lot about the geological processes the planet underwent.

"We analyzed two meteorites that had very different processing histories," explained Hauri. "One had undergone considerable mixing with other elements during its formation, while the other had not. We analyzed the water content of the mineral apatite and found there was little difference between the two even though the chemistry of trace elements was markedly different. The results suggest that water was incorporated during the formation of Mars and that the planet was able to store water in its interior during the planet's differentiation."

Based on the mineral's water content, the scientists estimated that the Martian mantle source from which the rocks were derived contained between 70 and 300 parts per million (ppm) water. For comparison, the upper mantle on Earth contains approximately 50-300 ppm water. Hauri and team were able to determine these values with new techniques and new standards they developed that can quantify water in apatite using a technology called secondary ion mass spectrometry (SIMS).

"There has been substantial evidence for the presence of liquid water at the Martian surface for some time," Hauri said. "So it's been puzzling why previous estimates for the planet's interior have been so dry. This new research makes sense and suggests that volcanoes may have been the primary vehicle for getting water to the surface."

McCubbin concluded, "Not only does this study explain how Mars got its water, it provides a mechanism for hydrogen storage in all the terrestrial planets at the time of their formation."

###

This work was supported by NASA Cosmochemistry grants NNX11AG76G, NNX10AI77G, the New Mexico Space Grant Consortium, and the Carnegie Institution.

The Carnegie Institution for Science (carnegiescience.edu) is a private, nonprofit organization headquartered in Washington, D.C., with six research departments throughout the U.S. Since its founding in 1902, the Carnegie Institution has been a pioneering force in basic scientific research. Carnegie scientists are leaders in plant biology, developmental biology, astronomy, materials science, global ecology, and Earth and planetary science.


[ Back to EurekAlert! ] [ | E-mail | Share Share ]

?


AAAS and EurekAlert! are not responsible for the accuracy of news releases posted to EurekAlert! by contributing institutions or for the use of any information through the EurekAlert! system.


Extensive water in Mars' interior [ Back to EurekAlert! ] Public release date: 21-Jun-2012
[ | E-mail | Share Share ]

Contact: Erik Hauri
ehauri@carnegiescience.edu
202-478-8471
Carnegie Institution

Washington, D.C.Until now, Earth was the only planet known to have vast reservoirs of water in its interior. Scientists analyzed the water content of two Martian meteorites originating from inside the Red Planet. They found that the amount of water in places of the Martian mantle is vastly larger than previous estimates and is similar to that of Earth's. The results not only affect what we know about the geologic history of Mars, but also have implications for how water got to the Martian surface. The data raise the possibility that Mars could have sustained life.

The research was led by former Carnegie postdoctoral scientist Francis McCubbin, now at the University of New Mexico. The analysis was performed by Carnegie Institution investigator Erik Hauri and team and is published in the journal Geology.

The scientists analyzed what are called shergottite meteorites. These are fairly young meteorites that originated by partial melting of the Martian mantlethe layer under the crustand crystallized in the shallow subsurface and on the surface. They came to Earth when ejected from Mars approximately 2.5 million years ago. Meteorite geochemistry tells scientists a lot about the geological processes the planet underwent.

"We analyzed two meteorites that had very different processing histories," explained Hauri. "One had undergone considerable mixing with other elements during its formation, while the other had not. We analyzed the water content of the mineral apatite and found there was little difference between the two even though the chemistry of trace elements was markedly different. The results suggest that water was incorporated during the formation of Mars and that the planet was able to store water in its interior during the planet's differentiation."

Based on the mineral's water content, the scientists estimated that the Martian mantle source from which the rocks were derived contained between 70 and 300 parts per million (ppm) water. For comparison, the upper mantle on Earth contains approximately 50-300 ppm water. Hauri and team were able to determine these values with new techniques and new standards they developed that can quantify water in apatite using a technology called secondary ion mass spectrometry (SIMS).

"There has been substantial evidence for the presence of liquid water at the Martian surface for some time," Hauri said. "So it's been puzzling why previous estimates for the planet's interior have been so dry. This new research makes sense and suggests that volcanoes may have been the primary vehicle for getting water to the surface."

McCubbin concluded, "Not only does this study explain how Mars got its water, it provides a mechanism for hydrogen storage in all the terrestrial planets at the time of their formation."

###

This work was supported by NASA Cosmochemistry grants NNX11AG76G, NNX10AI77G, the New Mexico Space Grant Consortium, and the Carnegie Institution.

The Carnegie Institution for Science (carnegiescience.edu) is a private, nonprofit organization headquartered in Washington, D.C., with six research departments throughout the U.S. Since its founding in 1902, the Carnegie Institution has been a pioneering force in basic scientific research. Carnegie scientists are leaders in plant biology, developmental biology, astronomy, materials science, global ecology, and Earth and planetary science.


[ Back to EurekAlert! ] [ | E-mail | Share Share ]

?


AAAS and EurekAlert! are not responsible for the accuracy of news releases posted to EurekAlert! by contributing institutions or for the use of any information through the EurekAlert! system.


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