Thursday, April 25, 2013

After brain injury, new astrocytes play unexpected role in healing

Apr. 24, 2013 ? The production of a certain kind of brain cell that had been considered an impediment to healing may actually be needed to staunch bleeding and promote repair after a stroke or head trauma, researchers at Duke Medicine report.

These cells, known as astrocytes, can be produced from stem cells in the brain after injury. They migrate to the site of damage where they are much more effective in promoting recovery than previously thought. This insight from studies in mice, reported online April 24, 2013, in the journal Nature, may help researchers develop treatments that foster brain repair.

"The injury recovery process is complex," said senior author Chay T. Kuo, M.D., PhD, George W. Brumley Assistant Professor of Cell Biology, Pediatrics and Neurobiology at Duke University. "There is a lot of interest in how new neurons can stimulate functional recovery, but if you make neurons without stopping the bleeding, the neurons don't even get a chance. The brain somehow knows this, so we believe that's why it produces these unique astrocytes in response to injury."

Each year, more than 1.7 million people in the United States suffer a traumatic brain injury, according to the Centers for Disease Control and Prevention. Another 795,000 people a year suffer a stroke. Few therapies are available to treat the damage that often results from such injuries.

Kuo and colleagues at Duke are interested in replacing lost neurons after a brain injury as a way to restore function. Once damaged, mature neurons cannot multiply, so most research efforts have focused on inducing brain stem cells to produce more immature neurons to replace them.

This strategy has proved difficult, because in addition to making neurons, neural stem cells also produce astrocytes and oligodendrocytes, known as glial cells. Although glial cells are important for maintaining the normal function of neurons in the brain, the increased production of astrocytes from neural stem cell has been considered an unwanted byproduct, causing more harm than good. Proliferating astrocytes secrete proteins that can induce tissue inflammation and undergo gene mutations that can lead to aggressive brain tumors.

In their study of mice, the Duke team found an unexpected insight about the astrocytes produced from stem cells after injury. Stem cells live in a special area or "niche" in the postnatal/adult brain called the subventricular zone, and churn out neurons and glia in the right proportions based on cues from the surrounding tissue.

After an injury, however, the subventricular niche pumps out more astrocytes. Significantly, the Duke team found they are different from astrocytes produced in most other regions of the brain. These cells make their way to the injured area to help make an organized scar, which stops the bleeding and allows tissue recovery.

When the generation of these astrocytes in the subventricular niche was experimentally blocked after a brain injury, hemorrhaging occurred around the injured areas and the region did not heal. Kuo said the finding was made possible by insights about astrocytes from Cagla Eroglu, PhD, whose laboratory next door to Kuo's conducts research on astrocyte interactions with neurons.

"Cagla and I started at Duke together and have known each other since our postdoctoral days," Kuo said. "To have these stem cell-made astrocytes express a unique protein that Cagla understands more than anyone else, it's just a wonderful example of scientific serendipity and collaboration."

Additionally, Kuo said first author Eric J. Benner, M.D., PhD, a former postdoctoral fellow who now has his own laboratory at Duke, provided key clinical correlations on brain injury as a physician-scientist and practicing neonatologist in the Jean and George Brumley Jr. Neonatal-Perinatal Research Institute.

"We are very excited about this innate flexibility in neural stem cell behavior to know just what to do to help the brain after injury," Kuo said. "Since bleeding in the brain after injury is a common and serious problem for patients, further research into this area may lead to effective therapies for accelerated brain recovery after injury."

In addition to Kuo, Eroglu and Benner, authors include Dominic Luciano, Rebecca Jo, Khadar Abdi, Patricia Paez-Gonzalez, Huaxin Sheng, David Warner and Chunlei Liu.

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The above story is reprinted from materials provided by Duke University Medical Center.

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


Journal Reference:

  1. Eric J. Benner, Dominic Luciano, Rebecca Jo, Khadar Abdi, Patricia Paez-Gonzalez, Huaxin Sheng, David S. Warner, Chunlei Liu, Cagla Eroglu, Chay T. Kuo. Protective astrogenesis from the SVZ niche after injury is controlled by Notch modulator Thbs4. Nature, 2013; DOI: 10.1038/nature12069

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/health_medicine/genes/~3/zIrBOIqCR0I/130424132707.htm

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Wednesday, April 24, 2013

Infinity Cell Lets You Charge Your iPhone Simply By Shaking It

Infinity_Cell_smartphone_Kinetic_Charger_1The Infinity Cell is a kinetic charger for the iPhone that uses your body's movement to generate electricity. The current prototype for the Infinity Cell is a crude 3D printed rectangle, roughly the size of a pack of cigarettes, linked up to the iPhone with a cable. The plan is to create a more streamlined version during the product's Kickstarter campaign.

Source: http://feedproxy.google.com/~r/Techcrunch/~3/hPfrNCPcDNo/

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Samsung Galaxy S 4 review

Samsung Galaxy S 4 review

This is the story of a little smartphone series that grows up and, three years later, positions itself to take over the world. The device in question, the newest addition to that lineup, doesn't really need much of an introduction thanks to some of the most successful marketing campaigns in the world. We'll be happy to give it anyway: pictured atop this very text sits the Samsung Galaxy S 4, the latest and greatest flagship out of Korea. This is the hero, the device chosen to lead the charge for Samsung as it ventures deeper into 2013, and it's fitted with the best of everything: a 1080p Super AMOLED display, 1.9GHz quad-core (or 1.6GHz Exynos 5 Octa 5410, depending on market) chipset, Android 4.2, 13MP camera and a wide assortment of brand-new firmware amenities, to name just a few.

Despite the fact that its predecessor sold millions upon millions of units in the past year, the Galaxy S 4 isn't alone in its quest for global Android domination this time. HTC, the underdog of the fight, has launched the One, a flagship that rivals the GS 4 in almost every way and does so in a physically attractive package complete with a solid aluminum build. Where do these two devices stand in comparison to each other? Does the GS 4 reign supreme? Will its onslaught of new software features send the phone to the top of the pack? These answers and more await you after the break.

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Source: http://feeds.engadget.com/~r/weblogsinc/engadget/~3/scilblOQDl8/

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White House willing to consider budget flexibility

White House press secretary Jay Carney speaks during his daily news briefing at the White House in Washington, Wednesday, April, 24, 2013. (AP Photo/Pablo Martinez Monsivais)

White House press secretary Jay Carney speaks during his daily news briefing at the White House in Washington, Wednesday, April, 24, 2013. (AP Photo/Pablo Martinez Monsivais)

(AP) ? The White House now says it's willing to consider legislation that would give the administration the budget-cutting flexibility to avoid furloughs of air traffic controllers.

Those furloughs could result in widespread air traffic delays.

White House spokesman Jay Carney says that if Congress wants to address the effect of automatic spending cuts on the Federal Aviation Administration, "we would be open to looking at that."

But he says that would be a "Band-Aid measure" that would not address other automatic cuts that kicked in March 1.

Back in February, when those cuts were approaching, the White House threatened to veto legislation that would give Obama greater budget-cutting flexibility.

At the time, the White House said it couldn't make dramatic cuts without affecting national security or hurting the economy.

Associated Press

Source: http://hosted2.ap.org/APDEFAULT/f70471f764144b2fab526d39972d37b3/Article_2013-04-24-US-Obama-FAA/id-a65ee33630364220911d4da46c3750f4

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