Thursday, January 5, 2012

Age-related degeneration can be caused by defects of energy metabolism in tissue stem cells

ScienceDaily (Jan. 3, 2012) ? New findings by researchers at the University of Helsinki, Finland, increase the understanding of mechanisms of age-related degeneration. The results are a breakthrough in revealing the unexpected importance of energy metabolism in regulating stem cell function and tissue maintenance.

Age-related tissue degeneration can be caused by mitochondrial dysfunction in tissue stem cells. The research group of Professor Anu Suomalainen Wartiovaara at the University of Helsinki, with their collaborators in Max Planck Institute for Biology of Aging, Karolinska Institutet and University of Wisconsin, reported on the 3rd January in Cell Metabolism their results on mechanisms of age-associated degeneration.

Stem cells are called the spare parts for tissues, as they maintain and repair tissues during life. They are multipotent and can produce a variety of different cell types, from blood cells to neurons and skin cells. Mitochondria are the cellular engine: they transform the energy of nutrients to a form that cells can use, and in this process they burn most of the inhaled oxygen. If this nutrient 'burning' is inefficient, the engine will produce exhaust fumes, oxygen radicals, which damage cellular structures, including the genome. Antioxidants target to scavenge these radicals.

Already in 2004 and 2005 a research model was created in Sweden and USA, which accumulated a heavy load of mitochondrial genome defects. This led to symptoms of premature aging: thin skin, graying of hair, baldness, osteoporosis and anemia.

In the current publication, scientist Kati Ahlqvist in Professor Suomalainen Wartiovaara's group showed that these symptoms were partially explained by stem cell dysfunction. The number of stem cells did not reduce, but their function was modified: the progeny cells in blood and the nervous system were dysfunctional. The researchers also found out that these defects could be partially prevented by early antioxidant treatment.

"This suggests that oxygen radicals can regulate stem cell function and that these cells are very susceptible for mitochondrial dysfunction. These findings may also be important to understand mechanisms of mitochondrial disease," Professor Suomalainen Wartiovaara says.

The results are a breakthrough in revealing the unexpected importance of energy metabolism in regulating stem cell function and tissue maintenance. These findings increase the understanding of mechanisms of age-related degeneration.

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The above story is reprinted from materials provided by Helsingin yliopisto (University of Helsinki), via AlphaGalileo.

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


Journal Reference:

  1. ati Ahlqvist, Riikka H H?m?l?inen, Shuichi Yatsuga, Marko Uutela, M?gen Terzioglu, Alexandra G?tz, Saara Forsstr?m, Petri Salven, Alexandre Angers-Loustau, Outi H Kopra, Henna Tyynismaa, Nils-G?ran Larsson, Kirmo Wartiovaara, Tomas Prolla, Aleksandra Trifunovic, Anu Suomalainen. Somatic progenitor cell vulnerability to mitochondrial DNA mutagenesis underlies progeroid phenotypes in Polg mutator mice. Cell Metabolism, 3 Jan 2012

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://www.sciencedaily.com/releases/2012/01/120103134917.htm

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Study Looks at Deep Brain Stimulation in Bipolar Patients (HealthDay)

MONDAY, Jan. 2 (HealthDay News) -- A small study suggests that deep brain stimulation, which is currently being investigated as a treatment for general depression, may also help patients with bipolar disorder.

There are some caveats. The surgery necessary to allow deep brain stimulation is extremely expensive. And for now, the research is preliminary, so it's too early to know for sure if the treatment is appropriate to be used for any kind of depression.

Still, the study suggests that brain stimulation "not only just helps patients who haven't been able to recover from depression, but it seems to be associated with the absence of relapses. They're not only getting better, they're staying better," said study co-author Dr. Helen Mayberg, a professor in both the departments of psychiatry and behavioral sciences, and neurology, at Emory University School of Medicine in Atlanta.

In deep brain stimulation, surgeons insert wires into the brain that allows a specific region to be continuously hit with an electronic pulse. The level of stimulation is controlled by a pacemaker-like device implanted in the chest.

Deep brain stimulation has been around for more than 20 years, Mayberg said, and is commonly used to treat Parkinson's disease. The cost of the surgery is about $50,000, she said.

Previous research by Mayberg and others suggested that deep brain stimulation had potential as a treatment for depression. The St. Jude Medical Neuromodulation company, which has provided consulting fees to Mayberg and some of the other study authors, is currently recruiting patients for a study that could pave the way for its approval as a treatment for depression, Mayberg said.

The new study, which appears online Jan. 2 in the Archives of General Psychiatry, began with 10 patients with depression and seven with bipolar disorder -- a condition that causes severe mood swings and is also known as manic depression. They all received deep brain stimulation for 24 weeks after going through four weeks either with or without stimulation.

Most of the patients continued to receive the treatment over two years, although researchers temporarily turned it off in three of them as part of the study before realizing that doing so caused their depression to return.

The researchers found that 18 percent of patients went into remission after 24 weeks, 36 percent (of 14 patients) after one year. After two years, of the 12 patients still in the study, seven patients (58 percent) were in remission.

"The number of patients who got better increased over time, but it's not quite clear as to why," Mayberg said. The workings of deep brain stimulation as a whole are a mystery, although Mayberg said it may work by changing the brain's rhythms.

Patients didn't suffer from side effects, she noted.

So, what's next?

Dr. Samuel James Collier, an assistant professor of psychiatry at the University of Texas Southwestern Medical Center at Austin, predicted that even if deep brain stimulation turns out to be an effective treatment for depression, it'll be far from the first line of defense.

"Medications and ECT -- electroconvulsive therapy -- are clearly safer, better tolerated, and do not embody a large surgical risk," Collier said. "I can't think of a scenario where deep brain stimulation would be considered even remotely before medications and ECT were exhausted."

Still, he said, it's important to note that "we seem to be making progress and hopefully those who are suffering the most can find solace in that and not give up hope."

For now, research continues. If patients are interested in deep brain stimulation treatment, they should try to get into the study that's ongoing, Mayberg said.

More information

For more about deep brain stimulation, visit the U.S. National Library of Medicine.

Source: http://us.rd.yahoo.com/dailynews/rss/diseases/*http%3A//news.yahoo.com/s/hsn/20120104/hl_hsn/studylooksatdeepbrainstimulationinbipolarpatients

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Wednesday, January 4, 2012

RT_com: Earthquake of 5.1 magnitude hits #Japan http://t.co/L4QFIzuI #news

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Earthquake of 5.1 magnitude hits #Japan on.rt.com/70hjej #news RT_com

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Source: http://twitter.com/RT_com/statuses/154000401274896385

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Tuesday, January 3, 2012

twandroid: Le Sony Ericsson Xperia Arc S est ?galement victime du probl?me de fissure http://t.co/YhxQJmrv

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Le Sony Ericsson Xperia Arc S est ?galement victime du probl?me de fissure bit.ly/sFUPOd twandroid

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Source: http://twitter.com/twandroid/statuses/153930675425263616

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sony ericsson xperia X 10

Hi,

This is regards with issue of my xperia x 10 mobile which was submitted to Sony ericsson customer care on 19 September 2011 for the issue of touch screen problem and continuous hanging problem, however they have just taken my mobile for 7 days and noting to rectify the issue and returned me back with the response of no issue reported. However i have re-monitored my handset for next one month and found that my issue was not resolved.

On 16 nov 2011 i have re-submitted my handset back to them, and they finally deciede the issue with motherboard and they ensured me for replacement with new device, But they asked me again 10 days time to complete replacement process.

I was ready for replacement but after 10 days when i called them back for status update i found customer care contact number mentioned in website was not working and no body picking the call, So again i traveled again personally to customer care office.

I was totally shock after hearing response from them, Now they were denied to do replacement and even didn't rectify the issue, I thought to escalate this to next level management but customer care guys behaved so rudely and did not ready to share the manager details.

So now i have no scope level going rather then taking the legal action against them, So i have sent them legal notice on 20 December but even they not replied to notice also.

I am totally fad-up and wasted my 5 month of valuable time and faced lot of mental harassment. Please assist me to proceed further, So that at least i can get my phone replaced.
Date of purchase 20/12/2010.
IMEI no. 01237900-667689-8
please help me out, please guide me what i have to do.
Thank you

Amit singh
fmssingh@gmail.com
08800678559

Source: http://www.consumercourtforum.in/f50/sony-ericsson-xperia-x-10-a-57842/

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Sunday, January 1, 2012

Mexican Drug Cartels Have Their Own Radio Communications ...

December 29th, 2011

Via: AP:

When convoys of soldiers or federal police move through the scrubland of northern Mexico, the Zetas drug cartel knows they are coming.

The alert goes out from a taxi driver or a street vendor, equipped with a high-end handheld radio and paid to work as a lookout known as a ?halcon,? or hawk.

The radio signal travels deep into the arid countryside, hours by foot from the nearest road. There, the 8-foot-tall (2-meter-tall) dark-green branches of the rockrose bush conceal a radio tower painted to match. A cable buried in the dirt draws power from a solar panel. A signal-boosting repeater relays the message along a network of powerful antennas and other repeaters that stretch hundreds of miles (kilometers) across Mexico, a shadow communications system allowing the cartel to coordinate drug deliveries, kidnapping, extortion and other crimes with the immediacy and precision of a modern military or law-enforcement agency.

Related:

DEA Launders Mexican Profits of Drug Cartels

High Level Member of Sinaloa Cartel Claims Multi-Ton Cocaine Trafficking Activities Were Sanctioned by DOJ, DEA and DHS/ICE

CIA Wants Court to Invoke Classified Information Procedures Act (CIPA) in Case Involving Jesus Vicente Zambada Niebla

Private Jet that Crashed in Mexico Carrying 3.3 Tons of Cocaine had Previously Been Used for CIA ?Rendition?

The Technology Secrets of Cocaine Inc.

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