Friday, September 21, 2012

Growing corn to treat rare disease

Growing corn to treat rare disease [ Back to EurekAlert! ] Public release date: 21-Sep-2012
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Contact: Allison Kermode
kermode@sfu.ca
778-782-3982
Simon Fraser University

The seeds of greenhouse-grown corn could hold the key to treating a rare, life-threatening childhood genetic disease, according to researchers from Simon Fraser University.

SFU biologist Allison Kermode and her team have been carrying out multidisciplinary research toward developing enzyme therapeutics for lysosomal storage diseases - rare, but devastating childhood genetic diseases for more than a decade.

In the most severe forms of these inherited diseases, untreated patients die in early childhood because of progressive damage to all organs of the body.

Currently, enzyme treatments are available for only six of the more than 70 diverse types of lysosomal storage diseases.

"In part because mammalian cell cultures have been the system of choice to produce these therapeutics, the enzymes are extremely costly to make, with treatments typically ranging from $300,000 to $500,000 per year for children, with even higher costs for adults," says Kermode, noting the strain on healthcare budgets in Canada and other countries is becoming an issue.

Greenhouse-grown maize may become a platform for making alpha-L-iduronidase, an enzyme used to treat the lysosomal storage disease known as mucopolysaccharidosis I, according to research published in this week's Nature Communications.

The findings could ultimately change how these enzyme therapeutics are made, and substantially reduce the costs of treating patients. The novel technology manipulates processes inside the maize seed that "traffick" messenger RNAs to certain parts of the cell as a means of controlling the subsequent sugar processing of the therapeutic protein.

In this way, the researchers have been able to produce the enzyme drug in maize seeds. The product could ultimately be used as a disease therapeutic, although it is still "early days," says Kermode, and several research goals remain to be accomplished before this can become a reality.

Kermode says the success of the work underscores the power of multidisciplinary research that included contributions from SFU chemistry professor David Vocadlo, and from UBC Medical Genetics professor Lorne Clarke. It further underscores the importance of connections between SFU and Australia's Griffith University, through collaborative researchers Mark von Itzstein and Thomas Haselhorst.

"In 2005, we had the basis of our story worked out," says Kermode. "Taking it to the next level involved their precise analyses to determine the sugar residues on the therapeutic enzyme produced by the modified maize seeds.

"When we first looked at the sugar analysis data we were amazed at how well the 'mRNA-trafficking strategy' had worked, and the high fidelity of the process for controlling the sugar-processing of the therapeutic protein. This is critical as sugar processing influences the characteristics of a protein (enzyme) therapeutic, including its safety, quality, half-life in the bloodstream, and efficacy. The work could well extend to forming a platform for the production of other protein therapeutics."

Kermode also credits SFU research associate Xu He, the first author of the Nature Communications paper. Her funding sources included NSERC Strategic grants and a Michael Smith Foundation for Health Research Senior Scholar Award, and in related research, a Canadian Society for Mucopolysaccharide and Related Diseases grant.

###

Simon Fraser University is Canada's top-ranked comprehensive university and one of the top 50 universities in the world under 50 years old. With campuses in Vancouver, Burnaby and Surrey, B.C., SFU engages actively with the community in its research and teaching, delivers almost 150 programs to more than 30,000 students, and has more than 120,000 alumni in 130 countries.

Simon Fraser University
Public Affairs/Media Relations (PAMR)
778.782.3210 www.sfu.ca/pamr

Contact:

Allison Kermode, 778.782.3982; kermode@sfu.ca (note: limited availability today)

Marianne_Meadahl, PAMR, 778.782.9017; Marianne_Meadahl@sfu.cav

Simon Fraser University: Engaging Students. Engaging Research. Engaging Communities.



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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.


Growing corn to treat rare disease [ Back to EurekAlert! ] Public release date: 21-Sep-2012
[ | E-mail | Share Share ]

Contact: Allison Kermode
kermode@sfu.ca
778-782-3982
Simon Fraser University

The seeds of greenhouse-grown corn could hold the key to treating a rare, life-threatening childhood genetic disease, according to researchers from Simon Fraser University.

SFU biologist Allison Kermode and her team have been carrying out multidisciplinary research toward developing enzyme therapeutics for lysosomal storage diseases - rare, but devastating childhood genetic diseases for more than a decade.

In the most severe forms of these inherited diseases, untreated patients die in early childhood because of progressive damage to all organs of the body.

Currently, enzyme treatments are available for only six of the more than 70 diverse types of lysosomal storage diseases.

"In part because mammalian cell cultures have been the system of choice to produce these therapeutics, the enzymes are extremely costly to make, with treatments typically ranging from $300,000 to $500,000 per year for children, with even higher costs for adults," says Kermode, noting the strain on healthcare budgets in Canada and other countries is becoming an issue.

Greenhouse-grown maize may become a platform for making alpha-L-iduronidase, an enzyme used to treat the lysosomal storage disease known as mucopolysaccharidosis I, according to research published in this week's Nature Communications.

The findings could ultimately change how these enzyme therapeutics are made, and substantially reduce the costs of treating patients. The novel technology manipulates processes inside the maize seed that "traffick" messenger RNAs to certain parts of the cell as a means of controlling the subsequent sugar processing of the therapeutic protein.

In this way, the researchers have been able to produce the enzyme drug in maize seeds. The product could ultimately be used as a disease therapeutic, although it is still "early days," says Kermode, and several research goals remain to be accomplished before this can become a reality.

Kermode says the success of the work underscores the power of multidisciplinary research that included contributions from SFU chemistry professor David Vocadlo, and from UBC Medical Genetics professor Lorne Clarke. It further underscores the importance of connections between SFU and Australia's Griffith University, through collaborative researchers Mark von Itzstein and Thomas Haselhorst.

"In 2005, we had the basis of our story worked out," says Kermode. "Taking it to the next level involved their precise analyses to determine the sugar residues on the therapeutic enzyme produced by the modified maize seeds.

"When we first looked at the sugar analysis data we were amazed at how well the 'mRNA-trafficking strategy' had worked, and the high fidelity of the process for controlling the sugar-processing of the therapeutic protein. This is critical as sugar processing influences the characteristics of a protein (enzyme) therapeutic, including its safety, quality, half-life in the bloodstream, and efficacy. The work could well extend to forming a platform for the production of other protein therapeutics."

Kermode also credits SFU research associate Xu He, the first author of the Nature Communications paper. Her funding sources included NSERC Strategic grants and a Michael Smith Foundation for Health Research Senior Scholar Award, and in related research, a Canadian Society for Mucopolysaccharide and Related Diseases grant.

###

Simon Fraser University is Canada's top-ranked comprehensive university and one of the top 50 universities in the world under 50 years old. With campuses in Vancouver, Burnaby and Surrey, B.C., SFU engages actively with the community in its research and teaching, delivers almost 150 programs to more than 30,000 students, and has more than 120,000 alumni in 130 countries.

Simon Fraser University
Public Affairs/Media Relations (PAMR)
778.782.3210 www.sfu.ca/pamr

Contact:

Allison Kermode, 778.782.3982; kermode@sfu.ca (note: limited availability today)

Marianne_Meadahl, PAMR, 778.782.9017; Marianne_Meadahl@sfu.cav

Simon Fraser University: Engaging Students. Engaging Research. Engaging Communities.



[ 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.


Source: http://www.eurekalert.org/pub_releases/2012-09/sfu-gct092112.php

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Three Mile Island nuclear plant shuts down unexpectedly

Three Mile Island plant, scene of the worst nuclear power accident in the US, shut down automatically after failure of a coolant pump. Officials say the Three Mile Island shutdown poses no threat.

By Associated Press / September 21, 2012

The Three Mile Island nuclear power generating station in Middletown, Pa., shown here in a 2011 file photo, shut down automatically Thursday when a coolant pump failed. It's the second shutdown at the plant in two months.

Bradley C Bower/AP/File

Enlarge

A malfunctioning pump at the site of the worst nuclear power plant accident in U.S. history has triggered an automatic shutdown.

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Thursday's shutdown at Pennsylvania's?Three?Mile?Island?was the second in as many months. Government regulators and plant officials say it poses no threat to public health or safety. Operator Exelon Generation Co. says no detectable levels of radiation escaped.

The failure of a coolant pump tripped a computerized system that shuts downs the reactor. The Nuclear Regulatory Commission says once the reactor has cooled, plant workers can access the containment building and troubleshoot.

The plant also automatically shut down Aug. 22 while operators were manually shutting it down for repairs.

The plant is named after the?island?where it's located in the Susquehanna River. It had a partial meltdown of a reactor in 1979.

Source: http://rss.csmonitor.com/~r/feeds/csm/~3/sxFuVJLFDGQ/Three-Mile-Island-nuclear-plant-shuts-down-unexpectedly

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Thursday, September 20, 2012

Flying Humvees and Cluster Bombs From the Air Force Expo

There are always cool fight simulators on display at AFA; these things pay for themselves in fuel alone. The T-100 simulator isn't being shown in D.C. to sell simulators, though. Alenia Aeronautica wants to sell T-100 airplanes to replace the U.S. Air Force's current fleet of aging T-38 Advanced Jet Trainers. That replacement will happen in 2020.

Source: http://www.popularmechanics.com/technology/military/weapons/flying-humvees-and-cluster-bombs-from-the-air-force-expo?src=rss

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Israel: Mother suspected in deaths of 3 children

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1 Trend, 3 Ways: Blue Floral Dresses

Star moms-to-be including Camila McConaughey, Tori Spelling and Anna Paquin are rocking blue floral dresses. Check them out, plus our similar picks for every budget.

Source: http://feeds.celebritybabies.com/~r/celebrity-babies/~3/c086s_DOnIA/

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Wednesday, September 19, 2012

Hear The 'Prometheus' Engineer Speak In New Deleted Scene

Ever wondered what exactly the Engineer sounds like when he's talking to Peter Weyland and David in "Prometheus"? Well, wonder no more, because a deleted clip from the movie shows exactly that. The clip in question (below the jump) could be considered spoilery for those who haven't seen the movie, so venture forth with caution. [...]

Source: http://moviesblog.mtv.com/2012/09/18/prometheus-engineer-speak-deleted-scene/

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Green Blog: The Panda Vigil

On Sunday night, Brandie Smith, the curator of endangered giant pandas at the Smithsonian National Zoo in Washington, was at her computer, taking part in a charged conference call that revolved around a squawk.

?Did we hear a squeak? Was that a squeak?? she said in an interview, describing the back and forth.

With two other zoo officials, Dr Smith was counting the sounds ? all of them squeals ?like nothing you?ve ever heard before? ? before she and her colleagues were ready to make an announcement. ?Once you have a baby panda, the whole world gets involved,? she said.

In a video made on Sunday night, the mother, Mei Xiang, can be seen rustling in her dense nest of bamboo at 10:45 p.m. as she undergoes contractions.

?She gives birth,? said Don Moore, associate director of animal care sciences at the Smithsonian. ?She is startled by something on the floor ? that would be the cub ? and she reaches down and takes hold of it.?

Mei Xiang had last borne a cub in 2005, and the seven-year gap had given zookeepers little reason to hope that she would do so again. Her age, 14, and a series of pseudopregnancies that never resulted in offspring had led experts to estimate that she had less than a 10 percent chance of giving birth.

So until the new baby emerged ? ?about the size of a stick of butter,? Dr. Moore said ? officials were wary of trusting in the evident signs of pregnancy. Their uncertainty underlines the complex and somewhat uncharted nature of the captive breeding of panda bears.

First, there?s the delicate matter of courtship and mating. Having to rely on Mei Xiang?s mate, Tian Tian ? ?not the most confident breeder as a male,? Dr. Moore said ? has made impregnation challenging.

In the wild, female pandas go into heat and mate with several males. When they go into heat in captivity, only one candidate is often available, usually one that lives apart from the female. That means that zookeepers must watch to determine when the female is most receptive to the male?s advances.

But in the event that the singular male on site is ?shy,? as with Tian Tian, zoo officials may turn to artificial insemination. Pierre Comizzoli, a gamete biologist at the Smithsonian, was part of the insemination team that impregnated Mei Tiang with a batch of Tian Tian?s sperm that was frozen in 2005.

The team has a quality checklist. There must be a high density of sperm cells in the sample. The sperm need to move in a straight line. (Those that move in confused circles are less reliable.)

Anesthesia follows, and during her slumber, the female panda is inseminated. There?s an art to it all, but ?the biggest challenge is that we still need to better understand the basic physiology of these animals,? Dr. Comozzoli said.

While the panda has long been part of the public consciousness ? emblazoned, for example, on the W.W.F.?s crest ? the creatures can still befuddle experts.

A female panda can exhibit all the signs of a successful pregnancy ? raised hormone levels in her urine, weight gain and nesting behavior ? and not give birth at the end of it all. Since she is in heat only once a year, these pseudopregnancies work like an ?insurance policy for the real thing,? in case fertilization and implantation have actually occurred, researchers say.

But even when all goes well, the mother-to-fetus size ratio is so enormous that scientists must struggle to find the cub during ultrasound tests.

So Mei Xiang?s cub was not altogether expected. ?We are still giddy,? Dr.? Smith said. ?There?s still a little amazement and disbelief, a whole lot of elation. And then there?s the fact that we?re going to be watching this little cub growing up.?

It will be some time before zookeepers catch a glimpse. Mother pandas shield their young for weeks before they leave briefly to find food and water. But when Mei Xiang finally does go foraging, zookeepers will conduct the quickest possible physical exam ? even if they have to take a second timer with them, Dr. Smith joked.

Some commentators fault the publicity surrounding the birth as a ?cuteness overload? intended to encourage ?Pandamania? and draw zoo donations. But Dr. Comozzoli counters that panda births inspire hope and open a window onto the natural world. And then there are the research benefits.

?Our female didn?t reproduce for several years,? he said. ?So scientifically,? the birth ? is a huge source of information.?

Conservation-wise, the new cub joins a 350-strong pool of genetically diverse captive pandas, most of which are in China. The hope is that many could eventually be returned to the wild in China through programs that expose them to their natural bamboo forest habitat.

But for now, Dr. Moore said he simply rejoices in a small step forward. ?It?s good news, when the world has a lot of bad news,? he said.

Source: http://green.blogs.nytimes.com/2012/09/19/the-panda-vigil/?partner=rss&emc=rss

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