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Sunday, May 30, 2010

Contrast-enhanced MRI could lead to a more targeted therapy for rheumatoid and psoriatic arthritis

According to a new study contrast-enhanced magnetic resonance imaging (MRI) could help to differentiate between psoriatic and rheumatoid arthritis in hands and wrists.  Because in the past the treatment for patients with psoriatic arthritis was based on the treatment for those with rheumatoid arthritis the results of the study might lead to a more targeted therapy unique to each condition.
The study that took place at the University Hospital of Tubingen imaged using contrast-enhanced magnetic resonance imaging 31 patients with rheumatoid arthritis and 14 with psoriatic arthritis. The contrast media in rheumatoid and psoriatic arthritis is presumed to be different and the difference can only be seen 15 minutes after the contrast material is given.
“Our study revealed a significant difference in perfusion between those patients with rheumatoid arthritis and psoriatic arthritis after 15 minutes. However, since it was a small group of patients and there was an overlap in perfusion values between both types of arthritis, a diagnosis could not be led by contrast-enhanced MRI alone. Our results are nonetheless promising though,” said Nina Schwenzer, lead author of the study.

source:
healthyfeeds.com

Saturday, May 29, 2010

Chinese Boy is just 2yrs & Is World’s Youngest Smoker

Melbourne: A two-year-old Chinese boy is the world’’s youngest smoker. And it was Tong Liangliang’’s dad who taught him how to spark up between tantrums and milky vomits.
Chinese boy, 2, is world''s youngest smoker
Liangliang’’s dad said his son was born with a hernia, and being too young for an operation, has taken up smoking to help him deal with the pain.
“The father wasn”t aware how serious the toddler’’s habit had become until the child began to increase the number of cigarettes he smoked per day,” News.com.au quoted news agency CRI as saying.
However, The Guinness Book of World Records may not accept the feat, as it has refused such requests before on the grounds that it “promoted a harmful habit”. (ANI)

source:
http://www.indiannews1.com

Friday, May 28, 2010

Changing weather may affect our health

It is true that we change with weather at least regarding health and state of mind. We all are influenced more or less by temperature variations.

Arthritis symptoms worsen 
Human body is equipped with sensory receptors that sense external temperature variations as well as atmospheric pressure changes. As these receptors are highly sensible to climate changes they can influence pain sensation. Namely when weather changes, pain rising from already existing illnesses worsens. That is why rheumatics are natural thermometers and barometers. Person suffering from arthrosis, rheumatoid arthritis, ankylosing spondylitis experience greater articular pain.
Increased heart arrest risk
During winter, approximately half of hypertension persons fatalities are caused by heart arrest due the blood vessels contractions when exposed to cold. In the case of arteriosclerosis sufferings, blood vessel contraction can lead to occlusion. When temperatures lower above 4 degree Celsius (39F) risk of cardiac problems rises with 115% while high temperature variations increase the risk with 140%
Asthma attacks are more frequent
Strong wind has a negative effect upon asthma sufferings. Cold an dry air irritates the already sensible mucosa, leading to violent spasms. Muscles that surround the bronchi stiffen limiting air flow and creating respiratory difficulties.

source: healthyfeeds.com

Thursday, May 27, 2010

New technique could help millions suffering from arthritis and osteoporosis

French researchers developed a revolutionary technique for administering bone repairing drugs which could help millions suffering from arthritis and osteoporosis.
Researchers from Strasbourg University hope the new technique will help bone and cartilage recovery thanks to the implant that gradually releases the necessary drugs (growth hormone drugs) into the body.
The new technique developed by the University of Strasbourg was tested only in the laboratory and on animals. This discovery is especially important to the elderly because in their case broken bones heal slower and may lead to permanent disability and even death.

source :healthyfeeds.com

Friday, May 21, 2010

It's Alive! Artificial Life Springs From Manmade DNA

A team of scientists create the first real-life "Frankenstein" by injecting man-made DNA into a previously lifeless cell.
 THE GIST
  • Scientists report the first successful implantation of fully synthetic genome.
  • The manmade genome was more than one million base pairs long.
  • The step could help lead to cheaper drugs, vaccines, and biofuels. 
It may not quite be "Frankenstein," but for the first time scientists have created an organism controlled by completely manmade DNA.
Using the tools of synthetic biology, scientists from the J. Craig Venter Institute installed a completely artificial genome inside a host cell without DNA. Like the bolt of lightening that awakened Frankenstein, the new genome invigorated the host cell, which began to grow and reproduce, albeit with a few problems.
The research marks a technical milestone in the synthesis and implantation of artificial DNA. Venter, along with dozens of other companies and researchers in the same field, expects the research will lead to cheaper drugs, vaccines and biofuels in several years.

"This is the first synthetic cell that's been made," said Venter. "We call it synthetic because the cell is totally derived from a synthetic chromosome, made with four bottles of chemicals on a chemical synthesizer, starting with information in a computer."
The research, published today in the journal Science, combines two of Venter's past achievements.
In 2007 Venter transplanted the genome of one Mycoplasma bacterium into another. Venter and his colleagues also synthesized a trimmed down, artificial version of Mycoplasma's DNA, a project known as the Minimal Genome Project. Attempts to implant the synthetic DNA all failed, until now.



In the current research Venter and his colleagues, which includes Nobel laureate Hamilton Smith, first synthesized Mycoplasma's full genome. Then they added hundreds of thousands of additional base pairs to "watermark" the DNA to distinguish it from a natural one.
Venter and his colleagues created a special code, similar to Morse code, to "write" within the DNA itself. Instead of dots and dashes, they used the sequence of four DNA nucleotides, thymine (T), guanine (G), cytosine (C), and adenine (A), as a code for any letter, number or punctuation mark. Using the code, the team included the names of the study co-authors, a website, and even several philosophical quotes, complete with punctuation.
The completed DNA sequence was more than one million base pairs long. The human genome, by comparison, is more than three billion base pairs long.
No machine can turn out a single piece of DNA anywhere close to that long, however. Instead, Venter and his colleagues started with many relatively small pieces of DNA. Then the scientists transferred DNA pieces back and forth between a yeast cell and E. coli bacteria, turning the many short pieces into fewer but longer DNA segments.
Once the synthetic DNA segment reached the desired length the scientists injected it into a Mycoplasma bacterium that had had its own DNA removed earlier. Needless to say, the process of assembling such a lengthy piece of synthetic DNA was complicated.
"I hope the day comes when making genomes is something everyone can do," said Pamela Silver, a systems biologist at Harvard Medical School.
The new, synthetic DNA "booted up" the bacterium, but not without a few problems; several of the synthesized genes didn't work properly. And the genes that did work didn't do anything particularly useful, at least by human standards.
The Mycoplasma bacteria grew and reproduced, but that was about all. Within several years however, Venter, along with dozens of other researchers and companies, hope to create more exciting bacteria that will speed up the production and drive down the costs of biofuels, vaccines and drugs.
Venter has teamed up with a major oil and gas company, and a pharmaceutical company, to help realize these goals.
Venter's work falls into a nascent field of science known as synthetic biology. Synthetic biology builds on the decades-old field of genetic engineering. Unlike genetic engineering, where scientists introduce a handful of new genes into an organism, synthetic biology aims to reprogram entire organisms, including bacteria and viruses.
The creation and insertion of a synthetic genome more than one million base pairs is a technical landmark, said Frances Arnold, a synthetic biologist at the California Institute of Technology in Pasadena. He says the feat showcases scientists' ability to precisely manipulate long sections of DNA.
But before consumers see any benefit several significant hurdles have to be solved. One of the biggest problems is that scientists are still searching for the specific genetic code to produce cheap drugs, biofuel and other products.
"We can write anything we want," said Arnold. "The problem is that we don't know what to write."

also video on:
http://news.discovery.com/videos/tech-synthetic-life-becomes-reality.html


 

The gene that causes Duchenne muscular dystrophy can be repaired

The gene that causes Duchenne muscular dystrophy 1), a hereditary disease affecting one in 3500 males, can be repaired according to researchers from Universite Laval’s Faculty of Medicine and the CHUQ Research Center.
Researchers performed in vitro tests by inserting into human muscle cells a variety of meganucleases, enzymes with the ability to correct the dystrophin gene, and also in vivo with mice carrying the mutation that causes the illness. Both series of testing showed that the meganucleases can lead to a restoration of the normal nucleotide sequences of the dystrophin gene and its expression in muscle cells.
A number of hurdles must be overcome before this approach can be tested in humans, cautions Dr. Jacques P. Tremblay who led the team of researchers. “It must first be proven in laboratory animals that it is possible to insert a meganuclease targeting the dystrophin gene directly into muscle cells, and that this will induce the synthesis of dystrophin able to attach to the muscle fiber membrane,” explains the researcher. “We’re still two to three years away from this stage,” he estimates. “Subsequent stages, including human trials, could take even longer,” adds Dr. Tremblay.
1 Duchenne muscular dystrophy is characterized by a rapid progression of muscle degeneration that begins in early childhood leading to loss of ambulation and even death.

source:
healthy feeds.com

Wednesday, May 19, 2010

Sulforaphane from broccoli can inhibit breast cancer stem cells

Researchers at the University of Michigan Comprehensive Cancer Center studied the effectiveness of sulforaphane1) in targeting and killing breast cancer stem cells on both mice and cell cultures with promising results.  In the study the sulforaphane extracted from broccoli sprouts prevented new tumors from growing.
“Sulforaphane has been studied previously for its effects on cancer, but this study shows that its benefit is in inhibiting the breast cancer stem cells. This new insight suggests the potential of sulforaphane or broccoli extract to prevent or treat cancer by targeting the critical cancer stem cells,” says Duxin Sun2).
After injecting various concentrations of sulforaphane in mice with breast cancer, researchers measured the number of cancer stem cells in the tumors. The findings showed a decrease in the cancer stem cell population after treatment with sulforaphane, with little effect on the normal cells. Also, the cancer cells from mice treated with sulforaphane were unable to generate new tumors. Similar results were obtained after the researchers tested sulforaphane on human breast cancer cell cultures.
“This research suggests a potential new treatment that could be combined with other compounds to target breast cancer stem cells. Developing treatments that effectively target the cancer stem cell population is essential for improving outcomes,” says Max S. Wicha3).
1) Sulforaphane is a organosulfur compound obtained from cruciferous vegetables
2) Duxin Sun, Ph.D – study author – is an associate professor of pharmaceutical sciences at the U-M College of Pharmacy and a researcher with the U-M Comprehensive Cancer Center
3) Max S. Wicha, M.D. – study author – is a Distinguished Professor of Oncology and director of the U-M Comprehensive Cancer Center.

source:
healthy feeds.com