Showing posts with label studies. Show all posts
Showing posts with label studies. Show all posts

Sunday, 28 July 2013

First-ever small animal model of norovirus provides tool for future drug studies

Main Category: Infectious Diseases / Bacteria / Viruses
Also Included In: GastroIntestinal / Gastroenterology
Article Date: 24 Jul 2013 - 1:00 PDT Current ratings for:
First-ever small animal model of norovirus provides tool for future drug studies
not yet ratednot yet rated

An animal model of the human norovirus created at the University of Michigan Health System lays the groundwork for understanding the biology of the pesky virus and developing antiviral drug treatment.

Well-known as the virus that impacts cruise ship vacations, norovirus leads to misery on land too. The virus spreads quickly from person to person in any closed-in space, such as schools, nursing homes, or day-care centers.

"The first virus in this group was discovered in 1972 following a disease outbreak at a school in Norwalk, Ohio in 1968. Since then research has been underway to culture noroviruses in the laboratory and develop animal models," says lead researcher Christiane Wobus, Ph.D., assistant professor in the Department of Microbiology and Immunology at the University of Michigan Medical School.

An international group of scientists from the U.S. and Germany authored the study published in mBIO, a journal of the American Society of Microbiology.

"Norovirus research has been hampered by the absence of a norovirus cell culture and a genetically manipulable small animal model," Wobus says. "This new model gives us the tool to test potential antiviral compounds and may lay the foundation to culture these viruses in the lab."

The new model was developed by determining whether human noroviruses can infect "humanized" mice, this is mice containing human immune cells. These mice are widely used for study of the human immunodeficiency virus (HIV), a virus which can only infect human cells.

As a control researchers also included the same mice without human immune cells. In the study, both groups of mice were infected by human norovirus.

Additional studies determined that the immunodeficient background of this particular mouse strain is important in permitting human norovirus infection and identified macrophages, a vital immune cell in the body, as the cell type infected by the virus.

Very few particles of the virus can lead to infection. Estimates are as few as 18 particles can cause gastroenteritis (inflammation of the stomach and intestines) and lead to diarrhea, vomiting and stomach pain. In the U.S. norovirus causes approximately 21 million cases of acute gastroenteritis a year, and 800 deaths.

"Most people can cope with the symptoms, but deaths are more likely among the elderly mainly because of dehydration," Wobus says.

Only the common cold is more widespread than the norovirus, which can remain on surfaces for weeks, ready to cause more infections. Because it lacks a lipid envelope, norovirus is not susceptible to common disinfectants and alcohol-based sanitizers.

The economic impact of these infections is staggering with an economic cost for norovirus associated food-borne outbreaks alone of $5.8 billion in the U.S.

There is no vaccine for preventing norovirus infection and no drug to treat it. But the Centers for Disease Control and Prevention offers some tips for prevention, including handwashing with soap and water, washing fruits and vegetables properly and cleaning and disinfecting surfaces, and if you are sick not preparing food or caring for others.

Article adapted by Medical News Today from original press release. Click 'references' tab above for source.
Visit our infectious diseases / bacteria / viruses section for the latest news on this subject.

Additional authors: Taube, S.*, Kolawole, A.O.*, Höhne, M., Wilkinson, J.E., Handley, S.A., Perry, J.W., Thackray, LB., Akkina, R. *Both authors contributed equally.

Reference: "A Mouse Model for Human Norovirus,” mBIO 4:e00450-13.

Funding: National Institutes of Health grants AI080611; AI073255; AI0544483, U54 AI057160 and AI084887.

University of Michigan Health System

Please use one of the following formats to cite this article in your essay, paper or report:

MLA

University of Michigan Health System. "First-ever small animal model of norovirus provides tool for future drug studies." Medical News Today. MediLexicon, Intl., 24 Jul. 2013. Web.
24 Jul. 2013. APA

Please note: If no author information is provided, the source is cited instead.


'First-ever small animal model of norovirus provides tool for future drug studies'

Please note that we publish your name, but we do not publish your email address. It is only used to let you know when your message is published. We do not use it for any other purpose. Please see our privacy policy for more information.

If you write about specific medications or operations, please do not name health care professionals by name.

All opinions are moderated before being included (to stop spam). We reserve the right to amend opinions where we deem necessary.

Contact Our News Editors

For any corrections of factual information, or to contact the editors please use our feedback form.

Please send any medical news or health news press releases to:

Note: Any medical information published on this website is not intended as a substitute for informed medical advice and you should not take any action before consulting with a health care professional. For more information, please read our terms and conditions.



View the original article here

Saturday, 27 July 2013

New studies highlight benefits of EOS 3D imaging in assessing corrective bracing for scoliosis

Main Category: Bones / Orthopedics
Also Included In: Medical Devices / Diagnostics
Article Date: 27 Jul 2013 - 0:00 PDT Current ratings for:
New studies highlight benefits of EOS 3D imaging in assessing corrective bracing for scoliosis
not yet ratednot yet rated

EOS imaging (NYSE Euronext, FR0011191766-EOSI), the pioneer in orthopaedic 2D/3D imaging, have announced that two new studies supporting the use of its 3D imaging technology in assessing the impact of bracing for adolescent idiopathic scoliosis (AIS) have been published online in the European Spine Journal. Bracing is the preferred therapy for progressive scoliosis with a Cobb angle (curve) in the range of 20° to 45°, though current data on its efficacy in correcting spinal curvatures are inconclusive.

The first study, conducted by the Laboratoire de Biomécanique in Paris, France and published in June, used the EOS® System to obtain 3D images of the spines of 30 patients with AIS. It showed that there is high variability among individual patients in terms of the effectiveness of bracing on 3D Cobb angle and other key spinal parameters.[1] The second study, by clinicians at the Hospital for Sick Children in Toronto, Ontario and published in July, used 3D imaging provided by the EOS System to evaluate the immediate effects of two common braces on the spine, concluding that braces do differ in their treatment impact.[2]

Researchers in both studies noted that the low dose 3D imaging enabled by the EOS System allows for immediate control of the bracing as well as for the assessment of the disease progression and corrective impact of bracing treatment.

Marie Meynadier, CEO of EOS imaging, said, "Wearing a corrective brace can be quite challenging for young scoliotic patients, most of them teenage girls. We are pleased that the low dose and 3D capacity of the EOS System may offer a new tool for post-bracing control, as well as for the assessment of the efficacy of this treatment for a condition that affects millions of children and adults worldwide. The research demonstrates yet another clinical application in which the EOS System offers a new and superior method to evaluate a patient's specific orthopaedic condition and guide the treatment plan. Studies such as these continue to build awareness of the role our technology can play in advancing the understanding of spinal pathology."

Article adapted by Medical News Today from original press release. Click 'references' tab above for source.
Visit our bones / orthopedics section for the latest news on this subject.

1 Courvoisier A et al. 3D analysis of brace treatment in idiopathic scoliosis. Eur Spine J. 2013 Jun 29 [Epub ahead of print], via http://link.springer.com/article/10.1007%2Fs00586-013-2881-7

2 Lebel DE. Three dimensional analysis of brace biomechanical efficacy for patients with AIS. Eur Spine J. 2013 July 20 [Epub ahead of print] via http://link.springer.com/article/10.1007%2Fs00586-013-2921-3

The European Spine Journal is the official publication of EuroSpine, the Spine Society of Europe, and is the second highest rated spine scientific journal worldwide. For more information on the EOS System, the first and only full body, low dose 3D imaging technology available for orthopaedic care, please visit EOS imaging.

Please use one of the following formats to cite this article in your essay, paper or report:

MLA

imaging, EOS. "New studies highlight benefits of EOS 3D imaging in assessing corrective bracing for scoliosis." Medical News Today. MediLexicon, Intl., 27 Jul. 2013. Web.
27 Jul. 2013. APA

Please note: If no author information is provided, the source is cited instead.


'New studies highlight benefits of EOS 3D imaging in assessing corrective bracing for scoliosis'

Please note that we publish your name, but we do not publish your email address. It is only used to let you know when your message is published. We do not use it for any other purpose. Please see our privacy policy for more information.

If you write about specific medications or operations, please do not name health care professionals by name.

All opinions are moderated before being included (to stop spam). We reserve the right to amend opinions where we deem necessary.

Contact Our News Editors

For any corrections of factual information, or to contact the editors please use our feedback form.

Please send any medical news or health news press releases to:

Note: Any medical information published on this website is not intended as a substitute for informed medical advice and you should not take any action before consulting with a health care professional. For more information, please read our terms and conditions.



View the original article here