03 February, 2011

NIH researchers identify genetic cause of new vascular disease. Rare disease is first discovered in Undiagnosed Diseases Program

 

Clinical researchers at the National Institutes of Health's Undiagnosed Diseases Program (UDP) have identified the genetic cause of a rare and debilitating vascular disorder not previously explained in the medical literature. The adult-onset condition is associated with progressive and painful arterial calcification affecting the lower extremities, yet spares patients’ coronary arteries. The new disease finding was published today in the New England Journal of Medicine.

The rare arterial condition caused by calcium buildup in arteries below the waist and in the joints of patient’s hands and feet has been observed in nine individuals from three unrelated families, who are the only people known to have the disorder. The researchers refer to the condition as ACDC, or arterial calcification due to CD73 deficiency. Although symptoms of the disorder include leg and joint discomfort, medical evaluations of the patients ruled out rheumatoid arthritis or other joint-related problems. Genetic analyses performed by the NIH researchers suggested a novel disorder and pinpointed the cause of the condition as mutations, or variants, in the NT5E gene.

"This is the first novel disease discovery identified through the collaborative and interdisciplinary approach employed by clinical researchers in the NIH Undiagnosed Diseases Program," said NIH Director Francis S. Collins, M.D., Ph.D. "This disorder previously baffled the medical field and evaded diagnosis when conventional methods were used."

The NIH clinical researchers examined members of two families with the arterial calcification disorder as part of the UDP, and identified a third case outside the country. Seven medical cases like those described in this study have been reported in medical journals over the past century, but these previous studies did not include any insights about the molecular basis of the disorder.

“This study shows that genomic tools are a powerful ally in our search to discover and understand rare diseases,” said Eric D. Green, M.D., Ph.D., director of the National Human Genome Research Institute.

The UDP program, entering its third year, receives medical referrals from around the country when cases challenge the diagnostic know-how and resources of the medical community at large. Patients enrolled in the program undergo extensive medical diagnostic testing and evaluation at the NIH Clinical Center in Bethesda, Md.

Members of two of the three families reported in this study were enrolled and examined as part of the UDP. The patients experienced pain and cramping in the calves, thighs, buttocks and feet due to poor circulation. MRIs and x-rays of the patients’ vasculature indicated calcium deposits in artery walls. For one of the patients, advancement of the condition had been treated with surgeries to reroute blood flow through alternate vessels, as well as a joint amputation in the foot. Peripheral blood vessels compensate to some extent for diminished blood flow in affected arteries.

In one of the families with five affected siblings, clinical researchers suspected a recessive inheritance, in which offspring receive two copies of a gene variant — one from each parent — that produces disease symptoms only when combined. The researchers analyzed DNA from all members of the family to compare the parents’ DNA to that of their affected children. This allowed researchers to detect genomic regions where the siblings’ DNA contained two copies of a particular DNA segment compared to their parents’ DNA, which contained just a single copy.

The comparison revealed one such region, which the researchers subsequently analyzed for sequence variants not present in a population of 200 unaffected people. The siblings all had the same variant in a gene called NT5E. This gene normally makes the CD73 protein, which produces a small molecule, adenosine, which protects the arteries from calcifying. The researchers also detected variants in NT5E in all the other affected patients in the study. The researchers performed laboratory tests to characterize the molecular basis of the arterial calcification disorder and to validate various molecular activities in cells with NT5E variants.

"We were able to illustrate that elevated activity of a key enzyme in tissue calcification, called TNAP, was due to the lack of extracellular adenosine," said lead author Cynthia St. Hilaire, Ph.D., a postdoctoral fellow at the National Heart, Lung, and Blood Institute (NHLBI). In turn, TNAP degrades an inhibitor of calcification, called pyrophosphate. The researchers therefore tied the elevation in TNAP activity with increases in arterial calcification. They also suggest that the location of calcification may correspond to the distribution of specific adenosine receptors in the body.

"Vascular calcification often results from poor diet and lack of exercise," said co-author William A. Gahl, M.D., Ph.D., NHGRI clinical director and director of the NIH Undiagnosed Diseases Program. "The calcium buildup in arteries of our patients, however, arises because the systems to inhibit it are not working in their cells. We hope that an understanding of this faulty mechanism will guide us in providing helpful treatments for these patients."

"The diagnosis of this faulty gene is the first molecular description of this disorder," said Manfred Boehm, M.D., lead senior author and NHLBI investigator. "In addition to providing insight for this unique patient group and their physicians, the study has placed this condition among disorders it resembles, adding to our knowledge of vascular biology."

In addition to NHGRI and NHLBI, the study included researchers from the NIH Office of Rare Disease Research; the NIH Clinical Center; St. John the Baptist Hospital, Turin, Italy; University of California, San Francisco; and Great Ormond Street Hospital-University College, London.

The NIH Undiagnosed Diseases Program, under way since May 2008, is an initiative jointly led by the NHGRI, the NIH Clinical Center and the NIH Office of Rare Diseases Research that draws upon numerous areas of medical and basic research specialization within the NIH. More than 200 medical cases have been enrolled from among more than 1,200 sets of patient records submitted by patients seeking answers to mysterious disorders. The program’s goal is to provide answers to patients with difficult-to-diagnose conditions and to advance medical knowledge about both rare and common diseases.

Photos, video and background related to this news item are available here: http://www.genome.gov/27543153.

The NIH Undiagnosed Diseases Program, under way since May 2008, is an initiative jointly led by the NHGRI, the NIH Clinical Center and the NIH Office of Rare Diseases Research that draws upon numerous areas of medical and basic research specialization within the NIH. More than 200 medical cases have been enrolled from among more than 1,200 sets of patient records submitted by patients seeking answers to mysterious disorders. The program’s goal is to provide answers to patients with difficult-to-diagnose conditions and to advance medical knowledge about both rare and common diseases. For more information, visit rarediseases.info.nih.gov/undiagnosed.

NHGRI is one of the 27 institutes and centers at the NIH, an agency of the Department of Health and Human Services. The NHGRI Division of Intramural Research develops and implements technology to understand, diagnose and treat genomic and genetic diseases. Additional information about NHGRI can be found at its website, www.genome.gov.

Part of the National Institutes of Health, the National Heart, Lung, and Blood Institute (NHLBI) plans, conducts, and supports research related to the causes, prevention, diagnosis, and treatment of heart, blood vessel, lung, and blood diseases; and sleep disorders. The Institute also administers national health education campaigns on women and heart disease, healthy weight for children, and other topics. NHLBI press releases and other materials are available online athttp://www.nhlbi.nih.gov/.


The National Institutes of Health (NIH) — The Nation's Medical Research Agency — includes 27 Institutes and Centers and is a component of the U.S. Department of Health and Human Services. It is the primary federal agency for conducting and supporting basic, clinical and translational medical research, and it investigates the causes, treatments, and cures for both common and rare diseases. For more information about NIH and its programs, visit www.nih.gov.

Source:NIH

27 January, 2011

Clinica Verde

Welcome to Clínica Verde

Thanks for stopping by – we appreciate your interest in our work. Clínica Verde is creating an environmentally sustainable prototype for a health clinic in Nicaragua that can be replicated throughout the world.

This nonprofit effort joins experienced professionals in the areas of healthcare and the built environment to address and combat the problems related to health among the impoverished. Our work is twofold: to respond to the health needs of the community while designing a structure for clinical care that incorporates the highest possible standard in sustainable building practices and good design.

We are guided by the belief that everything we do and produce as a response to poverty and human suffering should acknowledge the dignity and potential of all life while demonstrating respect for the shared resources of our world.

The architect William McDonough wrote that "design is a signal of intention." In that sense, the design of the clinic prototype should signal love and respect, a shared sense of responsibility and awareness. It should manifest an intention rooted in our faith of interconnectedness and interdependency. It is a powerful opportunity to express gratitude and hope in the world.
Clinica Verde

Acute Myeloid Leukemia Support Group | Cancers

Acute myeloid leukemia is a cancer of the myeloid line of cells in the bone marrow - the abnormal cells proliferate and slow down the production of normal blood cells.

Join our online support group for acute myeloid leukemia to meet others dealing with the condition and people who can help.
Acute Myeloid Leukemia Support Group | Cancers

Experiencing Pain As Music – New Frontiers Of Pain Relief

The discovery of a gene, possibly crucial to pain relief, opens up new vistas of treatment, enabling us to experience pain as music.

For the gene seems to be involved in cross-sensory activation, a phenomenon known as synesthesia. It is a condition that leads to sensations of one kind being perceived as another - like words or numbers perceived as colours – say number 7 as the colour yellow – or colours heard as music.


The discovery was a result of Australian-Austrian collaboration. Dr Greg Neely of the Garvan Institute of Medical Research, led the project with Professor Josef Penninger, while at the Institute of Molecular Biotechnology of the Austrian Academy of Sciences in Vienna. The research was published in a recent issue of Cell.

Experiencing Pain As Music – New Frontiers Of Pain Relief

25 January, 2011

Transcatheter Aortic Valve Implantation through the Ascending Aorta: An Alternative Option for No-Access Patients

a surgical video presentation from Dr. Robert Bauernschmitt

Stop Smoking To live Better

Avoiding Medication Mistakes



Taking the wrong medication or the wrong dose can be an easy mistake to make. It can also be life threatening. In this Consumer Update video, FDA Drug Safety Expert, Cindi Fitzpatrick, R.N., provides tips on avoiding medication mistakes.
Source:FDA

Avoiding Drug Interactions


There are three main types of drug interactions: drugs with food and beverages, drugs with dietary supplements, and drugs with other drugs. In this Consumer Update video, Shiew-Mei Huang, Ph.D., Deputy Director of FDA's Office of Clinical Pharmacology, provides tips on how to avoid harmful drug interactions.
Courtesy:FDA

24 January, 2011

NSTA Learning Center

NSTA Professional Development

Welcome to Your Professional Development
The Learning Center is NSTA's e-professional development (PD) portal to help you address your classroom needs and busy schedule. You can gain access to more than 5,900 different resources, of which over 1,800 are free. A suite of practical tools such as My Library, My PD Record, and My PD Plan and Portfolio help you organize and document your PD growth. Create your free account and watch the overview.

NSTA Learning Center

Full-Body CT Scans - What You Need to Know

(Picture of a CT Scan Control Area)

Using a technology that "takes a look" at people's insides and promises early warnings of cancer, cardiac disease, and other abnormalities, clinics and medical imaging facilities nationwide are touting a new service for health-conscious people: "Whole-body CT screening." This typically involves scanning the body from the chin to below the hips with a form of X-ray imaging that produces cross-sectional images.

The technology used is called "X-ray computed tomography" (CT), sometimes referred to as "computerized axial tomography" (CAT). A number of different types of X-ray CT systems are being promoted for various types of screening. For example, "multi-slice" CT (MSCT) and "electron beam" CT (EBCT) - also called "electron beam tomography" (EBT) - are X-ray CT systems that produce images rapidly and are often promoted for screening the buildup of calcium in arteries of the heart.

CT, MSCT and EBCT all use X-rays to produce images representing "slices" of the body - like the slices of a loaf of bread. Each image slice corresponds to a wafer-thin section which can be viewed to reveal body structures in great detail.

Image of a patient entering a CT scanning machine

CT is recognized as an invaluable medical tool for the diagnosis of disease, trauma, or abnormality in patients with signs or symptoms of disease. It's also used for planning, guiding, and monitoring therapy. What's new is that CT is being marketed as a preventive or proactive health care measure to healthy individuals who have no symptoms of disease.

No Proven Benefits for Healthy People

Taking preventive action, finding unsuspected disease, uncovering problems while they are treatable, these all sound great, almost too good to be true! In fact, at this time the Food and Drug Administration (FDA) knows of no scientific evidence demonstrating that whole-body scanning of individuals without symptoms provides more benefit than harm to people being screened. The FDA is responsible for assuring the safety and effectiveness of such medical devices, and it prohibits manufacturers of CT systems to promote their use for whole-body screening of asymptomatic people. The FDA, however, does not regulate practitioners and they may choose to use a device for any use they deem appropriate.

Compared to most other diagnostic X-ray procedures, CT scans result in relatively high radiation exposure. The risks associated with such exposure are greatly outweighed by the benefits of diagnostic and therapeutic CT. However, for whole-body CT screening of asymptomatic people, the benefits are questionable:

  • Can it effectively differentiate between healthy people and those who have a hidden disease?
  • Do suspicious findings lead to additional invasive testing or treatments that produce additional risk with little benefit?
  • Does a "normal" finding guarantee good health?

Many people don't realize that getting a whole body CT screening exam won't necessarily give them the "peace of mind" they are hoping for, or the information that would allow them to prevent a health problem. An abnormal finding, for example, may not be a serious one, and a normal finding may be inaccurate. CT scans, like other medical procedures, will miss some conditions, and "false" leads can prompt further, unnecessary testing.Image of a patient entering a CT scanning device

Points to consider if you are thinking of having a whole-body screening:
  • Whole-body CT screening has not been demonstrated to meet generally accepted criteria for an effective screening procedure.
  • Medical professional societies have not endorsed whole-body CT scanning for individuals without symptoms.
  • CT screening of high-risk individuals for specific diseases such as lung cancer or colon cancer is currently being studied.
  • The radiation from a CT scan may be associated with a very small increase in the possibility of developing cancer later in a person's life.
  • The FDA provides additional information regarding whole-body CT screening on its Computed Tomography (CT) Web site.
FDA's Recommendation:

Before having a CT screening procedure, carefully investigate and consider the potential risks and benefits and discuss them with your physician.

Source:FDA

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