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Showing posts with label Genetic. Show all posts
Showing posts with label Genetic. Show all posts

Genetic Testing Market Outlook 2018

LONDON, Oct. 22, 2014 /PRNewswire/ -- A recent report, "Genetic Testing Market Outlook 2018", provides an in-depth analysis of the current and future genetic testing market. A comprehensive introduction of gene-based tests, their working principles and types are covered in this report. On account of our analysis of the past and present market trends; drivers; and existing strengths and challenges; forecast for genetic testing has been drawn, according to which, the market is likely to grow at a CAGR of around 9% during 2013-2018.

Our report is an outcome of extensive interaction with industry experts which has led us to portray the updated status of genetic testing in various therapeutic areas, major geographies and significant industry applications. The genetic testing industry has seen several new product launches, active research innovations, strategic activities, launch of new DTC tests, and wider therapeutic applications.

The report effectively illustrates the role of genetic testing in diseases such as Cancer, Cystic Fibrosis, and Alzheimer. It also incorporates the information on disease prevalence, available tests, and genes that cause a particular disease. An extensive research and reliable statistics in terms of market size, developments and future performance for emerging sectors namely, Next-Generation Sequencing, Whole Genome Sequencing, Non Invasive Prenatal Diagnostics, and Personalized Medicine have been covered in the report.

Genetic testing is growing in both developing and developed nations with both industry and research personnel highlighting the significance of molecular biology. The report provides comprehensive analytics of key developments for major markets including the U.S., Europe and Asian countries, and their market overview. Country level analysis depicts the level of penetration for genetic testing, types of tests available, consumer perspectives, regulatory stringency and future growth.

The report also profiles the ten most active genetic testing market players worldwide: Abbott Laboratories, Roche Diagnostics, Myriad Genetics, Life Technologies, Agilent, Hologic, Illumina, Qiagen, Cepheid, and Affymetrix.

Download the full report: https://www.reportbuyer.com/product/1182998/

About Reportbuyer
Reportbuyer is a leading industry intelligence solution that provides all market research reports from top publishers
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SOURCE ReportBuyer

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From DNA To Diagnosis: USTAR Center For Genetic Discovery To Integrate Genome Data Into Patient Care

University of Utah Health Sciences Logo. (PRNewsFoto/Huntsman Cancer Institute at the University of Utah)jwplayer.key="2kY/GKwZ2uQZmDlQ9VYArfZt2b4+KhHX3+DM4zisgtE=";SALT LAKE CITY, March 24, 2014 /PRNewswire-USNewswire/ -- The USTAR Center for Genetic Discovery is partnering with California based Omicia, Inc, to make analyzing a patient's genome as routine as performing a blood test. The center, co-directed by Mark Yandell, Ph.D., and Gabor Marth, D.Sc., was launched this month with $6 million from the University of Utah and the state-funded Utah Science Technology and Research (USTAR) initiative.

Compared to 10 years ago, sequencing the human genome has plummeted in cost by 1 million-fold and can be completed in a fraction of the time. Yet there are still barriers preventing DNA sequence information from routinely being incorporated into patient care.

"Current systems are not prepared for the increasing amounts of data we will be seeing within the next few years," said Marth, a computer scientist who was instrumental in the success of high profile projects such as the Human Genome Project, HapMap Project, and 1,000 Genomes Project. He relocated to the University of Utah from Boston College to apply his skills in a medical setting.

"At some point all of humanity will be sequenced, and potentially more than one genome per individual," he continued. Marth and Yandell will lead efforts to tame the big data to come not only from personal genomes, but also tumor genomes and "metagenomes" from infectious disease agents such as viruses and bacteria.

Knowing the DNA sequence of a cancer patient's tumor, for example, may reveal a personalized treatment plan for combating the disease. Pinpointing tiny sequence variations in personal genomes will expose inherited diseases that, in some cases, may be life-threatening.

"What we want to be able to do is help the kid who is born with a hard-to-diagnose genetic disorder," said Yandell. "Our genome interpretation tools will be able to identify that disorder and guide treatment."

Together with Omicia, Inc., the USTAR Center for Genetic Discovery is building a web accessible informatics platform, called Opal, to distill genome data to clinically relevant findings. Opal is powered by VAAST, a proven disease gene finder algorithm invented by Yandell. Launched less than two years ago, VAAST has successfully identified causes of inherited diseases, including hard-to-diagnose rare diseases, and is used at 251 institutions worldwide.

The USTAR Center for Genetic Discovery eventually anticipates commercializing its full suite of software tools, and becoming a top genomic health data service provider for medical centers nationwide.

Listen to an interview with Gabor Marth.

This news release was issued on behalf of Newswise(TM). For more information, visit http://www.newswise.com.

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SOURCE University of Utah Health Sciences

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Rare Genetic Variations May Account for Severe Reaction to LABA Drugs in Some Asthmatics

Wake Forest Baptist Medical Center logo. (PRNewsFoto/Wake Forest Baptist Medical Center HealthWire)jwplayer.key="2kY/GKwZ2uQZmDlQ9VYArfZt2b4+KhHX3+DM4zisgtE=";WINSTON-SALEM, N.C., Jan. 27, 2014 /PRNewswire-USNewswire/ -- More than 25 million people in the United States have asthma, a chronic lung disease that inflames and narrows the airways causing recurring periods of wheezing, chest tightness, shortness of breath and coughing.

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Although several types of drugs are available to treat asthma, long-acting beta agonists (LABAs) are among the most commonly used and work well for most people. However, for a small subgroup of people with asthma, LABAs can cause severe, life-threatening side effects and carry a boxed safety warning from the U.S. Food and Drug Administration.

The dilemma for doctors and researchers has been in determining who is at risk of a severe reaction to the drug so that alternative medications can be prescribed.

"This severe reaction only occurs in a very small percentage of people who have asthma, and we don't know what makes these people different from those who do well on this therapy," said Eugene Bleecker, M.D., director of the Center for Genomics and Personalized Medicine Research at Wake Forest Baptist Medical Center and senior author of the study, which is published in the Jan. 27 issue of Lancet Respiratory Medicine.

"We hypothesized that rare gene variants would account for uncommon and severe adverse responses to long-acting beta agonists. Because these variants occur less frequently, they have the potential to have a stronger influence on drug response."

In the National Institutes of Health-funded study, researchers at Wake Forest Baptist identified and evaluated six rare gene variants within the beta2-adrenergic receptor gene, the gene that may influence the response to beta agonist drugs. These rare variants were found through the sequencing of DNA from blood samples of 191 non-Hispanic white, 197 African-American and 73 Puerto Rican asthma patients.

The researchers found that African-American asthma patients had five rare variants, a far greater number compared to non-Hispanic white patients who only had one variant. The Puerto Rican patients had one variant, which had previously only been identified in African-Americans.

"Looking at different ethnic groups provides an opportunity to study rare variants that come with different ethnic ancestries. In general, older ancestral populations, such as Africans, have a higher frequency of rare genetic variants that could account for differences in responses to LABAs," said Victor Ortega, M.D., a pulmonary disease specialist at Wake Forest Baptist and first author of the study.

The researchers then evaluated 1,209 asthma patients to determine the impact of these variants on the risk of hospital admission for a severe asthma episode in the past year. They found that these rare variants significantly increased the risk for a hospital admission in asthma patients treated with a long-acting beta agonist. This association was not observed in those who were not treated with the drugs.

Further analysis was conducted on two variants for effects on additional health-care related outcomes. The research team found that these variants significantly increased urgent outpatient visits and treatment with oral or injectable steroids because of increased asthma symptoms in patients treated with a long-acting beta agonist.

Finally, the team looked at data on asthma symptoms and found non-Hispanic whites who had a rare variant were more than twice as likely to have uncontrolled symptoms during LABA therapy. The finding was replicated in a separate group of 516 non-Hispanic whites who were treated with LABAs at 12- and 24-month follow-up visits.

Non-Hispanic whites from both the primary and replication groups with this rare variant were more than twice as likely to experience uncontrolled, persistent symptoms during treatment with a long-acting beta agonist.

The research team concluded that screening for these rare variants is not recommended at this time until further research can be conducted to validate the group's findings. However, genetic testing may be helpful for severe asthmatics that are being treated with multiple therapies, including high-dose inhaled steroid and long-acting beta agonists, and are still uncontrolled and very symptomatic, according to Bleecker and Ortega.

With additional research, there is the potential to identify genetic biomarkers that could predict the best treatment option for people with asthma, a goal of personalized medicine, the authors said.

Co-authors of the study are Gregory Hawkins, Ph.D., Wendy Moore, M.D., Annette Hastie, Ph.D., Elizabeth Ampleford, Ph.D., Stephen Peters, M.D., and Deborah Meyers, Ph.D., of Wake Forest Baptist; William Busse, M.D., of University of Wisconsin; Mario Castro, M.D., of Washington University; Domingo Chardon, M.D., Federico Montealegre, Ph.D., Hospital Episcopal San Lucas, Ponce School of Medicine, Ponce, Puerto Rico; Serpil Erzurum, M.D., Cleveland Clinic Foundation; Elliot Israel, M.D., of Brigham and Women's Hospital; and Sally Wenzel, M.D., of University of Pittsburgh.

This research was supported by research funds from the National Institutes of Health grants U10 HL109164, RC2 HL101487, U01HL65899, R01HL76285, K12HL89992, U10HL098103 and NR013700.

SOURCE Wake Forest Baptist Medical Center

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