Friday, March 29, 2013

Study Ties Childhood Asthma to Combination of Genes and Wheezing Illness

Medindia Health News
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Study Ties Childhood Asthma to Combination of Genes and Wheezing Illness
Mar 29th 2013, 19:01


These children, all from families with a history of asthma or allergies, were nearly four times as likely to develop the disease as those who lacked the genetic variation and did not wheeze. The effects of each-the genetic variation and wheezing illness caused by a human rhinovirus infection-are not merely additive but also interactive, the authors say.

The genetic marker studied, a variation on chromosome 17, is common. Half of the children in the study had one copy and 25 percent had two. Colds caused by human rhinoviruses also are extremely common, affecting almost all infants. But the combination of genetic risk plus the wheezing response to rhinovirus infection by children under age 3 was tightly linked to the development of asthma by age 6.

"We found that the interaction between this specific wheezing illness and a gene or genes on a region of chromosome 17 determines childhood asthma risk," said study author Carole Ober, PhD, Blum-Riese Professor of Human Genetics at the University of Chicago. "The combination of genetic predisposition and the child''s response to this infection has a huge effect."

Wheezing caused by respiratory syncytial virus (RSV), a more serious but less common childhood infection, did not show this same interaction.

Several genome-wide association studies have linked asthma to genetic variation on a region of chromosome 17, referred to as 17q21. Although this variation applies primarily to early-onset asthma, it still "dwarfs every other asthma-related genetic risk factor," Ober said.

Exactly how the genes and viral infection interact to cause asthma is unclear. Two genes in the 17q21 region may play a role. One of them, known as ORMDL3, is the "most likely candidate," Ober said. The protein produced by ORMDL3 is found in the endoplasmic reticulum membrane, the same component of airway cells that rhinovirus uses to makes more copies of itself. Less is known about the function of the second gene, GSDMB.

The researchers studied two carefully monitored cohorts of children from families at high risk for asthma. All of the 200 children in the COAST cohort, based at the University of Wisconsin under the leadership of Robert Lemanske, MD, principal investigator of the project, had at least one parent with asthma, respiratory allergies, or both. They were followed from birth and evaluated for asthma at age 6. The 297 Danish children in the COPSAC cohort were born to mothers with asthma and evaluated for asthma at age 7.

The researchers first investigated the links between genes, wheezing with viral infection, and asthma in the COAST group, in which they found significant interactions. Less than 30 percent of children in this group who lacked the asthma-related genetic marker were subsequently diagnosed with the disease, compared to 40 percent of children with one at-risk allele and 50 percent with two. Children who had two copies of the asthma-related genetic variation also had far more HRV-related wheezing illnesses.

When the researchers combined both factors, the difference was striking. Only about 25 percent of children who had no wheezing illness from HRV developed asthma. About 40 percent of those who wheezed in the first three years of life but lacked the risk-related genes got asthma. That increased to nearly 60 percent for those with one copy of the asthma-related allele and to 90 percent for those with two copies.

Next they sought to replicate that finding in a similar group, but from a different continent. Although the overall asthma prevalence, based on slightly different criteria in the Danish cohort, was lower, the more-than-additive association between the at-risk genotype, wheezing illness in early life and asthma diagnosis persisted.

To see how exposure to HRV altered expression of genes associated with the 17q21 marker, the University of Chicago researchers recruited 100 normal adult volunteers, collected blood from them and exposed immune-system cells from the blood to HRV. The leading suspect, ORMDL3, had the most robust response, more than doubling its presence in exposed cells.

This result suggests that "higher expression of ORMDL3 may increase the efficiency of the infection or viral replication in respiratory epithelial cells," according to the study''s first author, Minal Çalışkan, a graduate student in Ober''s laboratory.

"This is the site where rhinovirus infection and replication occur," she explained. "Upregulation of this gene may lessen these cells'' ability to repair the airway after an HRV infection, a feature associated with asthma. Our next project is to look more closely at this process in airway epithelial cells."

What can parents do to prevent early onset asthma? At this point, "nothing that we know of," Ober said. Parents can''t prevent their children from catching colds, but "perhaps they could work with their pediatricians to find proactive ways to prevent wheezing in young children with the asthma genotype."

The National Institutes of Health supported this study, including funding for the COAST cohort. The Lundbeck Foundation, the Danish Council for Strategic Research and the Danish Pediatric Asthma Centre funded the COPSAC research unit. Additional authors include Michelle Stein, Gaixin Du and Dan Nicolae from the University of Chicago; Yury Bochkov, Daniel Jackson, James Gern and Robert Lemanske from the University of Wisconsin; and Eskil Kreiner-Møller, Klaus Bønnelykke and Hans Bisgaard from the University of Copenhagen.

Source-Newswise

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Is America Consuming Too Much Salt?

Medindia Health News
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Is America Consuming Too Much Salt?
Mar 29th 2013, 19:01

The love affair between U.S. residents and salt is making us sick. High sodium intake increases blood pressure, and leads to higher rates of heart attack and strokes. Nonetheless, Americans continue to ingest far higher amounts of sodium than those recommended by physicians and national guidelines. A balanced review of the relevant literature has been published in the March 27, 2013 edition of The New England Journal of Medicine.

Theodore A. Kotchen, M.D., professor of medicine (endocrinology), and associate dean for clinical research at the Medical College of Wisconsin, is the lead author of the article.Dr. Kotchen cites correlations between blood pressure and salt intake in a number of different studies; typically, the causation between lowering salt intake and decreased levels of blood pressure occur in individuals who have been diagnosed with hypertension. Although not as pronounced, there is also a link between salt intake and blood pressure in non-hypertensive individuals. Additionally, recent studies have demonstrated that a reduced salt intake is associated with decreased cardiovascular disease and decreased mortality.

In national studies in Finland and Great Britain, instituting a national salt-reduction program led to decreased sodium intake. In Finland, the resulting decrease in systolic and diastolic blood pressures corresponded to a 75 - 80 percent decrease in death due to stroke and coronary heart disease.Neverthelesss, not all investigators concur with population-based recommendations to lower salt intake, and the reasons for this position are reviewed.

"Salt is essential for life, but it has been difficult to distinguish salt need from salt preference," said Dr. Kotchen. "Given the medical evidence, it seems that recommendations for reducing levels of salt consumption in the general population would be justifiable at this time." However, in terms of safety, the lower limit of salt consumption has not beeen clearly identified. In certain patient groups, less rigorous targets for salt reduction may be appropriate.

Source-Eurekalert

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Mice Show Innate Ability to Vocalize: Research

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Mice Show Innate Ability to Vocalize: Research
Mar 29th 2013, 19:01

Mice might serve as a model for how humans learn to vocalize according to scientists. But new research led by scientists at Washington State University-Vancouver has found that, unlike humans and songbirds, mice do not learn how to vocalize. But the results, published in the current Journal of Neuroscience, point the way to a more finely focused, genetic tool for teasing out the mysteries of speech and its disorders.

To see if mice learn to vocalize, WSU neurophysiologist Christine Portfors took more than a dozen male mice and destroyed their ears' hair cells. The cells convert sound waves into the electrical signals processed by the brain, making hearing possible.The deaf mice were then raised with hearing mice in a normal social environment.Portfors and her fellow researchers, including WSU graduate student Elena Mahrt, used males because they are particularly exuberant vocalizers in the presence of females.

"We can elicit vocalization behavior in males really easily by just putting them with a female," Portfors said, "and they vocalize like crazy."And it turned out that it didn't matter if the mouse was deaf or not. The researchers catalogued essentially the same suite of ultrasonic sounds from both the deaf and hearing mice."It means that they don't need to hear to be able to produce their sounds, their vocalizations," Portfors said.

"�Basically, they don't need to hear themselves. They don't need auditory feedback. They don't need to learn."The finding means mice are out as a model to study vocal learning. However, scientists can now focus on the mouse to learn the genetic mechanism behind communications disorders."If you don't have learning as a variable, you can look at the genetic control of these things," Portfors said. "You can look at the genetic control of the output of the signal. It's not messed up by an animal that's been in a particular learning situation."

Source-Eurekalert

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Hispanics Live Longest, Whites Shortest Among Dialysis Patients: Study

Medindia Health News
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Hispanics Live Longest, Whites Shortest Among Dialysis Patients: Study
Mar 29th 2013, 19:01

According to a study, among kidney failure patients on dialysis, Hispanics tend to live the longest and Whites the shortest, with Blacks' survival time in between these two. The study is appearing in an upcoming issue of the Clinical Journal of the American Society of Nephrology (CJASN) Examining the reasons for these survival differences could help improve care for all patients with kidney disease.

While Blacks have a shorter average lifespan than Whites in the general US population, some studies indicate that among kidney failure patients on dialysis, Blacks tend to live longer than whites.

To investigate the issue further, Guofen Yan, PhD (University of Virginia School of Medicine) and her colleagues studied data from the United States Renal Data System pertaining to 1,282,201 adults undergoing dialysis between 1995 and 2009.

The researchers found that Hispanics were the least likely to die and non-Hispanic Whites were most likely to die over an average follow-up of 22.3 months. Blacks'' risk of dying was in between these two racial/ethnic groups. This pattern held true in all age groups, except for the youngest (18 to 30 years old), where there was a higher risk of dying for Blacks compared with non-Hispanic Whites.

"The survival advantage of racial/ethnic minorities on maintenance dialysis is one of the unresolved issues that has been around for some time and is of interest to health care providers, patients, and public policy," said Dr. Yan. She noted that several hypotheses exist to explain why Black and Hispanic dialysis patients tend to live longer than Whites in most age groups. It may be that Black and Hispanic patients with kidney disease are more likely to die before they develop kidney failure, and those surviving are generally healthier and hence more likely to live longer with kidney failure than Whites.

"Examining dialysis survival among racial and ethnic subgroups may help identify care disparities and outcome differences in chronic kidney disease. Continued effort to discern the factors responsible for the general survival advantage of Black and Hispanic dialysis patients may yield major clinical and public health implications for the kidney failure and kidney disease populations," said Dr. Yan.

Source-Newswise

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When a Viral Gene Is Deactivated Innate Immune System Can Kill HIV

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When a Viral Gene Is Deactivated Innate Immune System Can Kill HIV
Mar 29th 2013, 19:01


This phenomenon has been shown in test tube laboratory experiments, but now researchers at the University of North Carolina School of Medicine have demonstrated that the same phenomenon occurs in a humanized mouse model, suggesting a promising new target for tackling the virus, which has killed nearly 30 million people worldwide since it first appeared three decades ago.

A family of human proteins called APOBEC3 effectively restrict the growth of HIV and other viruses, but this action is fully counteracted by the viral infectivity factor gene (vif) in HIV. In the study, researchers intravenously infected humanized mice with HIV. They found that the most commonly transmitted strains of HIV are completely neutralized by APOBEC3 proteins when vif is removed from the virus.

"Without the vif gene, HIV can be completely destroyed by the body''s own immune system," said J. Victor Garcia, PhD, professor of medicine at the UNC School of Medicine and senior author on the study. "These results suggest a new target for developing drugs fully capable of killing the virus."

Garcia and his colleagues pioneered the humanized mouse model used for these studies. The aptly named "BLT" mouse is created by introducing human bone marrow, liver and thymus tissues into animals without an immune system of their own. The mice have a fully functioning human immune system and can be infected with HIV in the same manner as humans. In previous research, Garcia and his team have effectively prevented intravenous, rectal, vaginal and oral transmission of HIV in the mice with pre-exposure prophylaxis (PrEP).

For the current study, Garcia and his colleagues also infected BLT mice with another, highly harmful strain of the virus. The results show that this strain of HIV does continue to replicate, even without vif, but at a much slower rate and without harming the human immune system. Further, the researchers found that virus replication in this case was limited to one tissue-the thymus-in the entire body.

"These findings demonstrate a fundamental weakness in HIV," said John F. Krisko, PhD, lead author on the study. "If this weakness can be exploited, it might eventually lead to a cure for HIV/AIDS," Krisko said.

The study appears March 28 in the online journal PloS Pathogens.

Source-Newswise

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While Deaths Declined Hospital Infections in Cancer Patients Have Climbed: Study

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While Deaths Declined Hospital Infections in Cancer Patients Have Climbed: Study
Mar 29th 2013, 18:00


The findings suggest that diagnosis and management of healthcare-associated infection, or HAI, have improved over time.

The study appears in the current issue of the journal Cancer.

"Cancer patients often have surgery as part of their treatment and are at increased risk for developing healthcare-associated infection," says study lead author Jesse Sammon, D.O., with Henry Ford's Vattikuti Urology Institute.

"Ironically, they have often been left out of previous studies of healthcare-associated infection following surgery precisely because they're at higher risk of developing these infections."

HAIs are one of the most common and dangerous adverse consequences of hospitalization - but they are preventable. Under pressure from growing public awareness, at least 27 states have enacted laws as of 2010, requiring health systems and hospitals to report HAI rates.

This increased public awareness was due in large part to the 1999 publication of the Institute of Medicine's landmark report; To Err is Human, which compelled medicine to examine the depth and breadth of the HAI problem. And the medical field responded by adopting numerous guidelines and programs to better detect and prevent such infections.

The Henry Ford study suggests that those initiatives are working.

Drawing on the Nationwide Inpatient Sample database, researchers identified more than 2.5 million patients who had major cancer surgery for one of eight types of malignancies between 1999 and 2009. These included colectomy, cystectomy, esophagectomy, gastrectomy, hysterectomy, pneumonectomy, pancreatectomy and prostatectomy.

Among the patients, Dr. Sammon and his colleagues found that the incidence of HAI related to these surgeries increased 2.7 percent per year during the 10-year study period; but at the same time, the rate of deaths linked to the HAIs dropped 1.3 percent per year.

While those results are encouraging, Dr. Sammon said they are tempered by additional findings that socio-demographic factors such as race and insurance status continue to be serious national health policy concerns.

When compared to white patients, African Americans showed a 26 percent increase in HAI.

And if a patient's health care payments were made through Medicare or Medicaid - or if the patient was uninsured - the odds of HAI went up 18 percent to 67 percent.

Source-Eurekalert

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Toughest US Abortion Laws Introduced By North Dakota

Medindia Health News
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Toughest US Abortion Laws Introduced By North Dakota
Mar 29th 2013, 18:00


Republican Governor Jack Dalrymple signed a bill that bans any abortion after a fetal heart beat can be detected, typically around six weeks after conception when many women still don't realize they are pregnant.

There are no exceptions for rape, incest, the health of the mother or if she would lose the pregnancy anyway as a result of a fetal abnormality.

In the latest volley in the bitter US "culture war," Dalrymple also signed two bills which ban abortion because of genetic defects or for the purpose of gender selection, and would require doctors at the state's only abortion clinic to have admitting privileges at a nearby hospital.

North Dakota's Republican-dominated state legislature passed a law Friday that asks voters to amend the state constitution to define life as beginning at conception.

If ratified in a November 2014 election, the amendment would grant full legal protection to embryos and fetuses and could outlaw some forms of birth control, stem cell research and possibly in vitro fertilization.

The laws will undoubtedly prompt legal challenges -- but their supporters welcome any chance this gives them to overturn the US Supreme Court's landmark Roe vs. Wade decision legalizing abortion in 1973.

Dalrymple ordered the legislature to allocate funds to fight any legal challenges and expressed hope he may prevail with the fetal heartbeat bill.

"Although the likelihood of this measure surviving a court challenge remains in question, this bill is nevertheless a legitimate attempt by a state legislature to discover the boundaries of Roe v. Wade," he said.

"Because the US Supreme Court has allowed state restrictions on the performing of abortions and because the Supreme Court has never considered this precise restriction ... the constitutionality of this measure is an open question."

Pro-choice advocates insist the legislation will be overturned in court.

"This sweeping package of bills will not stand up to constitutional scrutiny," said Sarah Stoesz, president of Planned Parenthood in North Dakota, South Dakota and Minnesota.

"But as a result of North Dakota's leaders' disregard for women's health, the state will endure months and years of drawn-out litigation costing taxpayers hundreds of thousands of dollars," she warned.

The Supreme Court refused to review the Roe decision at the end of October, turning away a petition on an amendment to Oklahoma's state constitution that would have granted "personhood" to embryos.

Other cases dealing with abortion are expected to come before the court in the coming months as more states pass laws that place greater restrictions on the procedure.

Some 20 states have laws on the books to ban or heavily restrict abortion should the Supreme Court overturn Roe versus Wade, according to the Guttmacher Institute.

Meanwhile, 41 of the nation's 50 states have some type of gestational limit on when an abortion can be performed.

Most limit abortions after viability: the point where the fetus would be able to survive outside the womb. Others limit abortions after 20 to 24 weeks and the bulk allow for exceptions if a woman's life is threatened by the pregnancy.

Source-AFP

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