Could exposure to air pollution early on permanently change our brains? That's what scientists are seeing in animal studies and it may offer clues as to how air quality is affecting human growth and development.
A new study published in the journal Environmental Health Perspectives describes how early exposure to air pollution produces harmful changes in the brains of mice, including an enlargement of part of the brain that is seen in humans who have autism and schizophrenia.
As in autism and schizophrenia, the changes occurred predominately in males. The mice also performed poorly in tests of short-term memory, learning ability, and impulsivity.
The new findings are consistent with several recent studies that have shown a link between air pollution and autism in children. Most notably, a 2013 study in JAMA Psychiatry reported that children who lived in areas with high levels of traffic-related air pollution during their first year of life were three times as likely to develop autism. "Our findings add to the growing body of evidence that air pollution may play a role in autism, as well as in other neurodevelopmental disorders," said Deborah Cory-Slechta, Ph.D., professor of Environmental Medicine at the University of Rochester and lead author of the study.
In three sets of experiments, Cory-Slechta and her colleagues exposed mice to levels of air pollution typically found in mid-sized U.S. cities during rush hour. The exposures were conducted during the first two weeks after birth, a critical time in the brain's development. The mice were exposed to polluted air for four hours each day for two four-day periods.
In one group of mice, the brains were examined 24 hours after the final pollution exposure. In all of those mice, inflammation was rampant throughout the brain, and the lateral ventricles -- chambers on each side of the brain that contain cerebrospinal fluid -- were enlarged two-to-three times their normal size.
"When we looked closely at the ventricles, we could see that the white matter that normally surrounds them hadn't fully developed," said Cory-Slechta. "It appears that inflammation had damaged those brain cells and prevented that region of the brain from developing, and the ventricles simply expanded to fill the space."
The problems were also observed in a second group of mice 40 days after exposure and in another group 270 days after exposure, indicating that the damage to the brain was permanent. Brains of mice in all three groups also had elevated levels of glutamate, a neurotransmitter, which is also seen in humans with autism and schizophrenia.
Most air pollution is made up mainly of carbon particles that are produced when fuel is burned by power plants, factories, and cars. For decades, research on the health effects of air pollution has focused on the part of the body where its effects are most obvious -- the lungs. That research began to show that different-sized particles produce different effects. Larger particles -- the ones regulated by the Environmental Protection Agency (EPA) -- are actually the least harmful because they are coughed up and expelled. But many researchers believe that smaller particles known as ultrafine particles -- which are not regulated by the EPA -- are more dangerous, because they are small enough to travel deep into the lungs and be absorbed into the bloodstream, where they can produce toxic effects throughout the body.
That assumption led Cory-Slechta to design a set of experiments that would show whether ultrafine particles have a damaging effect on effect on the brain, and if so, to reveal the mechanism by which they inflict harm. Her study published today is the first scientific work to do both.
"I think these findings are going to raise new questions about whether the current regulatory standards for air quality are sufficient to protect our children," said Cory-Slechta.
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Showing posts with label autism. Show all posts
Showing posts with label autism. Show all posts
Tuesday, June 17, 2014
Friday, December 06, 2013
Air pollution and genetics combine to increase risk for autism
Exposure to air pollution appears to increase the risk for autism among people who carry a genetic disposition for the neurodevelopmental disorder, according to newly published research led by scientists at the Keck School of Medicine of USC.
“Our research shows that children with both the risk genotype and exposure to high air pollutant levels were at increased risk of autism spectrum disorder compared to those without the risk genotype and lower air pollution exposure,” said the study’s first author, Heather E. Volk, PhD, MPH, assistant professor of research in preventive medicine and pediatrics at the Keck School of Medicine of USC and principal investigator at The Saban Research Institute of Children's Hospital Los Angeles.
Autism spectrum disorder (ASD) is a lifelong neurodevelopmental disability characterized by problems with social interaction, communication and repetitive behaviors. The Centers for Disease Control and Prevention estimates that one in 88 children in the United States has an ASD.
ASD is highly heritable, suggesting that genetics are an important contributing factor, but many questions about its causes remain. There currently is no cure for the disorder.
“Although gene-environment interactions are widely believed to contribute to autism risk, this is the first demonstration of a specific interaction between a well-established genetic risk factor and an environmental factor that independently contribute to autism risk,” said Daniel B. Campbell, Ph.D., assistant professor of psychiatry and the behavioral sciences at the Keck School of Medicine of USC and the study’s senior author. “The MET gene variant has been associated with autism in multiple studies, controls expression of MET protein in both the brain and the immune system, and predicts altered brain structure and function. It will be important to replicate this finding and to determine the mechanisms by which these genetic and environmental factors interact to increase the risk for autism.”
Independent studies by Volk and Campbell have previously reported associations between autism and air pollution exposure and between autism and a variant in the MET gene. The current study suggests that air pollution exposure and the genetic variant interact to augment the risk of ASD.
Campbell and Volk’s team studied 408 children between 2 and 5 years of age from the Childhood Autism Risks From Genetics and the Environment Study, a population-based, case-control study of preschool children from California. Of those, 252 met the criteria for autism or autism spectrum disorder. Air pollution exposure was determined based on the past residences of the children and their mothers, local traffic-related sources, and regional air quality measures. MET genotype was determined through blood sampling.
“Our research shows that children with both the risk genotype and exposure to high air pollutant levels were at increased risk of autism spectrum disorder compared to those without the risk genotype and lower air pollution exposure,” said the study’s first author, Heather E. Volk, PhD, MPH, assistant professor of research in preventive medicine and pediatrics at the Keck School of Medicine of USC and principal investigator at The Saban Research Institute of Children's Hospital Los Angeles.
Autism spectrum disorder (ASD) is a lifelong neurodevelopmental disability characterized by problems with social interaction, communication and repetitive behaviors. The Centers for Disease Control and Prevention estimates that one in 88 children in the United States has an ASD.
ASD is highly heritable, suggesting that genetics are an important contributing factor, but many questions about its causes remain. There currently is no cure for the disorder.
“Although gene-environment interactions are widely believed to contribute to autism risk, this is the first demonstration of a specific interaction between a well-established genetic risk factor and an environmental factor that independently contribute to autism risk,” said Daniel B. Campbell, Ph.D., assistant professor of psychiatry and the behavioral sciences at the Keck School of Medicine of USC and the study’s senior author. “The MET gene variant has been associated with autism in multiple studies, controls expression of MET protein in both the brain and the immune system, and predicts altered brain structure and function. It will be important to replicate this finding and to determine the mechanisms by which these genetic and environmental factors interact to increase the risk for autism.”
Independent studies by Volk and Campbell have previously reported associations between autism and air pollution exposure and between autism and a variant in the MET gene. The current study suggests that air pollution exposure and the genetic variant interact to augment the risk of ASD.
Campbell and Volk’s team studied 408 children between 2 and 5 years of age from the Childhood Autism Risks From Genetics and the Environment Study, a population-based, case-control study of preschool children from California. Of those, 252 met the criteria for autism or autism spectrum disorder. Air pollution exposure was determined based on the past residences of the children and their mothers, local traffic-related sources, and regional air quality measures. MET genotype was determined through blood sampling.
Wednesday, October 16, 2013
New cases of autism level-off in UK, Rise in the U.S.
The number of newly diagnosed cases of autism has levelled off in the UK after a five-fold surge during the 1990s, finds research published in the online journal BMJ Open.
The findings differ from widely publicised results issued by the US Centers for Disease Control and Prevention (CDC) last year, which reported a 78% increase in the prevalence of the condition in eight year old children between 2004 and 2008 in the US.
Prompted by these data, which found that one in every 88 eight year old children in the US had been diagnosed with an autistic spectrum disorder in or before 2008, the authors wanted to find out if there were comparable rates in the UK.
They used entries into the General Practice Research Database (GPRD), which contains around three million anonymised active patient records from over 300 representative general practices in the UK―equivalent to 5% of the UK population.
Data from practices enrolled from 1990, when the GPRD was set up, were used to calculate the annual prevalence (number of people living with the condition) and the annual incidence (number of newly diagnosed cases) of autistic spectrum disorders among eight year olds, all of whom were born after 1996.
Annual prevalence rates for 2004-2010 were calculated by dividing the number of eight year olds diagnosed as autistic in that or any previous year, by the number of eight year olds enrolled in the database for each year.
Annual incidence rates were calculated by dividing the number of eight year olds who had been newly diagnosed with autism between 2004 and 2010 by the number of eight year olds enrolled into the database for each of those years.
The results showed that the annual prevalence and incidence of autism did not materially change over the entire study period, for either boys or girls.
The annual prevalence of autistic spectrum disorders was estimated at 3.8 per 1000 boys and 0.8 per 1000 girls, while the annual incidence was estimated at 1.2 per 1000 boys (1190 in total) and 0.2 per 1000 girls (217 in total).
Girls were about 75% less likely to be diagnosed with an autism spectrum disorder as boys.
The UK prevalence of about 4/1000 children is substantially lower than the equivalent US figure of about 11/1000 children in 2008, which was reported in 2012.
"The large difference between countries is closely similar to differences in rates reported for children diagnosed and treated for attention deficit hyperactivity disorder in the two countries," the authors point out.
Their previously published research, based on the same database, showed that the cumulative incidence of autism among children born in UK between 1988 and 1995 increased continuously by a factor of five during that period.
And they say that both studies provide "compelling evidence that a major rise in incidence rates of autism, recorded in general practice, occurred in the decade of the 1990s but reached a plateau shortly after 2000 and has remained steady through 2010."
Similar widespread sharp rises in the number of children diagnosed as autistic were also seen in the 1990s in other parts of Europe and North America, they add, making it unlikely that better understanding of the condition or a broadening of the diagnostic criteria alone could have been responsible for these simultaneous large increases.
Given the apparent sudden halt in the rise in rates from early 2000 onwards - at least in the UK - the "actual cause of the dramatic rise in the 1990s remains a mystery," they write, emphasising that the suggestion that it might be linked to the MMR vaccine has been conclusively ruled out.
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For more stories on health, pollution, chemical exposure and improving your indoor air quality visit www.allerair.com or call to speak to an air quality expert about improving the air in your home
1-888-852-8247.
The findings differ from widely publicised results issued by the US Centers for Disease Control and Prevention (CDC) last year, which reported a 78% increase in the prevalence of the condition in eight year old children between 2004 and 2008 in the US.
Prompted by these data, which found that one in every 88 eight year old children in the US had been diagnosed with an autistic spectrum disorder in or before 2008, the authors wanted to find out if there were comparable rates in the UK.
They used entries into the General Practice Research Database (GPRD), which contains around three million anonymised active patient records from over 300 representative general practices in the UK―equivalent to 5% of the UK population.
Data from practices enrolled from 1990, when the GPRD was set up, were used to calculate the annual prevalence (number of people living with the condition) and the annual incidence (number of newly diagnosed cases) of autistic spectrum disorders among eight year olds, all of whom were born after 1996.
Annual prevalence rates for 2004-2010 were calculated by dividing the number of eight year olds diagnosed as autistic in that or any previous year, by the number of eight year olds enrolled in the database for each year.
Annual incidence rates were calculated by dividing the number of eight year olds who had been newly diagnosed with autism between 2004 and 2010 by the number of eight year olds enrolled into the database for each of those years.
The results showed that the annual prevalence and incidence of autism did not materially change over the entire study period, for either boys or girls.
The annual prevalence of autistic spectrum disorders was estimated at 3.8 per 1000 boys and 0.8 per 1000 girls, while the annual incidence was estimated at 1.2 per 1000 boys (1190 in total) and 0.2 per 1000 girls (217 in total).
Girls were about 75% less likely to be diagnosed with an autism spectrum disorder as boys.
The UK prevalence of about 4/1000 children is substantially lower than the equivalent US figure of about 11/1000 children in 2008, which was reported in 2012.
"The large difference between countries is closely similar to differences in rates reported for children diagnosed and treated for attention deficit hyperactivity disorder in the two countries," the authors point out.
Their previously published research, based on the same database, showed that the cumulative incidence of autism among children born in UK between 1988 and 1995 increased continuously by a factor of five during that period.
And they say that both studies provide "compelling evidence that a major rise in incidence rates of autism, recorded in general practice, occurred in the decade of the 1990s but reached a plateau shortly after 2000 and has remained steady through 2010."
Similar widespread sharp rises in the number of children diagnosed as autistic were also seen in the 1990s in other parts of Europe and North America, they add, making it unlikely that better understanding of the condition or a broadening of the diagnostic criteria alone could have been responsible for these simultaneous large increases.
Given the apparent sudden halt in the rise in rates from early 2000 onwards - at least in the UK - the "actual cause of the dramatic rise in the 1990s remains a mystery," they write, emphasising that the suggestion that it might be linked to the MMR vaccine has been conclusively ruled out.
_______________________________________________
For more stories on health, pollution, chemical exposure and improving your indoor air quality visit www.allerair.com or call to speak to an air quality expert about improving the air in your home
1-888-852-8247.
Monday, August 19, 2013
Video: Environmental Exposures and Autism
Prof. Irva Hertz-Picciotto discusses possible causes of autism, a pervasive
developmental disorder defined by lack of social reciprocity and
communications skills combined with repetitive behavior. In the U.S., 1
in 88 children have autism. In California, autism prevalence increased
600% from 1990 - 2001, partly by better detection. Both genes and
environment contribute to autism. Exposures of concern include
environmental chemicals, microbes such as rubella, fertility treatments,
and medications.
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For more stories on health, pollution, chemical exposure and improving your indoor air quality visit www.allerair.com or call to speak to an air quality expert about improving the air in your home 1-888-852-8247. AllerAir air purifiers remove 99.97% of airborne dust, particles and the chemicals and odors that other air cleaners leave behind.
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For more stories on health, pollution, chemical exposure and improving your indoor air quality visit www.allerair.com or call to speak to an air quality expert about improving the air in your home 1-888-852-8247. AllerAir air purifiers remove 99.97% of airborne dust, particles and the chemicals and odors that other air cleaners leave behind.
Tuesday, November 27, 2012
Autism and Traffic Pollution: VIDEO ON THE NEW STUDY
Research conducted by University of Southern California (USC) and Children's Hospital Los Angeles scientists demonstrates that polluted air -- whether regional pollution or coming from local traffic sources -- is associated with autism.
For more stories on health, pollution, chemical exposure and improving your indoor air quality visit www.allerair.com or call to speak to an air quality expert about improving the air in your home 1-888-852-8247.
Live chat also available M-F 8 am - 5 pm eastern time:
For more stories on health, pollution, chemical exposure and improving your indoor air quality visit www.allerair.com or call to speak to an air quality expert about improving the air in your home 1-888-852-8247.
Live chat also available M-F 8 am - 5 pm eastern time:
Exposure to traffic pollution in pregnancy, first year of life appears to be associated with autism
Exposure to traffic-related air pollution, during pregnancy and during the first year of a child's life appears to be associated with an increased risk of autism, according to a new report published by Archives of General Psychiatry.
Researchers at the University of Southern California, looked at the relationship between traffic-related air pollution, air quality and autism in a study that included 279 children with autism and control group of 245 children with typical development.
"Exposures to traffic-related air pollution, PM [particulate matter] and nitrogen dioxide were associated with an increased risk of autism. These effects were observed using measures of air pollution with variation on both local and regional levels, suggesting the need for further study to understand both individual pollutant contributions and the effects of pollutant mixtures on disease," the authors comment.
The authors used mothers' addresses to estimate exposure for each pregnancy trimester and for a child's first year of life. Children living in homes with the highest levels of traffic-related air pollution were three times as likely to have autism compared with children living in homes with the lowest exposure.
Autism is a diverse disorder with genetic and environmental factors likely contributing to its origins. Autism spectrum disorders are commonly characterized by problems in communication, social interaction and repetitive behaviors. Emerging evidence suggests the environment plays a role in autism, but only limited information is available about what exposures are relevant and what stages of development in which they act.
"Although additional research to replicate these findings is needed, the public health implications of these findings are large because air pollution exposure is common and may have lasting neurological effects," the authors conclude.
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Thursday, May 17, 2012
Researchers blame autism rise on industrial chemicals
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| The rise in autism cases has researchers looking for possible causes, including environmental pollution. |
The condition is hard to ignore: One in 88 children may now be diagnosed with autism by the age of 8, a 77 percent increase since 2002.
The numbers are shocking and have researchers, parents and teachers scratching their heads as to why autism has become such a widespread concern.
Of course, more awareness and better spotting methods could also contribute to the higher numbers, and other factors may be obesity and age of parents, but the scientific community is most divided over the question of genetics vs. environment.
Environmental factors have been disregarded for a long time, but new research from San Antonio and elsewhere are increasingly putting the blame on chemicals in the environment.
Ambient mercury emissions (close to coal burning power plants, for example) as well as poorly regulated common chemicals in households and workplaces have been pointed out specifically, although it is difficult to pinpoint exactly which chemicals may be to blame because of a lack of information.
More research is needed, but the shortlist of possible chemicals to blame includes
- Lead
- Methylmercury
- Organophosphate insecticides
- Polychlorinated biphenyls
- Arsenic
- Manganese
- Ethyl alcohol
Even before children are born, they are exposed to hundreds of chemicals from cosmetics, building materials, polluted air, food and drinking water. Many of these chemicals are neurotoxic to adult brains and they have only come onto the market in the past few decades.
Avoiding chemicals as much as possible, especially during pregnancy and early childhood may be one of the best ways to reduce risks at this point in time, researchers say.
Source: The Current
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Thursday, April 26, 2012
List of chemicals suspected to cause autism and learning disabilities
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| The rising incidence of autism and neuodevelopmental disorders has researchers looking for environmental causes. |
The editorial by Philip Landrigan, MD, MSc, and Luca Lambertini, PhD, MPH, MSc, from Mount Sinai as well as Linda Birnbaum, Director of the National Institute OF Environmental Health Sciences, was published in the journal Environmental Health Perspectives alongside other papers that suggested links between chemicals and autism.
Autism and autism-related disorders have been rising in incidence, but the exact environmental causes are still not understood.
A growing number of researchers believe that environmental pollution does have an impact on the development of autism (the hereditary component is also very strong) and that certain toxic chemicals may affect between 400,000 and 600,000 of the 4 million children born in the U.S. each year.
There should be a priority on the research of these environmental pollutants because they are potentially controllable or preventable, the researchers say.
The top 10 chemicals are
- Lead
- Methylmercury
- PCBs
- Organophosphate pesticides
- Organochlorine pesticides
- Endocrine disruptors
- Automotive exhaust
- Polycyclic aromatic hydrocarbons
- Brominated flame retardants
- Perfluorinated compounds
Automotive exhaust can become a problem indoors as well if a home is located close to a busy road or highway.
Many products (especially children’s products) contain flame retardants that can get into the air and affect children, pets and everyone else.
Other chemicals on the list are persistent organic pollutants or pesticides that can build up in the environment, the food chain and people’s bodies and there may have a big impact as well.
Source: Mount Sinai Medical Center
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