Individual and Family Discount Dental Plans, Affordable
Dental Care Starting at $79.95 a Year!
1-888-632-5353 
M-F 8 AM - 9 PM EST 

Find Plans in Your Area
 
ZIP code
 

Find Dentists in Your Area
 
ZIP code
 
Dentist last name
(optional)
 




you are here: DentalPlans.com > Dental Health Articles > Research > New Findings Help Pinpoint Autisms Genetic Roots

New Findings Help Pinpoint Autisms Genetic Roots
Autism and Geneticw
Updated: 5/9/2006 3:07:31 PM
By deleting a gene in certain parts of the brain, researchers at UT Southwestern Medical Center have created mice that show deficits in social interaction that are reminiscent of humans with autism spectrum disorders.

The investigators also found physical abnormalities in the brains that mimic some cases of autism, showing that the research animals can be useful in studying the mysterious condition.

The finding — to be published in the May 4 issue of the journal Neuron — confirms recent indications that a mutation in this particular gene could cause at least some forms of autism, said Dr. Luis F. Parada, director of the Center for Developmental Biology and the study's senior author. Dr. Parada also directs the Kent Waldrep Center for Basic Research on Nerve Growth and Regeneration.

(Pictured:Dr. Luis Parada (second from right), director of the Center for Developmental Biology, led a research team that studied genetically mutated mice that show deficits in social interaction that are reminiscent of humans with autism spectrum disorders. Others involved included (from left) Dr. Craig Powell, assistant professor of neurology and psychiatry; Jing Zhou, student research assistant; and Dr. Chang-Hyuk Kwon, postdoctoral researcher.)

"The exciting thing about this mouse is it helps us to zero in on at least one anatomic location of abnormality, because we targeted the gene to very circumscribed regions of the brain," he said. "In diseases where virtually nothing is known, any inroad that gets into at least the right cell or the right biochemical pathway is very important."

Autism is a brain disorder in which people have trouble with communication and social interaction and engage in repetitive movements. Usually manifesting in childhood, it affects about one in every 250 people, primarily males.

The researchers focused on a gene called Pten, which is also known to suppress cancers in humans. Some people with autism have mutations in Pten, but it has been unclear if that's what causes the disease, Dr. Parada said. To test that hypothesis, the researchers deleted the gene in the front of the mouse brain and in areas of the hippocampus, a structure involved in memory and other functions.

Mice, which are social animals, are a good model for studying the disease, Dr. Parada said. Their behavior can be studied when they are exposed to other mice, when they are provided with inanimate objects and material for making nests, and when they are placed in unfamiliar environments.

In each of those conditions, the mutant mice were distinctly different from normal mice that came from the same litter.

Mice lacking the Pten gene were generally uninterested in unfamiliar mice, while normal mice approached the strangers. When mutant mice were exposed to both an inanimate object and another mouse, they showed about equal interest in each — echoing the way children with autism prefer toys to people — while the normal mice preferred the other mouse.

When given raw material for nesting, the mutants ignored it, while the normal mice teamed up to build nests. And the pups of mutant females often died from lack of maternal care.

The genetically altered mice were also hypersensitive to stressful stimuli, such as being picked up, being subjected to a sudden noise, or being put in a lighted or open area. People with autism are similarly overly sensitive to sensory stimuli.

The mutant mice's brains were also noticeably altered in the areas where the gene was deleted. The nerve cells were thicker than normal and had a higher-than-normal number of connections to other nerve cells. This may lead to the sensory overload that people with autism experience, Dr. Parada said.

"It would be really exciting if it turned out that we've zeroed in on the anatomical regions where things go wrong in autistic patients, regardless of how the autism occurs," he said, adding that the next step in the research is to treat the mice with drugs to see whether it's possible to reverse the condition.

Autism-like syndromes are being studied at UT Southwestern from another angle through the work of Dr. Lisa Monteggia, assistant professor of psychiatry.

Her investigation of the role of a gene called MeCP2 in mediating autistic-like behavior has been published recently in the journals Biological Psychiatry and Current Biology. Mutations in MeCP2 occur in a pervasive developmental disorder called Rett syndrome, a human disease that shares many clinical features with autism. Mutations in MeCP2 also have been identified in autism patients.

In Biological Psychiatry, she described how the selective deletion of MeCP2 in the brains of mice — in similar areas as those targeted by Dr. Parada — creates many of the features of Rett syndrome that are also observed in autism patients, including reduced social interaction, abnormal repetitive behavior and increased anxiety.

Current Biology reported her collaborative study with Dr. Ege Kavalali, associate professor in the Center for Basic Neuroscience, in which recorded signals from nerve cells in the mouse brain showed that in those lacking MeCP2, there was an imbalance between signals that excite nerve cells and those that inhibit neural activity. Such an imbalance in nerve transmission has been hypothesized as a feature of human autistic disorders; however, this is the first report demonstrating such an imbalance.

Lead authors in the Pten study from the Center for Developmental Biology were Dr. Chang-Hyuk Kwon, postdoctoral researcher; former graduate student Bryan Luikart, now at Oregon Health & Science University; and Dr. Craig Powell, assistant professor of neurology and psychiatry at UT Southwestern.

The work was supported by the American and Lebanese Associated Charities, the National Institutes of Health and the American Cancer Society.

UT Southwestern scientists participating in the MeCP2 research were Erika Nelson, student research assistant in psychiatry, and Terry Gemelli, former research associate in psychiatry.

Dr. Monteggia's research is supported in part by the National Alliance for Autism Research, Once Upon A Time …, and the Rett Syndrome Research Foundation.

© 2006 HealthNewsDigest.com

Customer Care - 1-888-632-5353 Toll Free

  
Additional Articles
Healthcare Industries Still Amongst for...
Biomarker Detects and Regulates Spread...
Weill Cornell Team Discovers Molecular...
Chronic Stress Affects Attention by in...
Scientists Spot Mechanism Behind New...
'Machiavellian' Model of Evolution of ...
While Most U.S. Adults Believe in God,...
Key Brain Reward Region Not Activated...
Drug Prescribed for Migraines and Risk ...
Tastes great U-M researchers Show How -...
Genetic Variation Impacts Aspirins in...
Pharmaceutical, Health Insurance, Care,...
First Evidence to Show Elephants Like ...
MU Study Identifies Enzyme Responsible ...
Crohns Disease Gene Identified
Genes and Life Stress Interact in the...
Aspirin and Its Many Uses
Effect of Direct to consumer Drug Ads...
New Treatment for Iraq War Veterans...
Eighty Percent of US Adults Favor of...
Switching off Aging in Stem Cells
Copper Absorption Key to Life
Memory Loss Defects in Crucial Brain...
Public Overwhelmingly Supportive of and...
Doctors and Teachers Most Trusted Among...
Facelifts with GoreTex
Whats in a Garlic Supplement Few Brands...
Hope I Die Before I Get Old Study finds...
Majority of US Adults Think Domestic is...
A New Way to Build Bone
Connections Between Nose and Brain
Support for Roe vs Wade Declines to...
New Findings Help Pinpoint Autisms...
Brain Communicates in Analog and Modes...
WVU Purchases Genetic Research...
How Odors are Sensed A Complex System...
The Brains Response to Mistakes
Blood Substitute Study to Begin
Potential New Treatment for Cystic...
Botulism Toxins Insidious Route into...

Add to Google MSN Research
 Add Research
 To My Yahoo  Subscribe with Bloglines   Subscribe in NewsGator Online Research
 News Feed

The materials and articles published on DentalPlans.com are for informational purposes only. Although DentalPlans.com strives to be accurate and complete, the information is provided without liability for errors. DentalPlans.com does not warrant the accuracy or completeness of the information, text graphics, links, or other items contained on DentalPlans.com.

DentalPlans.com expressly disclaims liability for errors or omissions in these materials and DentalPlans.com makes no commitment to update the information on DentalPlans.com.

DentalPlans.com expressly disclaims all liability for the use or interpretation by others of information on DentalPlans.com. Decisions based on information contained on DentalPlans.com are the sole responsibility of the visitors, and visitors agree to hold DentalPlans.com and its Affiliates harmless against any claims for damages arising from decisions visitors make on such information.

Nothing on DentalPlans.com constitutes medical advice or other forms of advice. DentalPlans.com assumes no responsibility for material created or published by third parties linked to DentalPlans.com with or without DentalPlans.coms knowledge.

Terms of Use | Privacy PolicySite Map | Newsletter | Info to Go | DP Goes Green | Affiliate Program | Contact Us |

The DENTALPLANS.COM website is administered by DENTALPLANS.COM, INC., a licensed Florida Discount Medical Plan Organization, 8100 S.W. 10th Street Suite #2000, Plantation, FL 33324. Plans and Programs offered by DentalPlans.com are not health insurance policies. Plans and Programs offered by DentalPlans.com provide discounts at certain health care providers for medical services. Plans and Programs offered by DentalPlans.com do not make payments directly to the providers of medical services. The Plan or Program member is obligated to pay for all health care services but will receive a discount from those health care providers who have contracted with the Plan, Program or discount plan organization.

© 1999-2009 DentalPlans.com, Inc. All Rights Reserved. Patents Pending.

BBBOnLine Reliability Seal    HACKER SAFE certified sites prevent over 99% of hacker crime.