Tuesday, January 21, 2020

New Techniques Yield New Info on Alcohol Related Birth Defects

A collaborative research effort by scientists at the University of North Carolina School of Medicine, Duke University, and University College of London in the UK, sheds new light on alcohol-related birth defects.

The project, led by Kathleen K. Sulik, PhD, a professor in the Department of Cell and Developmental Biology and the Bowles Center for Alcohol Studies at UNC, could help enhance how doctors diagnose birth defects caused by alcohol exposure in the womb. The findings also illustrate how the precise timing of that exposure could determine the specific kinds of defects.

“We now know that maternal alcohol use is the leading known and preventable cause of birth defects and mental disability in the United States,” Sulik said. “Alcohol’s effects can cause a range of cognitive, developmental and behavioral problems that typically become evident during childhood, and last a lifetime.”

Fetal alcohol syndrome (FAS) is at the severe end of fetal alcohol spectrum disorders (FASD). First described in 1972, FAS is recognized by a specific pattern of facial features: small eyelid openings, a smooth ridge on the upper lip (absence of a central groove, or philtrum), and a thin upper lip border.

In its full-blown state, FAS affects roughly 1 in 750 live births in the U.S. And while clinicians typically look for those classical facial features in making a diagnosis, within the broader classification of FASD “adverse outcomes vary considerably and most individuals don’t exhibit the facial characteristics that currently define FAS,” said the study’s lead author Robert J. Lipinski, PhD, a postdoctoral scientist in Sulik’s lab. “This study could expand the base of diagnostic criteria used by clinicians who suspect problems caused by maternal alcohol use.”

In their animal-based studies, the Sulik lab team has collaborated with co-author G. Allan Johnson, PhD and his group at Duke University’s Center for In Vivo Microscopy. Johnson, professor of radiology and physics, has developed new imaging tools with spatial resolution up to a million times higher than clinical magnetic resonance imaging (MRI). These include small bore tools suitable for imaging fetal mice that are only 15 mm long.

To quantify facial shape from MRI data, the study team turned to co-author Peter Hammond, a professor of computational biology at UCL’s Institute of Child Health, in London. Hammond invented powerful new techniques for 3D shape analysis that have already proven successful in objectively defining facial shape changes in humans.

In the study, described in the August 22, 2012 issue of the online journal PLOS ONE, Lipinski and Sulik treated one group of mice with alcohol on their seventh day of pregnancy, a time corresponding to the third week of pregnancy in humans. A second group of mice was treated just 36 hours later, approximating the fourth week of human pregnancy. The amount of alcohol given was large, “high doses that most women wouldn’t achieve unless they were alcoholic and had a tolerance for alcohol,” Sulik said.

Near the end of pregnancy, the fetuses were then imaged at Duke University. These 3D data sets showed individual brain regions, as well as accurate and detailed facial surfaces, from which Hammond and research assistant and co-author Michael Suttie performed shape analyses.

The team found that the earlier alcohol exposure time elicited the classic FAS facial features, including characteristic abnormalities of the upper lip and eyes. What they observed in fetuses exposed just 36 hours later, however, was a surprise. These mice exhibited unique and in some cases opposing facial patterns, such as shortened upper lip, a present philtrum, and the brain, instead of appearing too narrow in the front, appeared wide.

“Overall, the results of our studies show that alcohol can cause more than one pattern of birth defects, and that the type and extent of brain abnormalities—which are the most devastating manifestation of prenatal alcohol exposure—in some cases may be predicted by specific facial features,” Sulik said. “And, importantly, alcohol can cause tremendously devastating and permanent damage at a time in development when most women don’t recognize that they’re pregnant.”


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Monday, November 25, 2019

Cancer patients more likely to die of heart problems, stroke, according to a study

In a new study, researchers have found that a lot of people diagnosed with cancer are more likely to die of heart and blood vessel problems, instead of the main disease.

Even more, for cancers like those affecting breasts, prostate, endometrial and thyroid, around half of the patients will die from cardiovascular disease (CVD), according to the study.


For the study, researchers compared the US general population with over 3.2 million US patients who had been diagnosed with cancer between 1973 and 2012.


They used information contained in the Surveillance, Epidemiology and End Results (SEER) database to look at deaths from CVD, which included heart disease, high blood pressure, cerebrovascular disease, blocked arteries and damage to the aorta- the main artery carrying blood from the heart to the rest of the body.


They adjusted their analyses to take account of factors that could affect the results, such as age, race, and sex, and looked specifically at 28 types of cancer.


Among the 3,234,256 cancer patients, 38 %( 1,228,328) died from cancer and 11 % ( 365, 689) died from CVDs. Among the deaths from CVD, 76 % were due to heart disease, and risk of dying from CVD was highest in the 1st year after a cancer diagnosis and among patients younger than 35 years.


The majority of CVD deaths occurred in patients with cancer of the breast ( a total of 60,409 patients) and prostate (84,534 patients), as these are among the most common cancer to be diagnosed.


In 2012, 61 % of all cancer patients who died from CVD were diagnosed with breast, prostate or bladder cancer.


The proportion of cancer survivors dying from CVD was highest in bladder ( 19% of patients), larynx ( 17%), prostate ( 17%), womb ( 16 %), bowel ( 14 %) and breast ( 12 %) cancers.


Patients who were more likely to die from cancer than from CVD were those with the most aggressive and hard-to-treat cancers, such as cancer of the lung, liver, brain, stomach, gallbladder, pancreas, oesophagus, ovary and multiple myeloma.


A Dr. said , these findings show that a large proportion of certain cancer patients will die of cardiovascular disease, including heart disease, stroke, aneurysm, high BP and damage to blood vessels.


We also found that among survivors with any type of cancer diagnosed before the age of 55 years, the risk if cardiovascular death was more than 10-fold greater than in the general population, the Dr. added.


The risk of death from CVD is several times that of the general population in the 1st year of diagnosis; sometimes, this risk decreases, but for most, this risk increases as survivors are followed for 10 years or more, the researcher continued.


A radiation oncologist, stated the reason why cancer patients were more at risk of dying from CVD within the 1st year of diagnosis might be because when they entered the hospital system, other illnesses and problems, such as heart disease, lung dysfunction and kidney failure were also detected.


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Tuesday, October 22, 2019

Decrease in placental steroid can elevate risk of autism spectrum disorder

 In a new study it has been found that allopregnanolone, one of many hormones produced by the placenta during pregnancy, is so essential to normal fetal brain development that the decrease in the supply can cause Autism.

A children's National Hospital research team reports the findings on Oct 20 at the Neuroscience 2019 annual meeting. Lead author said, "To our knowledge, no other research team has studied how placental allopregnanolone (ALLO) contributes to brain development and long-term behaviours."

"Our study finds that targeted loss of ALLO in the womb leads to long-term structural alterations of the cerebellum - a brain region that is essential for motor coordination, balance and social cognition - and increases the risk of developing autism," added the author. According to the Centers for Disease Control and Prevention, about 1 in 10 infants is born preterm, before 37 weeks gestation; and 1 in 59 children has autism spectrum disorder.

In addition to presenting the research,  the abstract's senior author, will discuss the research with reporters during a Neuroscience 2019 news conference. This Children's National abstract is among 14,000 abstracts submitted for the meeting, the world's largest source of emerging news about brain science and health.

To investigate what happens when ALLO supplies are disrupted, a research team led by Children's National created a novel transgenic preclinical model in which they deleted a gene essential in ALLO synthesis. When the production of ALLO in the placentas of these experimental models declines, offspring had permanent neurodevelopmental changes in a sex- and region-specific manner. "From a structural perspective, the most pronounced cerebellar abnormalities appeared in the cerebellum's white matter," the author adds.

"We found the increased thickness of the myelin, a lipid-rich insulating layer that protects nerve fibres. From a behavioural perspective, male offspring whose ALLO supply was abruptly reduced exhibited increased repetitive behaviour and sociability deficits - two hallmarks in humans who have autism spectrum disorder."

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Monday, July 29, 2019

High levels of oestrogen in the womb linked to autism

Researchers have identified a link between exposure to high levels of estrogen sex hormones in the womb and the likelihood of developing autism.

Published in the journal Molecular Psychiatry, the discovery adds further evidence to support the prenatal sex steroid theory of autism first proposed 20 years ago.
 
In 2015, the researchers measured the levels of four prenatal steroid hormones, including two known as androgens, in the amniotic fluid in the womb and discovered that they were higher in male fetuses who later developed autism. 
 
These androgens are produced in higher quantities in male than in female foetuses on average, so might also explain why autism occurs more often in boys. They are also known to masculinise parts of the brain and to have effects on the number of connections between brain cells.
 
"This new finding supports the idea that increased prenatal sex steroid hormones are one of the potential causes for the condition. Genetics is well established as another, and these hormones likely interact with genetic factors to affect the developing foetal brain," said the study lead author.
 
Now, the same scientists have built on their previous findings by testing the amniotic fluid samples from the same 98 individuals sampled from the Danish Biobank, which has collected amniotic samples from over 100,000 pregnancies, but this time looking at another set of prenatal sex steroid hormones called estrogen. 
 
This is an important next step because some of the hormones previously studied are directly converted into estrogens. All four estrogen were significantly elevated, on average, in the 98 fetuses who later developed autism, compared to the 177 fetuses who did not.
 
High levels of prenatal estrogen were even more predictive of the likelihood of autism than were high levels of prenatal androgens (such as testosterone). 
 
Contrary to popular belief that associates estrogen with feminisation, prenatal estrogen have effects on brain growth and also masculinise the brain in many mammals.
 
"This finding is exciting because the role of estrogen in autism has hardly been studied and we hope that we can learn more about how they contribute to foetal brain development in further experiments. We still need to see whether the same result holds in autistic females," said one of the researchers.

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Thursday, February 28, 2019

Machine Learning Can Identify Kids Suffering From Developmental Disorder Due to Alcohol Exposure in Womb

Researchers have developed a new tool that uses Machine Learning (ML) technology to screen children suffering from a type of developmental and neurobehavioural disorder, caused due to alcohol exposure while in the womb, quickly and at an affordable rate.
It is estimated that millions of children will be diagnosed with foetal alcohol spectrum disorder (FASD). This condition, when not diagnosed early in a child's life, can give rise to secondary cognitive and behavioural disabilities.


FASD is still quite difficult to diagnose. A professional diagnosis can take a long time with the current work taking as much as an entire day.

But, the ML tool, developed by researchers, uses a camera and computer vision to record patterns in children's eye movements as they watch multiple one-minute videos, or look towards or away from a target. It then identifies patterns that contrast to recorded eye movements by other children who watched the same videos or targets.

The eye movements outside the norm were flagged by the researchers as children who might be at risk for having FASD and need more formal diagnoses by healthcare practitioners, according to study published in a journal. "There is not a simple blood test to diagnose FASD. It is one of those spectrum disorders where there is a broad range of the disorder. It is medically very challenging and it is co-morbid with other conditions," said Laurent Itti, Professor at the USC.

"The new screening procedure only involves a camera and a computer screen, and can be applied to very young children. It takes only 10 to 20 minutes and the cost should be affordable in most cases," added a researcher. While this computer vision tool is not intended to replace full diagnosis, it could provide important feedback so that parents can ensure that their children are seen by professionals and receive early cognitive learning and potentially behavioural interventions, the researchers noted. 


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Tuesday, January 22, 2019

Heart disease risk begins in the womb

Heart disease is the greatest killer in the world today, and it is widely accepted that our genes interact with traditional lifestyle risk factors, such as smoking, obesity and/or a sedentary life to promote an increased risk of cardiovascular disease. However, a new study in sheep, finds that offspring whose mothers had a complicated pregnancy may be at greater risk of heart disease in later life, suggesting that our cards may be marked even before we are born. 

In addition to the effects of adult lifestyle, there is already evidence that the gene-environment interaction before birth may be just as, if not more, important in "programming" future heart health and heart disease. For instance, human studies in siblings show that children born to a mother who was obese during pregnancy are at greater risk of heart disease than siblings born to the same mother after bariatric surgery to reduce maternal obesity. Such studies have provided strong evidence in humans that the environment experienced during critical periods of development can directly influence long-term cardiovascular health and heart disease risk.

The new research shows that adult offspring from pregnancies complicated by chronic hypoxia have increased indicators of cardiovascular disease, such as high blood pressure and stiffer blood vessels. Chronic hypoxia or lower-than-normal oxygen levels in the developing baby within the womb is one of the most common outcomes of complicated pregnancy in humans. It occurs as a result of problems within the placenta, as can occur in preeclampsia, gestational diabetes or maternal smoking.

The study, used pregnant sheep to show that maternal treatment with the antioxidant vitamin C during a complicated pregnancy could protect the adult offspring from developing hypertension and heart disease. The work therefore not only provides evidence that a prenatal influence on later heart disease in the offspring is indeed possible, but also shows the potential to protect against it by "bringing preventative medicine back into the womb," as the first author of the study, puts it.

It turns out that vitamin C is a comparatively weak antioxidant, and while the Cambridge study provides a proof-of-principle, future work will focus on identifying alternative antioxidant therapies that could prove more effective in human clinical practice.

"Our discoveries emphasise that when considering strategies to reduce the overall burden of heart disease, much greater attention to prevention rather than treatment is required. Treatment should start as early as possible during the developmental trajectory, rather than waiting until adulthood when the disease process has become irreversible," the Prof. added. The work draws attention to a new way of thinking about heart disease with a much longer-term perspective, focusing on prevention rather than treatment. 

THIS IS ONLY FOR INFORMATION, ALWAYS CONSULT YOU PHYSICIAN BEFORE HAVING ANY PARTICULAR FOOD/ MEDICATION/EXERCISE/OTHER REMEDIES.                                    PS- THOSE INTERESTED IN RECIPES ARE FREE TO  VIEW MY BLOG-                                                                                           https://gseasyrecipes.blogspot.com/       
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