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Showing posts with label Neurodevelopmental disorders. Show all posts
Showing posts with label Neurodevelopmental disorders. Show all posts
Sunday, 18 February 2018
Effects of stress on sperm
Children of stressed fathers are at greater risk of developing PTSD and depression, according to a new study. Researchers found life's pressures can change the DNA of a man's sperm - leading to brain development changes in his yet unborn baby. It's widely known that a mother's environment during pregnancy, including factors such as poor diet, stress and infection, can negatively impact the offspring.
Learning how a father's behavior and environment can impact his child's development could lead to the detection and prevention of many mental health disorders. Researchers have known for years that stress can increase the risk of mental disorders,' Dr Tracy Bale, professor of neuroscience at the University of Maryland School of Medicine, told Daily Mail Online. 'What’s interesting here is that we are finding intergenerational effects.'
Researchers, led by Dr Bale, conducted a mice experiment to examine how a father's lifestyle impacts his children. Previously, the team has found male mice experiencing chronic periods of mild stress passed down genetic coding for a less effective hormonal response to stress in children. Three major hormones are released by the nervous system when the body is under stress. These are adrenaline, cortisol and norepinephrine. Collectively, these hormones send human bodies into ''fight''mode, which is important to the body's ability to cope with the effects of stress.
Stress resulted in changes in sperms genetic material known as microRNA, which plays a key role in which genes become functional proteins. These changes in stress reactivity have been linked to some mental disorders, including depression and PTSD.
In the new study, presented at the 2018 AAAS annual meeting in Austin, Texas, Dr Bale and her colleagues unraveled new details about the microRNA changes in the sperm. The caput epididymis, the structure where sperm matures, release vesicles which contain microRNA that can fuse with sperm to change its cargo delivered to the egg. When males mice were stressed, the caput epididymis responded by altering the content of these vesicles.
This suggests even mild environmental stress, such as workplace stress, can have a significant impact on the development and potentially the health of future offspring. This is through a process known as epigenetics where DNA is changed through lifestyle factors such as diet, exercise - or even stress. Scientists have known a mother's environment during pregnancy can damage a fetus by diet, stress or infection affecting the expression of certain genes in the same way.
Father's stress can affect offspring development by altering important aspects of his sperm. Her previous studies on the placenta have revealed novel sex differences during pregnancy that may predict increased pre-natal risk for neurodevelopmental disorders in males. Historically, most research on how a parent's lifestyle, behavior and environment can affect their children has focused on the mother. But scientists have recently been paying increasing attention to how a father's health impacts his children.
haleplushearty.blogspot.com
Labels:
Adrenaline,
Brain development,
Depression,
DNA,
Hormones,
Infection,
Mental disorders,
MicroRNA,
Mild stress,
Neurodevelopmental disorders,
Neuroscience,
Offspring,
Sperm,
Stress,
Vesicles
Wednesday, 2 August 2017
Children of older women may develop cancer
Increase in chromosomal mutations as we get older may increase the risk of giving birth to children that will develop cancer, acute lymphoblastic leukemia and non-Hodgkin lymphoma.
Increasing chromosomal aberrations with older parental may cause stillbirth or a baby with conditions like autism and Down’s syndrome.
A chromosome mutation is an unpredictable change that occurs in a
chromosome. This change is caused by problems that occur during cell division process.
Increasing new mutations that happens in sperm or egg cells are associated with the parents age. These increases the risk of birth defects related to single gene mutations and neurodevelopmental disorders.
Older parents can reduce the risk by embracing healthy lifestyle, reducing alcohol intake, avoiding smoking and chemical exposure.
haleplushearty.blogspot.com
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