Showing posts with label Testosterone. Show all posts
Showing posts with label Testosterone. Show all posts

Paracetamol in pregnancy may lower testosterone in unborn boys

The University of Edinburgh study tested the effect of paracetamol on
testosterone production in mice that carried grafts of human testicular
tissue. These grafts have been shown to mimic how the developing testes
grow and function during pregnancy.
Scientists gave the mice a typical daily dose of paracetamol - over a
period of either 24 hours or seven days. They measured the amount of
testosterone produced by the human tissue an hour after the final dose
of paracetamol.
They found there was no effect on testosterone production following
24 hours of paracetamol treatment. After seven days of exposure,
however, the amount of testosterone was reduced by 45 per cent.
The team - from the University's MRC Centre for Reproductive Health -
say further research is required to establish the mechanism by which
paracetamol might have this effect.


The study is published in the journal Science Translational Medicine.
It is funded by the Wellcome Trust, the British Society of Paediatric
Endocrinology and Diabetes and the Medical Research Council.


Dr Rod Mitchell, a Wellcome Trust Intermediate Clinical Research
Fellow at the University of Edinburgh, said: "This study adds to
existing evidence that prolonged use of paracetamol in pregnancy may increase the risk of reproductive disorders in male babies.

Obesity leads to brain inflammation, and low testosterone makes it worse

The findings suggest that low testosterone and obesity interact to regulate inflammation of the nervous system, which may increase the risk of disorders such as type 2 diabetes and Alzheimer's disease"


Androgenic hormones could help treat multiple sclerosis, study finds

 "Testosterone and its derivatives could constitute an efficient treatment against myelin diseases such as multiple sclerosis, reveals a study by researchers from the Laboratoire d'Imagerie et de Neurosciences Cognitives. Myelin composes the sheaths that protect the nerve fibers and allow the speed of nerve impulses to be increased. A deficit in the production of myelin or its destruction cause serious illnesses for which there is no curative treatment. The researchers have shown that in mice brains whose nerve fibers have been demyelinated, testosterone and a synthetic analog induce the regeneration of oligodendrocytes, the cells responsible for myelination, and that they stimulate remyelination. This work is published on January in the journal Brain."

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