Although the harmful effects of alcohol on the brain are widely known, the structural changes observed are very heterogeneous. In addition, diagnostic markers are lacking to characterize brain damage induced by alcohol, especially at the beginning of abstinence, a critical period due to the high rate of relapse that it presents.
Now, researchers have detected by means of magnetic resonance, how the damage in the brain continues during the first weeks of abstinence, although the consumption of alcohol ceases.
The research, published in JAMA Psychiatry shows that six weeks after stopping drinking there are still changes in the white matter of the brain, as revealed by the neuroimaging study carried out on ninety voluntary patients.
The results of this work are surprising, explains the research coordinator: "Until now, nobody could believe that in the absence of alcohol the damage in the brain would progress".
Ninety patients with an average age of 46 years hospitalized because of an alcohol use disorder participated in this study. To compare the brain magnetic resonances of these patients, a control group without alcohol problems was used, consisting of 36 men with an average age of 41 years.
"An important aspect of the work is that the group of patients participating in our research are hospitalized in a detoxification program, and their consumption of addictive substances is controlled, which guarantees that they are not drinking any alcohol. Therefore, the abstinence phase can be followed closely", highlights the author.
Another differential characteristic of this study is that it has been carried out in parallel in a model with Marchigian Sardinian rats with preference for alcohol, which allows to monitor the transition from normal to alcohol dependence in the brain, a process that is not possible to see in humans", explains the author.
The damages observed during the period of abstinence affect mainly the right hemisphere and the frontal area of the brain and reject the conventional idea that the microstructural alterations begin to revert to normal values immediately after abandoning the consumption of alcohol.
With the consumption of alcohol "there is a generalized change in the white matter, that is, in the set of fibers that communicate different parts of the brain. The alterations are more intense in the corpus callosum and the fimbria. The corpus callosum is related to the communication between both hemispheres. The fimbria contains the nerve fibers that communicate the hippocampus, a fundamental structure for the formation of memories, the nucleus accumbens and the prefrontal cortex, "explains the author. The nucleus accumbens is part of the reward system of the brain and the prefrontal cortex is fundamental in decision making.
The researchers will now try to characterize the inflammatory and degenerative processes independently and more precisely, in order to investigate the progression during the early abstinence phase in people with alcohol abuse problems.
http://www.csic.es/home?p_p_id=contentviewerservice_WAR_alfresco_packportlet&p_p_lifecycle=1&p_p_state=maximized&p_p_mode=view&p_p_col_id=column-1-2&p_p_col_count=2&_contentviewerservice_WAR_alfresco_packportlet_struts_action=%2Fcontentviewer%2Fview&_contentviewerservice_WAR_alfresco_packportlet_nodeRef=workspace%3A%2F%2FSpacesStore%2Fb87f3161-00f9-4966-80ec-3d0af4605aed&_contentviewerservice_WAR_alfresco_packportlet_gsa_index=false&_contentviewerservice_WAR_alfresco_packportlet_title=noticias&contentType=news
https://jamanetwork.com/journals/jamapsychiatry/article-abstract/2729425
Brain damage continues even after alcohol consumption stopped
- 1,890 views
- Added
Edited
Latest News
Humans can intermittently r…
By newseditor
Posted 04 Dec
Why young kids don't get se…
By newseditor
Posted 04 Dec
Phosphatidylinositol 3,5-bi…
By newseditor
Posted 04 Dec
Probiotic-guided CAR-T cell…
By newseditor
Posted 04 Dec
Cell atlases of the human b…
By newseditor
Posted 04 Dec
Other Top Stories
What makes a neuron a neuron?
Read more
Gene that drives deadly brain tumour identified!
Read more
Scientists discover how to reverse pain caused by diabetes-related…
Read more
How fast swimming inhibits slow muscle through neural mechanism
Read more
Wearable brain devices - Are they marketed without safety & ethical…
Read more
Protocols
Cheap, cost-effective, and…
By newseditor
Posted 03 Dec
Temporally multiplexed imag…
By newseditor
Posted 02 Dec
Efficient elimination of ME…
By newseditor
Posted 01 Dec
Personalized drug screening…
By newseditor
Posted 30 Nov
Multi-chamber cardioids unr…
By newseditor
Posted 29 Nov
Publications
Behavioral and brain respon…
By newseditor
Posted 04 Dec
Toward low-cost gene therap…
By newseditor
Posted 04 Dec
The bidirectional immune cr…
By newseditor
Posted 04 Dec
Leveraging human immune org…
By newseditor
Posted 04 Dec
Single-cell long-read seque…
By newseditor
Posted 04 Dec
Presentations
Hydrogels in Drug Delivery
By newseditor
Posted 12 Apr
Lipids
By newseditor
Posted 31 Dec
Cell biology of carbohydrat…
By newseditor
Posted 29 Nov
RNA interference (RNAi)
By newseditor
Posted 23 Oct
RNA structure and functions
By newseditor
Posted 19 Oct
Posters
A chemical biology/modular…
By newseditor
Posted 22 Aug
Single-molecule covalent ma…
By newseditor
Posted 04 Jul
ASCO-2020-HEALTH SERVICES R…
By newseditor
Posted 23 Mar
ASCO-2020-HEAD AND NECK CANCER
By newseditor
Posted 23 Mar
ASCO-2020-GENITOURINARY CAN…
By newseditor
Posted 23 Mar