Learning a new task, mastering a musical instrument or being able to adapt to the constantly changing environment are all possible thanks to the brain’s plasticity, or its ability to modify itself by rearranging existing neural networks and forming new ones to acquire new functional properties. This also helps neural circuits to remain healthy, robust and stable.
To better understand brain plasticity, a team of researchers used mouse models to investigate how brain cells build connections with new neurons born in adult brains. Their findings, published in the journal Genes & Development, not only expand our understanding of brain plasticity but also open new possibilities for treating certain neurodevelopmental disorders and repairing injured circuits in the future.
“In this study, we wanted to identify new molecules that help new neurons build connections in the brain,” said corresponding author. “We worked with the olfactory bulb, the part of the brain that is involved in the sense of smell. In mice, the olfactory bulb is a highly plastic sensory area and has a remarkable capacity to maintain plasticity into adulthood via continuous integration of adult-born neurons. We discovered that oxytocin, a peptide, or short protein, produced in the brain, drives events that contribute to neural circuit plasticity.”
The researchers discovered that the levels of oxytocin increase in the olfactory bulb, peaking at the time the new neurons incorporate themselves into neural networks. Using viral labeling, confocal microscopy and cell-type specific RNA sequencing, the team discovered that oxytocin triggers a signaling pathway – a series of molecular events inside cells – that promotes the maturation of synapses, that is, the connections of newly integrated adult-born neurons. When the researchers eliminated the oxytocin receptor, the cells had underdeveloped synapses and impaired function.
“Importantly, we found that synapse maturation occurs by regulating the morphological development of cells and the expression of a number of structural proteins,” said the author.
“The most exciting aspect of this study is that our findings suggest that oxytocin drives development and synaptic integration of new neurons within the adult brain, directly contributing to adaptability and circuit plasticity,” said the first author.
The findings, which are relevant to all mammals, including humans, open new possibilities to improve neurological conditions. “Oxytocin is normally present in our brain, so if we understand how to turn it on or off or mobilize it, we can help keep our circuit connections healthy by promoting the growth of underdeveloped connections or strengthening new ones,” the senior author said. “Our findings also suggest that oxytocin could promote the growth of new neurons to repair damaged tissue. Further studies are needed to explore these possibilities.”
http://genesdev.cshlp.org/content/early/2022/12/07/gad.349930.122
http://sciencemission.com/site/index.php?page=news&type=view&id=publications%2Foxytocin-signaling-is&filter=22
Oxytocin drives development of neural connections in adult-born neurons
- 1,323 views
- Added
Latest News
A sperm-specific transporte…
By newseditor
Posted 02 Dec
How molecules in a cell int…
By newseditor
Posted 02 Dec
Genetic programmes underlie…
By newseditor
Posted 01 Dec
APOE variant neurons releas…
By newseditor
Posted 01 Dec
Reducing vitamin B5 slows b…
By newseditor
Posted 01 Dec
Other Top Stories
Astrocytes play a central role in repetitive behaviors related to OCD
Read more
Factors responsible for developing neutralizing antibody for HIV
Read more
Changes in extracellular matrix trigger alteration in the glucose m…
Read more
A novel system to track neurotransmitters
Read more
Overlapping copy number variations underlie autism and schizophreni…
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
Synapse-specific burst codi…
By newseditor
Posted 04 Dec
Mitochondria-lysosome-relat…
By newseditor
Posted 03 Dec
Stress granules plug and st…
By newseditor
Posted 03 Dec
Neuronal activation of Gaq…
By newseditor
Posted 02 Dec
Structures of a sperm-speci…
By newseditor
Posted 02 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