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Temporal lobe epilepsy: A new strategy to correct abnormal electrical activity

Researchers have identified two compounds that restore chloride balance in neurons, thereby allowing GABAergic signaling to regain its inhibitory function. PCPZ and CLP-257 significantly improved KCC2 efficiency, reducing seizures and other electrical markers of epileptic activity in human brain tissue and animal models.

SourceInstitut du Cerveau (Paris Brain Institute)·JournalProceedings of the National Academy of Sciences·TypeExperimental study·DateMar 6, 2026

Brain research: Study shows how brain stimulation can influence decisions

A new study by Martin-Luther-University Halle-Wittenberg found that brain stimulation can influence decisions, making choices faster with anodal stimulation and slower with cathodal stimulation. The research used transcranial direct current stimulation to activate or inhibit specific brain regions.

SourceMartin-Luther-Universität Halle-Wittenberg·JournalJournal of Cognitive Neuroscience·TypeExperimental study·DateApr 14, 2025

Researchers develop conductive gel to improve study of spinal cord injuries

Binghamton University researchers have created a hydrogel electrode that includes conductive carbon nanotubes to monitor nerve activity in spinal cord neurons and leg muscles in mice. The technology solves the problem of rigid materials causing damage during movement, allowing for long-term functionality and single-cell signal detection.

SourceBinghamton University·JournalNature Communications·TypeExperimental study·DateMar 12, 2025

Autonomic-cyclooxygenase-2 mechanisms of electroacupuncture on thermal injury-induced gastric dysmotility in rats

This study found that electroacupuncture (EA) improved gastric emptying in rats with burn-induced dysmotility by down-regulating cyclooxygenase-2 (COX-2) and pro-inflammatory cytokines. EA also normalized sympathetic hyperactivity and enhanced vagal activity, suggesting a potential therapeutic benefit for burn-induced gastric dysmotility.

SourceXia & He Publishing Inc.·JournalJournal of Translational Gastroenterology·DateMar 11, 2025

Novel neuronal mechanism for stress induced alteration in behavior

Studies using a rodent model found sustained increase in neural activity in the paraventricular thalamus (PVT) after exposure to a strongly stressful event. This persistent activity is linked to altered behavior, including restlessness and disturbed sleep patterns. The findings suggest a new therapeutic target for stress-related issues.

SourceInstitute of Experimental Medicine·JournalPLOS Biology·TypeNews article·DateJan 24, 2025

The aquaporin-4 inhibitor, N-(1,3,4-thiadiazol-2-yl)-3-pyridinecarboxamide, inhibits the glymphatic system

A study investigated the effects of N-(1,3,4-thiadiazol-2-yl)-3-pyridinecarboxamide (TGN-020), a selective AQP4 inhibitor, on glymphatic function. The results showed that acute inhibition of AQP4 significantly impaired glymphatic function without inducing short-term behavioral abnormalities in mice.

SourceXia & He Publishing Inc.·JournalExploratory Research and Hypothesis in Medicine·DateDec 20, 2024

Pharmacology: Venomous crustacean from Mayan underwater caves provides new drug candidates

A study from Goethe University Frankfurt reveals that venomous crustaceans, specifically remipede crabs in Mexican cenote caves, contain a variety of toxins with pharmacological potential. The xibalbines peptides effectively inhibit potassium channels and activate signaling pathways involved in pain sensitization.

SourceGoethe University Frankfurt·JournalBMC Biology·TypeExperimental study·DateOct 4, 2024

When serotonin dims the light

Researchers discover 5-HT2A receptor selectively suppresses visual information strength without inhibiting parallel processes. This mechanism regulates the importance attached to incoming information, which could help develop new therapies for psychiatric diseases.

SourceRuhr-University Bochum·JournalNature Communications·TypeExperimental study·DateSep 18, 2024

Learning like a teenager

Researchers led by Daniela Vallentin successfully rewired zebra finches' brains using optogenetics, expanding their vocal repertoire. The findings have implications for human aging and potential therapies for neurodegenerative diseases and learning impairments.

SourceMax-Planck-Gesellschaft·JournalNature Communications·DateSep 3, 2024

A new use for propofol in treating epilepsy?

A study published in Nature found that propofol can restore the function of mutated HCN1 ion channels, which are associated with certain types of epilepsy. The researchers suggest using propofol to treat these conditions or designing new compounds with similar effects but reduced side effects.

SourceWeill Cornell Medicine·JournalNature·DateJul 31, 2024

New technology to control the brain using magnetic fields developed

Researchers have developed Nano-MIND technology, which uses magnetism to selectively activate specific deep brain neural circuits, modulating complex brain functions such as cognition and emotion. The technology has been successfully tested in animals, demonstrating its potential to regulate feeding behaviors and maternal instincts.

SourceInstitute for Basic Science·JournalNature Nanotechnology·TypeExperimental study·DateJul 17, 2024

Neural balance in the brain is associated with brain maturity and better cognitive ability

A study found that neural balance, measured by the E/I ratio, is associated with brain maturity and better cognitive ability. Research suggests that as children develop, their E/I ratios decrease, leading to improved performance in cognitive tests.

SourceNational University of Singapore, Yong Loo Lin School of Medicine·JournalProceedings of the National Academy of Sciences·TypeMeta-analysis·DateJun 13, 2024

The body’s own lipids affect mental disorders: Can specific inhibitors help?

Research suggests that altered lipid signaling in brain cells contributes to mental disorders, with specific inhibitors showing promise in rebalancing this mechanism. The study found similar changes in both human patients and healthy relatives, as well as mice with genetic disorders, opening up new treatment opportunities.

SourceUniversity of Cologne·JournalMolecular Psychiatry·TypeExperimental study·DateJun 6, 2024

Neurons spoil your appetite

Researchers at Max Planck Institute for Biological Intelligence have discovered a brain circuit that inhibits food intake during nausea. The circuit involves special nerve cells in the amygdala, which send appetite-suppressing signals to distant brain regions, resulting in a loss of appetite.

SourceMax-Planck-Gesellschaft·JournalCell Reports·DateApr 24, 2024

Developmental crossroads in the brain

Researchers discovered that MEIS2 plays a critical role in activating genes necessary for the formation of inhibitory projection neurons, vital for motion control and decision-making. A MEIS2 mutation found in patients with intellectual disability disrupts these processes.

SourceMax-Planck-Gesellschaft·JournalNature Neuroscience·DateMar 26, 2024

How neural inhibition could reduce alcohol use

A Scripps Research team found that inhibiting stress neurons may decrease alcohol consumption in comorbid cases of post-traumatic stress disorder (PTSD) and alcohol use disorder. However, this approach did not mitigate anxiety. The study suggests that CRF plays a role in alcohol use among those with comorbid PTSD and AUD.

SourceScripps Research Institute·JournalMolecular Psychiatry·DateMar 20, 2024

How our brains' beta waves predict stuttering

A team of researchers from New York University recruited 30 stutterers and monitored their brain activity using magnetoencephalography (MEG) while they spoke. The study found increased beta waves associated with cues that preceded stuttered words, suggesting a predictive link between brain activity and stuttering.

SourceNew York University·JournalNeurobiology of Language·TypeExperimental study·DateFeb 14, 2024

Challenging the traditional views on how the brain processes movement and sensation

A study by Fujita Health University researchers unveiled novel insights into the brain's processing of movement and sensation. The findings suggest that signals from motor cortices do not primarily modulate sensory responses in primary sensory cortices, but rather pathways from secondary somatosensory cortex (S2) and sensory thalamus (...

SourceFujita Health University·JournalJNeurosci·TypeExperimental study·DateJan 11, 2024

Uncovering the role of somatostatin signaling in the brain

A Penn State-led research team discovered that somatostatin signaling acts to dampen communication among cell types in the prefrontal cortex, promoting exploratory and risk-taking-like behavior. The findings suggest that somatostatin fine-tunes circuits to promote certain behaviors, including decision making.

SourcePenn State·JournalCell Reports·TypeExperimental study·DateAug 17, 2023

New nerve insights could someday help heal certain types of blindness and paralysis

A team of researchers found that a small population of nerve cells exists in everyone that could be coaxed to regrow, potentially restoring sight and movement. The discovery provides new insights into how axons grow and could lead to effective therapies for blindness, paralysis, and other disorders caused by nerve damage.

SourceUniversity of Connecticut·JournalDevelopment·TypeExperimental study·DateMay 31, 2023

Good and bad feelings for brain stem serotonin

Researchers at Hokkaido University identify a nerve pathway in the brain stem involved in processing rewarding and distressing stimuli, opposing a previously identified pathway. This finding could lead to developing drug treatments for mental disorders like addiction and major depression.

SourceHokkaido University·JournalNature Communications·TypeExperimental study·DateDec 28, 2022

How preschoolers’ brains develop self-control

Research finds that preschoolers' brain maturation improves inhibitory control abilities, with 4-year-olds outperforming 3-year-olds in tasks requiring stopping actions. The cognitive control network's distinct regions and white matter connections are associated with different aspects of self-control development.

SourceSociety for Neuroscience·JournalJNeurosci·TypeObservational study·DateJul 11, 2022

Human drug addiction behaviors tied to specific impairments in 6 brain networks

Research reveals that impaired neural mechanisms in six large-scale brain networks contribute to human drug addiction behaviors, affecting cognition, emotional processing, and decision-making. The study identifies consistent impairments in brain function across these networks, which can inform the development of targeted treatment inte...

Ketamine works for female rats, too

A groundbreaking study published in eNeuro finds that low-dose ketamine promotes resilience to future adverse events in female rats, similar to its effects in males. The researchers identified a neural circuit involving the prefrontal cortex and dorsal raphe nucleus responsible for ketamine's stress-reducing properties.

SourceSociety for Neuroscience·JournaleNeuro·DateFeb 26, 2018