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HKU neuroscientists discover a novel neural mechanisms of secretin receptor in regulating water intake Providing new ideas for solving hydromineral imbalance symptoms

Researchers from HKU School of Biological Sciences reveal the important role of SCT Receptor in regulating drinking behaviour under thirst. The study demonstrates how SCTR participates in SFO to regulate thirst and provides new insights into gut-brain axis regulation.

SourceThe University of Hong Kong·JournalCurrent Biology·TypeExperimental study·DateFeb 14, 2023

10 leading stroke scientists to receive American Stroke Association honors, including the Ralph L. Sacco Outstanding Stroke Research Mentor Award

The American Heart Association is recognizing 10 leading stroke scientists who have made significant contributions to the field of stroke research. Among them, Dr. Cheryl Bushnell will be honored with the Ralph L. Sacco Outstanding Stroke Research Mentor Award for her exceptional mentorship and research in women's issues related to str...

Identified mechanism involved in development and intensification of cancer treatment-related pain

A study found that immune checkpoint inhibitors enhance chemotherapy-induced neuropathic pain by blocking interaction between macrophages and neurons via PD1-PDL1 synergy. This discovery could lead to the development of therapeutic alternatives to prevent pain while maintaining anti-neoplastic effects.

SourceFundação de Amparo à Pesquisa do Estado de São Paulo·JournalCancer Immunology Research·DateJan 30, 2023

Mechanical forces in the nervous system play a corrective role

In a breakthrough study, researchers at Münster University revealed that mechanical tearing is the primary mechanism behind neurite pruning in sensory nerve cells of fruit flies. This process, which occurs during development, involves strong body contractions causing stress on fragile neurites, leading to their severance and removal.

SourceUniversity of Münster·JournalJournal of Cell Biology·TypeExperimental study·DateJan 25, 2023

When chronic stress activates these neurons, behavioral problems like loss of pleasure, depression result

Scientists found that chronic stress increases the activity of proopiomelanocortin (POMC) neurons, leading to behaviors such as anhedonia and depression. Inhibiting POMC neuron activity reduced these behavioral changes. The study suggests that POMC neurons play a key role in increasing susceptibility to stress-related behavioral problems.

SourceMedical College of Georgia at Augusta University·JournalMolecular Psychiatry·DateJan 24, 2023

Inner ear has a need for speed

Researchers have discovered a unique, fast synapse in the inner ear that processes signals faster than any other in the human body. This breakthrough could lead to improved treatments for vertigo and balance disorders affecting millions of Americans over 40.

SourceRice University·JournalProceedings of the National Academy of Sciences·TypeComputational simulation/modeling·DateJan 18, 2023

New study puts gut microbiome at the center of Parkinson’s disease pathogenesis

A recent study published in Nature Communications has found a significant imbalance in the gut microbiome of individuals with Parkinson's disease. The researchers discovered that over 30% of micro-organisms and bacterial genes tested had altered abundances, indicating a widespread imbalance in the microbiome.

SourceUniversity of Alabama at Birmingham·JournalNature Communications·TypeData/statistical analysis·DateJan 10, 2023

To identify a voice, brains rely on sight

A new study suggests that the brain's ability to identify a voice is linked to its ability to recognize faces, with a common brain center processing both visual and auditory information. This finding has important implications for understanding disorders where voice or face recognition is compromised.

SourceUniversity of Pittsburgh·JournalJournal of Neurophysiology·DateJan 3, 2023

Researchers investigate neuron differentiation in fruit fly brains

The study reveals that non-coding regions near sloppy-paired genes are essential for temporal transcription factor expression and that Notch-signaling regulates the transition to subsequent TTFs. This mechanism couples temporal patterning with neuron generation, providing insights into brain diversity.

Aging | IGF1 gene therapy in middle-aged female rats delays reproductive senescence through its effects on hypothalamic GnRH and kisspeptin neurons

Researchers found that IGF1 gene therapy increases kisspeptin expression and GnRH release, and alters microglial cell numbers, suggesting a potential protective effect against reproductive decline. This could lead to new strategies for optimizing lifespan and combating age-related health problems in women.

SourceImpact Journals LLC·JournalAging-US·TypeExperimental study·DateNov 16, 2022

Children learn more quickly than adults

A study published in Current Biology found that children exhibit rapid boosts of GABA during visual training, stabilizing new learning and making it more efficient. This discovery suggests that children may acquire new knowledge and skills faster than adults, with implications for teaching and learning strategies.

SourceCell Press·JournalCurrent Biology·TypeObservational study·DateNov 15, 2022

How squid and octopus get their big brains

Researchers discovered that cephalopods develop their large nervous systems using similar mechanisms as vertebrates, with a focus on the retina. This study provides insight into the developmental process of these intelligent creatures and could lead to new discoveries about human brain development.

SourceHarvard University·JournalCurrent Biology·TypeExperimental study·DateNov 9, 2022

New insights into lithium’s effectiveness for bipolar disorder

A recent study identifies a specific gene, GNL3, that regulates neural proliferation in response to lithium, which is used to treat bipolar disorder. This gene plays an important role in brain function and has been implicated in risk for bipolar disorder, schizophrenia, and inter-individual variations in intelligence.

SourceElsevier·JournalBiological Psychiatry·TypeExperimental study·DateOct 18, 2022

Study shows shaker channel mutation differs structurally from human potassium channels

A recent study led by Dr. Luis Cuello and Alain J. Labro found that a known Shaker channel mutation differs structurally from its human counterparts, with implications for drug development and ion transport mechanisms. The research reveals a unique conformation of the W434F mutant that is distinct from wild-type channels.

SourceTexas Tech University Health Sciences Center·JournalScience Advances·TypeObservational study·DateOct 11, 2022

Zinc could treat a rare genetic disorder

Researchers discovered that zinc can restore the functioning of proteins affected by mutations in the GNAO1 gene, leading to severe mental and motor disabilities. By reactivating hydrolysis, zinc enables neurons to communicate correctly with their environment.

SourceUniversité de Genève·JournalScience Advances·TypeNews article·DateOct 10, 2022

Unraveling the reward behavior: mechanisms underlying the dopamine signaling pathway

A team of researchers identified a protein kinase substrate downstream of the dopamine signaling pathway regulating brain reward behavior. The study found that phosphorylation of potassium voltage-gated channel subfamily Q member 2 (KCNQ2) decreases its channel activity, increasing neuronal excitability and promoting reward behavior.

SourceFujita Health University·JournalCell Reports·TypeExperimental study·DateSep 29, 2022

Rare human gene variant in ADHD, autism exposes fundamental sex differences

A new study reveals key differences in dopamine disposal machinery between male and female mice with a rare human genetic variant found in boys with ADHD or ASD. Females exhibit unique behavioral changes, such as increased anxiety and novelty recognition issues, while males display reduced social behavior and perseverative traits.

SourceFlorida Atlantic University·JournalMolecular Psychiatry·TypeExperimental study·DateSep 21, 2022

How the brain develops: a new way to shed light on cognition

A new neurocomputational model introduces a three-level information processing framework to understand brain development and cognition. The model focuses on Hebbian learning and reinforcement learning, highlighting two fundamental mechanisms for multilevel cognitive ability development in biological neural networks.

SourceUniversity of Montreal·JournalProceedings of the National Academy of Sciences·DateSep 20, 2022

How the brain interprets motion while in motion

Researchers at the University of Rochester have discovered a novel neural mechanism involved in causal inference that helps the brain detect object motion during self-motion. This discovery may have applications in designing artificial intelligence devices and developing treatments for brain disorders such as autism and schizophrenia.

SourceUniversity of Rochester·JournaleLife·DateJun 21, 2022

Ubiquitous nutrients suppress appetite and promote movement

A study published in Current Biology found that consuming non-essential amino acids can curb appetite and encourage physical activity in mice. This mechanism is thought to be rooted in evolutionary history, where eating these amino acids promoted the urge to seek out more nutrient-rich food sources.

SourceETH Zurich·JournalCurrent Biology·DateApr 20, 2022

Dog brains can distinguish between languages

A new study by researchers from Eötvös Loránd University found that dog brains can differentiate between two languages, with distinct activity patterns in primary and secondary auditory cortices. The study used brain imaging to compare dogs' responses to speech and non-speech stimuli in Spanish and Hungarian.

SourceEötvös Loránd University·JournalNeuroImage·DateJan 6, 2022

Scientists pick up the 'slack' on describing the brain networks behind motor function

A new study by Ritsumeikan University reveals that whole-body dynamic balance training increases brain connectivity and improves motor learning. The research found significant changes in brain activity associated with offline learning, opening up new avenues for studying neural networks during natural tasks.

SourceRitsumeikan University·JournalMedicine & Science in Sports & Exercise·TypeExperimental study·DateNov 22, 2021

A "compass" in the brain to navigate thoughts

Researchers at the University of Trento discovered brain cells acting as a compass for navigating conceptual spaces, similar to those found in physical environments. These 'head-direction cells' signal direction even when movement occurs in abstract spaces, suggesting a complementary mechanism for conceptual navigation.

SourceUniversità di Trento·JournalCommunications Biology·TypeImaging analysis·DateNov 17, 2021

Ever been lost in the grocery store? Researchers are closer to knowing why it happens

A new study suggests that the brain uses a mechanism called 'repulsion' to differentiate between similar environments. Researchers found that when participants were asked about stores shared between two cities, their brains showed surprisingly different patterns of activity, indicating that they were treating these familiar locations a...

SourceUniversity of Arizona·JournalNature Communications·TypeObservational study·DateNov 16, 2021