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Penn engineers develop AI tool to design peptides that turn signals on or off

Researchers at the University of Pennsylvania and Chinese University of Hong Kong created TD3B, an AI framework guiding peptide generation toward candidates predicted to have a desired effect. The tool predicts binding likelihood and determines activation or deactivation of associated cellular machinery.

Brown researchers show how gut hormones control aging in flies and how it relates to human biology

Researchers at Brown University have found a way to extend the lifespan of flies by suppressing a hormone that regulates insulin secretion. The study suggests that certain medications used to treat human obesity and diabetes may also impact aging, making it a promising area of research for future studies.

SourceBrown University·JournalProceedings of the National Academy of Sciences·TypeExperimental study·DateOct 16, 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

The nose-brain pathway: exploring the role of trigeminal nerves in delivering intranasally administered antidepressant

Researchers developed a novel intranasal delivery system that utilizes the trigeminal nerve to deliver antidepressant drugs to the brain. The system showed efficacy at delivering the same dose as intracerebroventricular administration, highlighting a potential new approach for treating depression and other neurological disorders.

SourceTokyo University of Science·JournalJournal of Controlled Release·TypeExperimental study·DateNov 11, 2022

Shedding light on the happy hormone

A novel fluorescent sensor has been developed to visualize the release of oxytocin, also known as the 'happy hormone', in living animals. The sensor, called MTRIA OT, allows for real-time measurement of extracellular oxytocin dynamics in the brain, revealing variability in OT levels dependent on behavioral and physical conditions.

SourceOsaka University·JournalNature Methods·TypeImaging analysis·DateSep 22, 2022

Into the brain of comb jellies: Scientists explore the evolution of neurons

A new study reveals key clues about the form of the most ancestral nervous system and how it first evolved. Researchers found that neurons, possibly the most complicated cell type ever to evolve, share similar structures with comb jellies and other ancient animal lineages.

SourceOkinawa Institute of Science and Technology (OIST) Graduate University·JournalNature Ecology & Evolution·TypeExperimental study·DateAug 8, 2022

Neural pathway key to sensation of pleasant touch identified

Researchers at Washington University School of Medicine have identified a neural circuit and neuropeptide that transmit the sensation of pleasant touch from the skin to the brain. The discovery may help scientists better understand disorders such as autism spectrum disorder, which often involve impaired social development.

SourceWashU Medicine·JournalScience·TypeExperimental study·DateApr 28, 2022

Illuminating real-time brain dynamics of neuropeptides with a fluorescent biosensor

Scientists have developed a genetically encoded biosensor called OxLight1, which enables them to study the action and release mechanisms of neuropeptides like orexin in living mice. The researchers found that the level of orexin release correlates with neuronal activity, revealing previously invisible aspects of healthy brain function.

SourceUniversity of Zurich·JournalNature Methods·TypeObservational study·DateFeb 10, 2022

Back up: How worms travel in reverse

A study on genetically diverse worms reveals that a small protein called FLP-18 controls the length of their backward movement, which increases the likelihood of changing direction to navigate towards food. This mechanism may help the worm explore a larger area during periods of extreme hunger.

Simultaneous determination of Substance P and CGRP in rat brainstem tissue

Researchers have developed a new, highly sensitive LC-MS/MS method to identify and quantify Substance P (SP) and Calcitonin Gene-Related Peptide (CGRP) in rat brainstem tissue. The study's findings provide insights into the levels of these neuropeptides during migraine attacks and stress, shedding light on potential therapeutic targets.

SourceBentham Science Publishers·JournalCurrent Analytical Chemistry·DateJan 30, 2018

Greener pest control

A team of scientists is working on a project to create new pesticides that target specific insect species without harming beneficial ones. By mimicking the hormone systems of these insects, researchers hope to disrupt their reproductive cycles and prevent population explosions.

UTSW neuroscientists identify cell type in the brain that controls body clock circadian rhythms

Researchers have identified a group of SCN neurons expressing neuromedin S that are necessary and sufficient for controlling circadian rhythms. The study provides new insights into the mechanisms by which light synchronizes body clock rhythms, offering potential targets for future treatments of diseases related to circadian dysfunction.

Genetic code of the deadly tsetse fly unraveled

Researchers have sequenced the tsetse fly's genome, providing insights into its biology and potentially leading to new ways to prevent trypanosomiasis. The study's findings could also help develop environmentally-safe insecticides targeting the fly's neuropeptide systems.

SourceKU Leuven·JournalScience·DateApr 24, 2014

Gene transduction inhibits post-epileptic hippocampal synaptic reconstruction

Researchers found that intracerebroventricular injection of neuropeptide Y gene suppressed mossy fiber sprouting, inhibited abnormal synaptophysin expression, and reduced epileptic seizures. This study suggests a recombinant adeno-associated virus expression vector carrying the neuropeptide Y gene as a potential therapeutic approach.

SourceNeural Regeneration Research·JournalNeural Regeneration Research·DateJul 24, 2013