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By exerting “crowd control” over mouse cells, scientists make progress towards engineering tissues

Researchers create system to manipulate cell behavior using 'crowd control' technique, enabling predictable patterns and structures. Cell density plays key role in guiding cellular development, offering potential for medical applications such as tissue engineering and organ regeneration.

SourceKeck School of Medicine of USC·JournalNature Communications·TypeExperimental study·DateNov 19, 2024

New insights into neural circuit imaging: A comparison of one-photon and two-photon techniques

A recent study by Harvard University researchers compares the effectiveness of one-photon (1P) versus two-photon (2P) voltage imaging in neural circuits. The study found that 2P excitation requires approximately 10,000 times more illumination power per cell compared to 1P excitation, posing significant challenges for 2P voltage imaging.

Decoding the ‘chassis effect”: host physiology emerges as key predictor

A study found that host physiology, rather than phylogenomic relatedness, is a reliable predictor of genetic circuit performance in Gammaproteobacteria hosts. The researchers discovered the 'chassis effect' by characterizing the performance of a genetic inverter circuit in six different bacterial species.

SourceNanjing Agricultural University The Academy of Science·JournalBioDesign Research·TypeExperimental study·DateDec 13, 2023

A genetic circuit guides microorganisms to stop fighting and work together in a cell factory

A joint research team developed a new bioprocess by introducing a genetic circuit that induces cooperation among microorganisms, leading to improved productivity. The consortium, composed of Vibrio sp. dhg and E. coli strain, successfully acclimated to the genetic circuit, increasing 3-HP production 4.3-fold over simple co-culturing.

SourcePohang University of Science & Technology (POSTECH)·JournalNature Communications·DateNov 28, 2022

Wireless activation of targeted brain circuits in less than one second

Researchers from Rice University, Duke University, Brown University and Baylor College of Medicine developed a magnetic technology to wirelessly control neural circuits in fruit flies. They used genetic engineering to express heat-sensitive ion channels in neurons that control the behavior, and iron nanoparticles to activate the channels.

SourceRice University·JournalNature Materials·TypeExperimental study·DateJul 14, 2022

A 'wise counsel' for synthetic biology

A team of researchers at Max-Planck-Gesellschaft developed METIS, a modular software system for optimizing biological systems using machine learning. The tool allows users to optimize their already discovered or synthesized biological systems and can be used with different lab equipment.

SourceMax-Planck-Gesellschaft·JournalNature Communications·TypeComputational simulation/modeling·DateJul 8, 2022

Brain circuitry shaped by competition for space as well as genetics

A new computer modelling study suggests that simple interactions between nerve cells contribute to the development of complex brain circuits, making a precise genetic blueprint unnecessary. The findings help answer how the brain wires itself during development and may inform new ways to treat conditions that disrupt brain circuits.

SourceeLife·DateSep 29, 2020

Back to the sources of neural diversity

Swiss and Belgian researchers decipher the genetic programmes of neurons in the cerebral cortex to understand how specific cell types are generated. They found temporal patterns of gene expression that control the developmental scenario, which may contribute to neurodevelopmental disorders.

SourceUniversité de Genève·JournalScience·DateMay 9, 2019

Drugs of abuse: Identifying the addiction circuit

Researchers at UNIGE have pinpointed the brain circuit responsible for addictive behavior in rodents. The study found that a stronger connection between decision-making and reward systems led to compulsive behavior, which could be regulated by artificially increasing or decreasing the activity of this circuit.

SourceUniversité de Genève·JournalNature·DateDec 19, 2018

Illinois researchers develop gene circuit design strategy to advance synthetic biology

Researchers at the University of Illinois have developed a new gene circuit design strategy that can predict gene circuit behaviors using an integrated modeling framework. The framework, developed by Associate Professor Ting Lu and his graduate students, has successfully predicted key host metrics for multiple bacteria, including Esche...

Rice U. unveils dual-channel biological function generator

Researchers develop biofunction generator and bioscilloscope to analyze and manipulate two biological circuits simultaneously, enabling precise control over gene expression and protein production. The technology, based on mathematical modeling and optogenetics, offers new insights into complex synthetic biological systems.

SourceRice University·JournalMolecular Systems Biology·DateMay 8, 2017

Estrogen alters memory circuit function in women with gene variant

Research reveals that fluctuations in estrogen can trigger atypical functioning in a key brain memory circuit in women with a common version of the gene, NIMH scientists have discovered. This finding may help explain individual differences in menstrual cycle and reproductive-related mental disorders linked to fluctuations in the hormone.

SourceNIH/National Institute of Mental Health·JournalMolecular Psychiatry·DateApr 25, 2017

Scientists 'plug in' to circuitry behind sex in male fruit flies

Researchers have identified a small neural circuit in male fruit flies that controls the complex mating ritual, with specific groups of cells controlling distinct steps. The findings suggest a mechanism for separating sex from reproductive function and provide insight into universal principles of nervous system coordination.

SourceeLife·DateNov 15, 2016

Implant acts as a countermeasure

Researchers developed molecular prosthetics that can detect complex signals in the immune system to suppress inflammatory responses. The prosthetics were implanted into mice and successfully treated psoriasis, providing a potential early-warning system for prevention.

SourceETH Zurich·JournalScience Translational Medicine·DateDec 16, 2015

Scripps Florida scientists offer new insight into neuron changes brought about by aging

Researchers at Scripps Florida Institute discovered significant changes in gene expression and neural circuitry as neurons age, shedding light on cognitive decline and potential therapeutic targets. The study, using the marine snail Aplysia californica, highlights the complex interplay between aging and neuron communication.

SourceScripps Research Institute·JournalJournal of Visualized Experiments·DateJan 22, 2014

Researchers divide enzyme to conquer genetic puzzle

Researchers at Rice University have found a way to divide and modify enzymes to create a genetic logic gate, which can be used to mimic digital circuitry. The discovery could lead to the development of diagnostic systems that look for signs of disease and gene therapies in one step.

SourceRice University·JournalProceedings of the National Academy of Sciences·DateMar 14, 2013

Cell circuits remember their history

Researchers at MIT have designed new synthetic biology circuits that combine memory and logic, enabling the creation of long-term environmental sensors and efficient controls for biomanufacturing. These circuits can be used to program stem cells to differentiate into other cell types and provide precise long-term memory.

SourceMassachusetts Institute of Technology·JournalNature Biotechnology·DateFeb 11, 2013