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RIKEN


'Jumping film' harnesses the power of humidity

Scientists create a film that curls up and straightens autonomously when exposed to tiny changes in humidity, using it to transform environmental fluctuations into mechanical energy. The film can jump high and repeatedly bend and straighten without deterioration.

SourceRIKEN·JournalNature Materials·DateJul 18, 2016

Where do rubber trees get their rubber?

Researchers have successfully sequenced the genome of Hevea brasiliensis, the natural rubber tree, uncovering key genes responsible for its unique properties. The study identifies a cluster of genes related to rubber biosynthesis and disease resistance, which may contribute to the tree's high latex production.

SourceRIKEN·JournalScientific Reports·DateJun 24, 2016

Improving poor soil with burned up biomass

Adding torrefied biomass to poor soil from Botswana increased water retention and promoted plant growth. The treated soil showed higher levels of potassium, phosphorus, and sulfur, as well as thicker stems, longer roots, and heavier plants.

SourceRIKEN·JournalScientific Reports·DateJun 17, 2016

Amino acid sequences are key to the properties of silks

A new study from RIKEN Center for Sustainable Resource Science reveals that amino acid sequences are key determinants of silk fiber material properties. The research sheds light on the unique properties of silkworm silks, including their mechanical and thermal behavior.

SourceRIKEN·JournalScientific Reports·DateJun 9, 2016

The deadly toxin acrolein has a useful biological role

Researchers at RIKEN discovered that acrolein can combine with polyamines to form substances that prevent the aggregation of amyloid-beta peptides, a process linked to Alzheimer's disease. The findings suggest that acrolein may have an anti-fibrillation effect, potentially influencing the progression of neurological disorders.

SourceRIKEN·JournalAdvanced Science·DateJun 1, 2016

A jolt from the blue: Rays provide power for an electric generator

Researchers from RIKEN Quantitative Biology Center create a new type of electricity generator based on the electric organs of torpedoes, achieving peak voltages and currents comparable to conventional systems. The breakthrough could lead to a future high-efficiency power generator that uses ATP directly.

SourceRIKEN·JournalScientific Reports·DateMay 31, 2016

Fish courtship pheromone uses the brain's smell pathway

Researchers discovered that a molecule involved in fish reproduction, PGF2α, activates the brain via the nose, synchronizing reproductive behaviors between male and female zebrafish. The molecule binds to specific olfactory receptors, activating a dedicated neural pathway to areas of the brain responsible for courtship behavior.

SourceRIKEN·JournalNature Neuroscience·DateMay 30, 2016

The brain clock that keeps memories ticking

Research from RIKEN Brain Science Institute in Japan identifies the brain clock that keeps memories organized across time. Without CA3 input, the neural orchestra loses its conductor, leading to errors in representing space and impairing accurate prediction of spatial location.

SourceRIKEN·JournalNature Neuroscience·DateMay 30, 2016

Mimicking deep sleep brain activity improves memory

The study found that artificially applying synchronous slow wave brain activity during non-REM sleep can enhance memory consolidation, allowing mice to retain memories for up to 4 days. This discovery suggests a potential route to therapy using transcortical magnetic or direct-current stimulation to reactivate sleep-deprived neurons.

SourceRIKEN·JournalScience·DateMay 26, 2016

Current atmospheric models underestimate the dirtiness of Arctic air

Current simulation models consistently underestimate black carbon aerosols in Arctic air, but fine-grained simulations using powerful supercomputers can mitigate this underestimation. The research found that more realistic modeling of weather and climate patterns is possible with finer grids and larger computational power.

SourceRIKEN·JournalScientific Reports·DateMay 25, 2016

Physicists detect the enigmatic spin momentum of light

Researchers at RIKEN and the University of Bristol have experimentally verified that light exerts a new type of optical force proportional to its circular polarization. The team used an extremely precise nano-cantilever to measure this force, which is much weaker than usual radiation pressure.

SourceRIKEN·JournalNature Physics·DateApr 25, 2016

Growing skin in the lab

Researchers successfully grew skin tissue with hair follicles and sebaceous glands in the laboratory using reprogrammed iPS cells. The tissues formed normal connections with surrounding nerves and muscle fibers, paving the way for potential functional skin transplants.

SourceRIKEN·JournalScience Advances·DateApr 1, 2016

Fights are won and lost in the brain

A deep-brain structure called the habenula contains two neural circuits that influence whether a fight will be won or lost in zebrafish. The circuits regulate surrender or continuing aggression based on activity levels in different sub-regions, suggesting a dynamic mechanism for determining fight outcomes.

SourceRIKEN·JournalScience·DateMar 31, 2016

Calcium waves in the brain alleviate depressive behavior in mice

Researchers found that transcranial direct current stimulation causes synchronized calcium surges from astrocytes, reducing depressive symptoms and increasing neural plasticity. This effect is absent when blocking astrocytic calcium surges, highlighting their importance in therapeutic outcomes.

SourceRIKEN·JournalNature Communications·DateMar 22, 2016

Brain calcium controls how long we sleep

Researchers at RIKEN have discovered that calcium inside neurons regulates slow-wave sleep, with seven genes identified as critical for controlling sleep duration. The study's findings could lead to new treatments for sleep disorders and neurologic diseases associated with them.

SourceRIKEN·JournalNeuron·DateMar 17, 2016

Super-clear synapses at super resolutions

A new process for making brain tissue transparent has been developed at RIKEN Center for Developmental Biology, allowing for the creation of super-resolution 3-D images of delicate structures deep in the brain. This breakthrough enables researchers to visualize synaptic changes and neural structures with unprecedented detail.

SourceRIKEN·JournalCell Reports·DateMar 10, 2016

Clarifying the role of magnetism in high-temperature superconductors

Researchers investigated magnetism's influence on atomic vibrations in iron-pnictide superconductors, finding magnetic fluctuations play a crucial role. The study provides insight into the interaction between magnetism and atomic vibrations, potentially leading to materials that superconduct close to room temperature.

SourceRIKEN·JournalPhysical Review B·DateJan 25, 2016

Snappy Sleep Stager system identifies gene related to shorter sleep

Researchers at RIKEN QBiC have developed a new method for monitoring mouse sleep cycles using the Snappy Sleep Stager, a non-invasive and automated system. The system has identified a new short-sleeper gene, Nr3a, which is associated with schizophrenia, Alzheimer's disease, and depression, all of which are linked to sleep disturbances.

SourceRIKEN·JournalCell Reports·DateJan 7, 2016

Multiplying teeth

Researchers have successfully multiplied teeth in mice by splitting tooth germ cells and implanting them into the jaw. This discovery could lead to new treatments for people born with missing teeth or who lose teeth due to accidents or disease.

SourceRIKEN·JournalScientific Reports·DateDec 18, 2015

The double life of a bacteria

Researchers discovered a bacterium that can use direct uptake of electrons from an electrode to fuel its metabolic pathway. This finding suggests the existence of electro-ecosystems, where microorganisms sustain life by electrical current, not relying on inorganic substances or light.

SourceRIKEN·JournalFrontiers in Microbiology·DateDec 16, 2015

New method for imaging marmoset brains

Researchers developed a new system to image individual neurons in the marmoset brain, overcoming limitations with two-photon microscopy. This allows for long-term study of neural activity related to cognitive and social behaviors.

SourceRIKEN·JournalCell Reports·DateNov 19, 2015

A treasure trove of new cancer biomarkers

Researchers have discovered a large number of genes that are upregulated in various types of cancer, which could be used to develop early detection tests and targeted therapies. The study, published in Cancer Research, utilized two different technologies to identify 128 markers that were consistently perturbed in both datasets.

SourceRIKEN·JournalCancer Research·DateNov 10, 2015

Largest ensemble simulation of global weather using real-world data

Researchers at RIKEN Advanced Institute for Computational Science in Japan ran an enormous global weather simulation with 10,240 simulations of a model of the global atmosphere. They found that faraway observations can impact the eventual state of the weather forecast, which could lead to more accurate forecasts.

SourceRIKEN·JournalComputer·DateNov 10, 2015

Retroviral RNA may play a part in liver cancer

Research suggests that retroviral long-terminal-repeat promoters may contribute to the emergence of hepatocellular carcinoma. The study found that these elements are highly activated in liver cancer tumors and non-tumor tissue from patients with different etiologies, including viral hepatitis or alcohol use.

SourceRIKEN·JournalGenome Research·DateOct 28, 2015

Secrets of a rice-killing fungal toxin

Scientists have identified the enzyme responsible for synthesizing tenuazonic acid (TeA), a well-known fungus-killing toxin that affects rice and other crops. The unique TeA synthetase 1 (TAS1) enzyme has an NRPS-PKS structure, previously thought to be exclusive to bacteria.

SourceRIKEN·JournalNature Communications·DateOct 27, 2015

Manipulating wrinkles could lead to graphene semiconductors

Researchers at RIKEN have discovered that wrinkles in graphene can form a junction-like structure, changing its electronic properties from zero-gap conductor to semiconductor and back. By manipulating the carbon structure using scanning tunneling microscopy, they have opened up new possibilities for graphene engineering.

SourceRIKEN·JournalNature Communications·DateOct 23, 2015

Blocking differentiation is enough to give cells 'stemness'

Researchers at RIKEN have discovered a method to maintain immune cells in a stem cell-like state by inhibiting differentiation, allowing them to proliferate extensively. This breakthrough could lead to the development of new treatments for regenerative medicine and immune therapy.

SourceRIKEN·JournalStem Cell Reports·DateOct 22, 2015