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Kanazawa University


Lighting the way to selective membrane imaging

Researchers at Kanazawa University demonstrate the ability to reversibly control the emission of blue-green light from water-soluble tetraphenylethene molecules on artificial cell membrane surfaces. This controlled emission has potential applications in new biological sensors and smart drug delivery platforms.

SourceKanazawa University·JournalLangmuir·DateNov 4, 2020

A bacterial toxin turning cells into swiss cheese

Researchers from Kanazawa University purified and characterized Monalysin, a pore-forming bacterial toxin, to study its interaction with the innate immune system. The study revealed that activated Monalysin forms pores in cell membranes, leading to cell death, and that it preferentially inserts into curved parts of membranes.

SourceKanazawa University·JournalFrontiers in Immunology·DateJun 23, 2020

Discovery of accurate and far more efficient algorithm for point set registration problems

A new algorithm has been discovered that can accurately register two point sets consisting of millions of points in a fraction of the time taken by conventional methods. The algorithm's accuracy is not compromised despite using approximations, and it has wide-ranging applications in computer graphics and computer vision.

SourceKanazawa University·JournalIEEE Transactions on Pattern Analysis and Machine Intelligence·DateMar 5, 2020

Complete filling of batches of nanopipettes

Researchers at Kanazawa University developed a method to fill nanopipettes using a temperature gradient, achieving complete filling of a batch with pore diameters below 10 nm. The 'air bubble' that typically remains near the pipette's pore end can be removed by applying the temperature gradient.

SourceKanazawa University·JournalAnalytical Chemistry·DateJan 8, 2020

Improved pH probes may help towards cancer treatments

Researchers have developed a nanopipette pH biosensor that can detect changes in extracellular pH with high sensitivity and spatial resolution. The device uses a zwitterionic membrane to enable faster responses and has been tested on live cancer cells, showing its potential for cancer diagnosis, prognosis, and targeted therapies.

SourceKanazawa University·JournalNature Communications·DateDec 6, 2019

Daylight damage-saving time

A research team at Kanazawa University investigated the molecular mechanisms behind organic solar cell damage from sunlight. They found that UV light causes fragile molecules to degrade, leading to reduced efficiency. This study may lead to the development of more robust and efficient solar cells.

SourceKanazawa University·JournalOrganic Electronics·DateDec 2, 2019

Multi-state switchable stationary phase opens new doors in chiral separation

Researchers from Kanazawa University have developed a three-state switchable chiral stationary phase that can be controlled using metal ions, enabling efficient separation of enantiomers. The phase's stability and separation performance were demonstrated over multiple cycles, opening new doors for drug discovery and other research areas.

SourceKanazawa University·JournalJournal of the American Chemical Society·DateJul 31, 2019

Cancer genes and the tumor milieu

A recent study by Chiaki Takahashi at Kanazawa University discovered that the cancer gene RB promotes tumor growth by altering the tumor microenvironment (TME). The TME changes enable the accumulation of immunosuppressive cells, which overpower the body's natural defense system.

SourceKanazawa University·JournalCancer Research·DateJul 8, 2019