In the rapidly advancing world of bioscience, it is very important to improve the research environment. In the Department of Biosciences, we strongly support education and research by enhancing facilities and equipment; culture equipment such as Jar fermentor used for mass cultivation of microorganisms, various analytical equipment such as GC-MS and high performance liquid chromatography, and observation equipment such as laser microdissection and electron microscope.
When resercing plant growth, we grow a variety of plants, including genetic variants.
We maintain a constant breeding environment for mice, such as temperature, humidity and lighting (light-dark cycle), and breed genetically modified mice used in research.
This device is used for mass culture of microorganisms. We can stably cultivate microorganisms by keeping the culturing conditions constant.
It is used for identification of trace components contained in extracts from living organisms and chemicals, and for quantitative analysis. Since there are various types depending on method when ionizing or detecting the sample, we use them properly according to the purpose and the properties of the sample.
It is a device that can handle a wide range of activities such as separation, detection and isolation of active ingredients from cultured microorganisms, or identification and quantification of active ingredients.
It is a device that can directly perform mass spectrometry of tissue sections and creat images of biomolecules based on the obtained information.
It is a device that analyzes the base sequence of DNA (A, C, G, T). RNA is examined by converting RNA into DNA.
It is a device that can measure the amplification of gene fragments by the polymerase chain reaction (PCR) in real time. It is used for quantitative expression analysis of the target gene.
It is used for identification of trace components contained in extracts from living organisms and chemicals, and for quantitative analysis. Since there are various types depending on method when ionizing or detecting the sample, we use them properly according to the purpose and the properties of the sample.
By observing signals from the atoms that form substances, we will study the structure and function of molecules such as proteins and nucleic acids.
It is a device that examines the electrical characteristics of nerve cells to analyze brain function. We resarch the cranial neural function of the mouse by piercing the electrodes under a microscope equipped with a near-infrared camera.
It is a device that can excise and collect a specific part with a laser while observing a tissue section by the microscope.
It is a microscope that have a feature of observeing minute structures that cannot be seen with an optical microscope. By using an electron beam instead of light, it is disassemble about 0.1 nm.
It is a microscope for observing samples dyed with fluorescent dyes and biological samples containing fluorescent proteins.
It is an indispensable tool for modern cellular and molecular biology. It can acquire continuous tomogram of samples dyed in high resolution and reconstruct three-dimensional information with computer.
We can observe from low magnification to high magnification without complicated pretreatment. It has a cooling stage so we can observe delicate samples without drying.
It is used to acquire high-resolution data of tissue samples or frozen samples.
It is roughly divided into a brain tissue section preparation device or an all-in-one fluorescence microscope, and is a device that can analyze the entire brain tissue of animals such as mice in high resolution.
It is a device that can analyze intracellular calcium or protein interactions in real time in high resolution.