
Shirokanedai, Japan

Shirokanedai, Japan

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Post Graduate Fees International Students
A renowned immunologist who discovered interleukin-6 and its role in inflammation and autoimmune diseases, leading to th... View More
A renowned immunologist who discovered interleukin-6 and its role in inflammation and autoimmune diseases, leading to the development of targeted therapies for rheumatoid arthritis. View Less
A world-leading scientist known for his seminal work on Toll-like receptors (TLRs), which unlocked the fundamental mecha... View More
A world-leading scientist known for his seminal work on Toll-like receptors (TLRs), which unlocked the fundamental mechanisms of innate immunity and pathogen recognition. View Less
A distinguished materials scientist who discovered iron-based superconductors, a major breakthrough that opened a new cl... View More
A distinguished materials scientist who discovered iron-based superconductors, a major breakthrough that opened a new class of high-temperature superconductors. View Less
A Nobel Laureate recognized for his pioneering discoveries of the mechanisms underlying autophagy, the essential process... View More
A Nobel Laureate recognized for his pioneering discoveries of the mechanisms underlying autophagy, the essential process of cellular self-degradation. View Less
A leading cell biologist celebrated for his discovery of cadherins, the key molecules responsible for cell-to-cell adhes... View More
A leading cell biologist celebrated for his discovery of cadherins, the key molecules responsible for cell-to-cell adhesion, fundamental to tissue formation. View Less
A Nobel Laureate in Chemistry for his development of soft laser desorption mass spectrometry, a method that enabled the ... View More
A Nobel Laureate in Chemistry for his development of soft laser desorption mass spectrometry, a method that enabled the analysis of biological macromolecules. View Less
A Nobel Laureate known for his discovery of Avermectin, derivatives of which have radically lowered the incidence of Riv... View More
A Nobel Laureate known for his discovery of Avermectin, derivatives of which have radically lowered the incidence of River Blindness and other parasitic diseases. View Less
A Nobel Laureate honored for his invention of the lithium-ion battery, a revolutionary technology that powers modern por... View More
A Nobel Laureate honored for his invention of the lithium-ion battery, a revolutionary technology that powers modern portable electronics. View Less
The Shirokanedai Campus, while compact, is designed to support intensive research activities. Its infrastructure includes multiple modern research buildings equipped with advanced laboratory spaces, specialized containment facilities for pathogen research, and extensive animal housing facilities that meet international standards. The campus provides a robust IT network, high-performance computing resources for bioinformatics, and centralized facilities for genomics, proteomics, and flow cytometry, ensuring that researchers have the necessary tools for cutting-edge scientific investigation.
Student life at Shirokanedai is intensely focused on research, fostering a close-knit community among its graduate students and researchers. While the campus itself is research-oriented, students regularly organize and participate in lab retreats, international symposia, and journal clubs. The campus's location in central Tokyo provides easy access to the cultural and social amenities of the city, and students often socialize at nearby cafes and restaurants, creating a collegial and collaborative atmosphere outside the laboratory.


Career support for students at the Shirokanedai Campus is tailored towards careers in academia, industry research, and related biotechnology fields. The University's Career Support Office provides services including individual career counseling, CV and resume checks, and interview practice sessions. The campus frequently hosts career seminars and company information sessions specifically from pharmaceutical and biotech firms, facilitating direct connections between students and potential employers for postdoctoral and research scientist positions.
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The Shirokanedai Campus does not offer Bachelor's degree programs. It is a dedicated graduate school.
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Researchers at the Institute for Medical Science at Shirokanedai have made numerous landmark achievements. These include the discovery of the regulatory T cell, a pivotal finding in immunology, major contributions to the Human Genome Project, and the development of advanced gene therapy techniques. The campus is consistently ranked among the top institutions in Japan for its high-impact research output and its contributions to understanding and treating cancer, infectious diseases, and genetic disorders.


Tasuku Honjo was awarded for his discovery of cancer therapy by inhibition of negative immune regulation, leading to revolutionary PD-1 checkpoint inhibitors.
Takaaki Kajita was awarded for the discovery of neutrino oscillations, which shows that neutrinos have mass and changes our understanding of particle physics.
Shinya Yamanaka was awarded for the discovery that mature cells can be reprogrammed to become pluripotent stem cells, a transformative achievement.
Yoichiro Nambu was awarded for the discovery of the mechanism of spontaneous broken symmetry in subatomic physics.
Ryoji Noyori was awarded for his work on chirally catalyzed hydrogenation reactions, which is critically important for the synthesis of new pharmaceuticals.
Innovation at the Shirokanedai Campus is driven by its focus on translational research. Key areas of development include cancer immunotherapy, regenerative medicine using iPS cells, novel vaccine platforms, and personalized medicine based on genomic information. The campus actively promotes entrepreneurship among its researchers, supporting the patenting of discoveries and the creation of venture startups to bring new technologies to the market.
Pioneered methods to create genetically modified mice where specific genes can be inactivated in a time- and tissue-specific manner, becoming a gold standard tool in genetic research.
Pioneered a safer and effective ex vivo gene therapy protocol for Severe Combined Immunodeficiency (SCID) using a lentiviral vector, restoring immune function in patients.
Professor Shinya Yamanaka, while at affiliated institutions, discovered the four transcription factors that can reprogram adult cells into pluripotent stem cells, a transformative achievement in regenerative medicine.
Developed a groundbreaking cancer treatment using a genetically engineered herpes simplex virus that selectively replicates in and destroys cancer cells, leading to an approved drug.
Developed a groundbreaking cancer treatment using a genetically engineered herpes simplex virus that selectively replicates in and destroys cancer cells, leading to an approved drug.
Played a central role in the international Human Genome Project, contributing significantly to the sequencing and analysis of the human genome and establishing Japan's leading bioinformatics resource.

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