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  1. Igniting the Rheumatoid Arthritis Flame Through A Cellular Cascade

    Osaka University-led international researchers identified a network of cells responsible for secretion of a key inflammatory cytokine in development of ...

    存在位置 Research Info / 2018
  2. Step-by-Step Account of Systemic Lupus Erythematosus Development Revealed

    Osaka University researchers elucidated the pathophysiology of systemic lupus erythematosus (SLE), an autoimmune disorder that causes inflammation and tissue ...

    存在位置 Research Info / 2018
  3. Brain cancer potentially resists immunotherapies by trapping T cells in bone marrow

    Researchers in collaboration with Osaka University found that brain tumors in mice and humans cause immune T-cells to become trapped in bone marrow. This ...

    存在位置 Research Info / 2018
  4. New method uses just a drop of blood to monitor lung cancer treatment 存在位置 Research Info / 2018
  5. Non-invasive microscopy detects activation state and distinguishes between cell types 存在位置 Research Info / 2019
  6. Big Data Provides Clues for Characterizing Immunity in Japanese

    Osaka University researchers used various sets of large-scale data to characterize the variation and phenotypic associations of an immunity-related gene region ...

    存在位置 Research Info / 2019
  7. Immunotherapy and Diabetes: A Game of Hide and Seek?

    Immune checkpoint inhibitors (ICIs) are emerging as an effective treatment for certain cancers, but in rare cases can cause autoimmune diseases. Researchers at ...

    存在位置 Research Info / 2019
  8. How hepatitis C virus evades the immune system

    Researchers from Osaka University unpicked how hepatitis C virus (HCV) and human cytomegalovirus (HCMV) evade the immune system to cause chronic infection. By ...

    存在位置 Research Info / 2021
  9. The molecular underpinnings of immune cell migration

    Researchers from Osaka University discovered a novel molecular mechanism by which immune cells migrate and reach sites of infection. By studying dendritic ...

    存在位置 Research Info / 2021
  10. No more aggravation: ATP-hydrolyzing ectoenzyme E-NTPD8 attenuates colitis

    Osaka University researchers identified a mechanism underlying prevention of microbial metabolite-induced colitis. A protein called E-NTPD8 breaks down ATP ...

    存在位置 Research Info / 2021
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