進階篩選

Technical category
    • Application of inorganic nanofiber technology to promote the development of biotechnology

      Smart machinerynovel materials FutureTech Application of inorganic nanofiber technology to promote the development of biotechnology

      Inorganic porous nanofibers with surfaceinterface defects are prepared through humidity-controlled electrospinninghigh-temperature annealing technology. Under the irradiation of light sources of different wavelengths (380~780 nm), the bound electrons stored in the valence band can be excited to the conduction band to form free electrons on the surface of the material, generating different intensities of microcurrents, light sensitivitymicrocurrent changes. Because the "inorganic nanofiber" technology has high uniquenesshigh product compatibility, it can be applied to a wide range of markets.
    • (test)Application of inorganic nanofiber technology to promote the development of biotechnology

      Smart machinerynovel materials FutureTech (test)Application of inorganic nanofiber technology to promote the development of biotechnology

      Inorganic porous nanofibers with surfaceinterface defects are prepared through humidity-controlled electrospinninghigh-temperature annealing technology. Under the irradiation of light sources of different wavelengths (380~780 nm), the bound electrons stored in the valence band can be excited to the conduction band to form free electrons on the surface of the material, generating different intensities of microcurrents, light sensitivitymicrocurrent changes. Because the "inorganic nanofiber" technology has high uniquenesshigh product compatibility, it can be applied to a wide range of markets.
    • A Kinase Inhibitor that Induces Degradation of MYC Oncoprotein

      Precision Health Ecosystem FutureTech A Kinase Inhibitor that Induces Degradation of MYC Oncoprotein

      This technology is a development drug lead aiming to meet the medical needs of patients with small cell lung cancer. Through disturbing MYC-Aurora A interaction and inducing degradation of MYC oncoprotein, this bioavailable kinase inhibitor could serve as a potential treatment entity for SCLC.
    • BPRSJ338: Therapeutic Applications for COVID-19

      Precision Health Ecosystem FutureTech BPRSJ338: Therapeutic Applications for COVID-19

      BPRSJ338 exhibits high potency of anti-SARS-CoV-2 activity and is in development for fighting COVID-19 as a first-in-class drug. BPRSJ338 also potently inhibits against broad-spectrum coronaviruses including SARS-CoV-2, SARS-CoV, HCoV-229E, HCoV-OC43, TGEV, FIPV and MHV. Related US and Taiwan patents have been granted.​ Therefore it is also applicable to fight against severe evolving coronaviruses in the future.
    • First-in-class anti-diabetic drug, PS1

      Precision Health Ecosystem FutureTech First-in-class anti-diabetic drug, PS1

      Diabetes is now still an incurable disease. Beta cell failure is one of common causes. No drugs for this failure have been developed. This invention is to developapply PS1 to treatreverse diabetes. PS1 is a first-in-class small-molecule drug, which targets beta cells by improving their survivalfunction. As a result, PS1 can treatreverse diabetes. The anti-diabetic mechanism of
    • Germplasm Bank of Medicinal Coral Producing New Targeted Anti-cancer Agenttheir Aquaculture Technology Platform

      Precision Health Ecosystem FutureTech Germplasm Bank of Medicinal Coral Producing New Targeted Anti-cancer Agenttheir Aquaculture Technology Platform

      The present invention discloses the germplasm bank of medicinal coral producing new targeted anti-cancer agent and their aquaculture technology platform. The medicinal corals are collected in Kenting, located at the southern tip of Taiwan. In response to the unmet medical needs of new anti-cancer drugs, our research results will provide more diverse types of new drug targets and lead compounds in the "new drug development-new drug discovery and exploration period".