# of Displayed Technologies: 4 / 4


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Direct Analysis of Air and Water Sensitive Material by In-Chamber Ionization Mass Spectrometry
TS-067160 — The Need Due to the unparalleled ability of Mass spectrometry (MS) to identify and quantify substances at the molecular level it is an indispensable tool in various industries, from pharmaceuticals and forensics to environmental monitoring and materials science. However, the power of MS is often hi…
  • College: College of Arts & Sciences
  • Inventors: Badu-Tawiah, Abraham; Hadad, Christopher; Lalisse, Remy; Sahraeian, Taghi; Wu, Yiying; Zheng, Jingfeng
  • Licensing Officer: Panic, Ana

Addressing the Treatment Gap in Advanced Liposarcoma
TS-062480 — Novel therapeutic compounds to treat advanced liposarcoma.
Patients diagnosed with advanced liposarcoma (LPS) face a significant treatment challenge, as current chemotherapy approaches exhibit low response rates of only 25%, leading to a dismal overall survival at 5 years, ranging between 20% to 34%. The Need Despite extensive efforts, there has been no s…
  • College: College of Medicine (COM)
  • Inventors: Beane, Joal; Goryunova, Marina; Hadad, Christopher; He, Yiran; Zhu, Hua
  • Licensing Officer: Willson, Christopher

Protecting Against Chemical Threats: A Revolutionary Solution
TS-044619 — The Need: The threat of chemical weapons, such as sarin gas and VX, looms large in today's world. These organophosphorus (OP) nerve agents can cause rapid and devastating neurological damage, leading to paralysis, respiratory failure, and death. Current treatments, like oximes, are ineffective …
  • College: College of Arts & Sciences
  • Inventors: Hadad, Christopher; Callam, Christopher; Corrigan, Thomas; Dicken, Rachel; Dogan Ekici, Ozlem; Fitzpatrick, Keegan; Franjesevic, Andrew; McElroy, Craig; McKenney, Ryan; Muthukrishnan, Siva; Sanan, Toby; Vyas, Shubham; Yoder, Ryan; Young, Amneh "Amneh"
  • Licensing Officer: Panic, Ana

Novel Spin Adduct for Free Radical Elimination
TS-015133 — 5-carbamoyl-5-methyl-1-pyrroline N-oxide (AMPO) as an improved cyclic spin trap, especially in mitigating superoxide radicals.
The linear PBN-type nitrones are limited by their ability to discern different radicals while the cyclic DMPO-type nitrones are limited by the stability of the adducts they form. Enolized DMPO-type spin adducts have been shown to dimerize and produce a six-line electron paramagnetic resonance (EPR…
  • College: College of Medicine (COM)
  • Inventors: Zweier, Jay; Hadad, Christopher; Villamena, Frederick
  • Licensing Officer: Taysavang, Panya

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