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MicroRNA profile predicts colon cancer prognosis
TS-065453 — The Need: Colon cancer remains one of the most prevalent and lethal forms of cancer worldwide. Timely and accurate diagnosis is critical for effective treatment and improved patient outcomes. Current diagnostic methods often lack the precision and sensitivity needed for early detection and prognosi…
  • College: College of Medicine (COM)
  • Inventors: Croce, Carlo
  • Licensing Officer: Dahlman, Jason "Jay"

Preventative Human T-cell leukemia virus type 1 vaccine
TS-062421 — The Need: Addressing the Global HTLV-1 Epidemic with a Novel Vaccine Human T cell leukemia virus type-1 (HTLV-1) is a significant global health concern, responsible for causing Adult T cell leukemia/lymphoma (ATLL) and human myelopathy/tropical spastic paraparesis (HAM/TSP). With over 10 million pe…
  • College: College of Veterinary Medicine
  • Inventors: Panfil, Amanda; Green, Patrick; Niewiesk, Stefan
  • Licensing Officer: Dahlman, Jason "Jay"

Generation of T cell-specific CXCR3 Transgenic mouse
TS-062320 — The Need: Addressing Susceptibility to Cutaneous Leishmaniasis Cutaneous leishmaniasis, caused by the intracellular parasite Leishmania major and transmitted by sand flies, poses a significant threat to susceptible populations. This disfiguring disease results in large skin lesions, impacting both …
  • College: College of Arts & Sciences
  • Inventors: Satoskar, Abhay; Oghumu, Steve
  • Licensing Officer: Dahlman, Jason "Jay"

CXCR3-GFP knock-in mouse
TS-038221 — A knock-in murine model that expresses high levels of GFP in CXCR3 positive cells.
Chemokines are typically small, secreted molecules that participate in leukocyte trafficking, recruitment, and activation. They also play roles in normal and pathological processes including allergic responses, infectious and autoimmune disease, angiogenesis, inflammation, and tumor growth and met…
  • College: College of Arts & Sciences
  • Inventors: Satoskar, Abhay; Oghumu, Steve
  • Licensing Officer: Dahlman, Jason "Jay"

Self-Assembly of Therapeutic-Agent Nanostructures
TS-014812 — An improved delivery mechanism has been developed for hydrophobic drugs such as camptothecin which will increase chemotherapeutic efficacy.
Many cancer therapeutics exhibit extremely toxic side effects or have limited efficacy due to low bio-availability. Existing drug delivery technologies can add excessive mass to the therapeutic, grossly expanding the dosage necessary for response. Camptothecin (CPT) is a naturally occurring compou…
  • College: College of Arts & Sciences
  • Inventors: Parquette, Jonathan; Grinstaff, Mark; Kaplan, Jonah; Kim, Se Hye
  • Licensing Officer: Dahlman, Jason "Jay"

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