# of Displayed Technologies: 6 / 6

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Targeted Delivery to Cancer Cells using Self-assembled, Camptothecin Nanotubes: Active and Passive Targeting
TS-065860 — The Need: Cancer remains one of the most pressing medical challenges of our time, demanding innovative solutions to enhance treatment efficacy while minimizing systemic toxicity. Conventional chemotherapy agents often suffer from poor solubility, instability, and indiscriminate cytotoxicity, necessi…
  • College: College of Arts & Sciences
  • Inventors: Parquette, Jonathan; Magliery, Thomas
  • Licensing Officer: Dahlman, Jason "Jay"

Peptide-based inhibitor of host factor involved in HIV-1 replication
TS-065459 — The Need The emergence of HIV-1 infection continues to pose significant challenges in healthcare worldwide. Current treatment approaches primarily target viral components, leading to the development of drug resistance over time. There is a pressing need for innovative therapeutic strategies that di…
  • College: College of Arts & Sciences
  • Inventors: Musier-Forsyth, Karin; Tang, Yingke
  • Licensing Officer: Willson, Christopher

Mini-PCDH15 for treatment of deafness
TS-050433 — A gene therapy solution for Usher Syndrome Type 1F.
Mutations in PCDH15 cause Usher 1F, a recessive syndrome characterized by profound congenital deafness and absence of vestibular function, and progressive blindness beginning in the second decade. Because patients who lack hearing and balance rely on vision for communication and mobility, the late…
  • College: College of Arts & Sciences
  • Inventors: Sotomayor, Marcos
  • Licensing Officer: Willson, Christopher

Method to improve efficiency and specificity of human tumor targeting and elimination by using a combination of split & splice protein toxins and oncolytic viruses
TS-040838 — Novel strategy to improve efficiency and specificity of tumor treatment via combinative use of a split & splice protein toxin and oncolytic virus.
In combating malignancies as complex as cancer, researchers and clinicians have created a diverse set of strategies to reduce tumor burden. Oncolytic viruses (OVs) have emerged as a promising means of treating this disease due to their potential to selectively target and effectively kill cancer ce…
  • College: College of Arts & Sciences
  • Inventors: Kudryashov, Dmitri; Cripe, Timothy; Kudryashova, Elena; Purde, Vedud
  • Licensing Officer: Willson, Christopher

Immunomodulating agents engineered from Notch receptor ligand extracellular domains
TS-036760 — Immunomodulating agents have been engineered from Notch receptor ligand extracelluar domains. These are useful for stimulating the immune system.
The Notch signaling pathway is important in immune cell differentiation and maturation. As a result, it has been shown that Notch receptor signaling can promote or suppress adaptive immune responses depending on the particular ligands and receptors involved. A set of native protein-inspired biolog…
  • College: College of Arts & Sciences
  • Inventors: Magliery, Thomas; Carbone, David; Dikov, Mikhail; Long, Nicholas; Sullivan, Brandon; Tchekneva, Elena
  • Licensing Officer: Willson, Christopher

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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