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Saccharide Based RAFT Agents: Enabling the Next Generation of Biocompatible Smart Polymers
TS-075519 — A galactose-based RAFT chain transfer agent (Gal-RAFT) that incorporates a sugar moiety at the polymer terminus, enabling the synthesis of well-defined polymers with an integrated carbohydrate handle for subsequent biological applications.
Overview Most commercial RAFT agents are designed for polymerization control, including but not limited to chain length, architecture, and dispersity, and lack biologically relevant functionality for advanced drug delivery and targeting. Hence, incorporating a targeting molecule requires separate …
  • College: College of Arts and Sciences (COAAS)
  • Inventors: Kulkarni, Anuja; Watkins, Davita
  • Licensing Officer: Panic, Ana

Powering Next-Generation Cryptography with Nanopore True Random Number Generation
TS-075198 — Enabling stronger, more reliable randomness for modern cybersecurity.
The Need As digital infrastructure scales and cyber threats become more sophisticated, the integrity of cryptographic systems increasingly depends on the quality of their randomness. From encryption keys to authentication protocols, weak or predictable entropy can undermine even the most advanced s…
  • College: College of Arts and Sciences (COAAS)
  • Inventors: Bandara, Nuwan; Amarasekara, Dhanush; Gussenhoven, Katherine
  • Licensing Officer: Panic, Ana

Botanical-Inspired Compounds for Mosquito Control and Resistance Management
TS-074949 — Mosquito‑borne diseases such as dengue, Zika, chikungunya, and yellow fever remain major global health threats, however widespread resistance has eroded the effectiveness of existing insecticides. mosquito control agents for public health, vector control programs, and integrated pest management …
  • College: College of Pharmacy (COP)
  • Inventors: Rakotondraibe, Harinantenaina Liva; Piermarini, Peter
  • Licensing Officer: Panic, Ana

Human–AI Interaction Research Platform
TS-074578 — The Need As AI systems are rapidly deployed across healthcare, education, and high-stakes decision-making, organizations lack rigorous tools to evaluate how humans actually interact with, trust, and respond to AI in real-world conditions. Opportunity Overview Researchers at the Ohio State Univ…
  • College: College of Arts and Sciences (COAAS)
  • Inventors: Meng, Jingbo
  • Licensing Officer: Panic, Ana

ElectroTag Diagnostics
TS-074316 — Pre‑Launch Start‑Up Opportunity: Seeking Business Leads ElectroTag is a multiplex diagnostics platform that enables simultaneous measurement of multiple disease‑associated proteins from a small patient sample. The system replaces conventional color‑based labels with mass‑encoded peptide tags that are read by mass spectrometry, delivering higher analytical specificity and a clear path to expanding from small to large biomarker panels while maintaining streamlined workflows.
Technology Overview Clinical and research laboratories are increasingly adopting multi‑marker panels to improve diagnosis, guide therapy selection, and monitor treatment response. Traditional formats such as ELISA plates and lateral flow strips rely on optical or enzymatic signals, which begin to…
  • College: College of Arts and Sciences (COAAS)
  • Inventors: Badu-Tawiah, Abraham; Seth, Ayesha; Zerrudo, Stephanee
  • Licensing Officer: Panic, Ana

ElectroFuel‑MES
TS-074315 — Pre‑Launch Start‑Up Opportunity ElectroFuel‑MES offers an electrified bioprocess that turns heterogeneous food and agricultural waste streams into higher‑value fuels and chemicals, providing an energy‑efficient alternative to anaerobic digestion and thermochemical treatment.
Technology Overview Organic waste streams are an underutilized carbon resource but are difficult to upgrade efficiently with conventional biological or thermochemical processes due to high energy inputs, long residence times, and limited product selectivity. ElectroFuel‑MES overcomes these co…
  • College: College of Engineering (COE)
  • Inventors: Saba, Beenish "bina"; Cornish, Katrina
  • Licensing Officer: Panic, Ana

Tunable Biodegradable Polymers with Built in Property Control for Biomedical Applications
TS-074271 — Predictable, chemistry level control of biodegradable polymer behavior to simplify development, improve reproducibility, and enable differentiated biomedical products.
Overview OSU researchers have developed a biodegradable polymer materials platform that addresses long standing limitations in conventional biomedical polymers by enabling intrinsic control over crystallinity, degradation, and performance, reducing reliance on downstream formulation compromises …
  • College: College of Arts and Sciences (COAAS)
  • Inventors: Quinonez, Maria Priscila; Watkins, Davita
  • Licensing Officer: Panic, Ana

Self-Regulating Platform for Drug-Eluting Medical Meshes
TS-074223 — Researchers at The Ohio State University have developed a self‑regulating manufacturing platform for porous polymer meshes that integrates mesh formation and drug loading in a single step, enabling controlled local delivery from implantable materials.
Technology Overview Implantable meshes and porous polymer films are widely used in surgical, regenerative, and device‑based applications, but current products often separate structural support from drug delivery functions. This platform uses a reaction‑diffusion‑driven process to form poro…
  • College: College of Food, Agricultural, and Environmental Sciences (CFAES)
  • Inventors: Puskas, Judit; Polyak, Peter
  • Licensing Officer: Panic, Ana

Electrochemical CO₂ Capture and Mineralization for Energy Systems Integration
TS-074219 — This early‑stage electrochemical platform enables integrated CO₂ capture and permanent mineralization while supporting lower‑energy hydrogen production, offering a research‑driven pathway toward energy system decarbonization.
Technology Overview Energy producers and industrial operators face mounting pressure to reduce carbon intensity without compromising efficiency, reliability, or capital deployment. This technology introduces a research‑stage electrochemical system that couples CO₂ capture with mineralization…
  • College: College of Arts and Sciences (COAAS)
  • Inventors: Baker, Lawrence "Robert"; Neves-Garcia, Tomaz
  • Licensing Officer: Panic, Ana

Novel HIV Targeting Strategy for Next‑Generation Antivirals
TS-074218 — This HIV-focused technology introduces a novel strategy for engaging conserved viral biology that is not directly addressed by existing antiretroviral classes. By expanding the range of actionable HIV mechanisms, the approach creates new opportunities for therapeutic discovery, combination strategies, and next‑generation intervention concepts. The technology is designed to complement current HIV treatment paradigms while supporting diversification of long‑term antiviral pipelines.
Technology Overview This HIV-focused technology introduces a novel strategy for engaging conserved viral biology that is not directly addressed by existing antiretroviral classes. By expanding the range of actionable HIV mechanisms, the approach creates new opportunities for therapeutic discove…
  • College: College of Arts and Sciences (COAAS)
  • Inventors: Musier-Forsyth, Karin; Kelley, Elise; Nielsen, Andrew
  • Licensing Officer: Panic, Ana

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