Water-soluble antibacterial additives synthesized in a one-step reaction from low-cost commercial materials. Effective against gram-positive and gram-negative bacteria including superbugs at submicromolar concentrations, offering a non-toxic alternative to conventional quaternary ammonium disinfectants.
This technology introduces new water-soluble antibacterial additives designed to replace conventional quaternary ammonium compound (QAC)-based disinfectants. The formulations are synthesized in a single step from low-cost, commercially available starting materials, making them practical for scale-up and commercial adoption. They have demonstrated low toxicity toward human cells (HEK293) while remaining highly effective against a broad spectrum of bacteria, including drug-resistant superbugs, at concentrations as low as 1 to 50 micromolar. The killing mechanism is believed to rely on hydrophobic and electrostatic interactions with bacterial cell surfaces, disrupting membrane integrity without relying on traditional QAC chemistry.
Key features:
Validation performed:
Planned validation:
The additives have been validated in laboratory assays demonstrating efficacy against multiple bacterial strains at very low concentrations. Cytocompatibility testing with HEK293 cells has shown non-toxic behavior at effective doses. Future work includes further physicochemical optimization and expanded in vitro efficacy testing through MIC and bacterial killing assays. The technology is positioned for collaborative development toward formulation, scale-up, and application-specific validation for surface disinfection products.
Drexel University is a comprehensive private research university in Philadelphia, recognized for an urban, industry‑embedded model anchored by a longstanding cooperative education program. Year‑round co‑ops create a ready talent pipeline and align sponsored research with real‑world needs. The campus sits within an innovation district with co‑located labs and incubators, enabling companies to collaborate on prototyping with faculty. Through the university’s medical college and clinical partners, industry teams can access clinical expertise and translational pathways. Research is supported by competitive federal funding from agencies such as NIH, NSF, DOE, and DoD. A dedicated technology transfer office manages IP, licensing, corporate research agreements, and startup formation.