Interfacial Bioconjugation on Emulsion Droplets

Embodiments described herein may be useful in the detection of analytes. The systems and methods may allow for a relatively simple and rapid way for detecting analytes such as chemical and/or biological analytes and may be useful in numerous applications including sensing, food manufacturing, medical diagnostics, performance materials, dynamic lenses, water monitoring, environmental monitoring, detection of proteins, detection of DNA, among other applications. For example, the systems and methods described herein may be used for determining the presence of a contaminant such as bacteria (e.g., detecting pathogenic bacteria in food and water samples which helps to prevent widespread infection, illness, and even death). Advantageously, the systems and methods described herein may not have the drawbacks in current detection technologies including, for example, relatively high costs, long enrichment steps and analysis times, and/or the need for extensive user training. Another advantageous feature provided by the systems and methods described herein includes fabrication in a relatively large scale. In some embodiments, the systems and methods may be used in conjunction with a detector including handheld detectors incorporated with, for example, smartphones (e.g., for the on-site detection of analytes such as pathogenic bacteria).

Researchers

Qifan Zhang / Timothy Swager

Departments: Department of Chemistry
Technology Areas: Chemicals & Materials: Nanotechnology & Nanomaterials / Drug Delivery: Microparticles & Nanoparticles / Sensing & Imaging: Chemical & Radiation Sensing
Impact Areas: Advanced Materials

  • systems including janus droplets
    United States of America | Granted | 11,119,098

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