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Laser-Fabricated 2D Molybdenum Disulfide Electronic Sensor Arrays for Rapid, Low-Cost, Ultrasensitive Detection of Influenza A and SARS-Cov-2.
Muratore, Christopher; Muratore, Melani K; Austin, Drake R; Miesle, Paige; Benton, Anna K; Beagle, Lucas K; Motala, Michael J; Moore, David C; Slocik, Joseph M; Brothers, Michael C; Kim, Steve S; Krupa, Kristen; Back, Tyson A; Grant, John T; Glavin, Nicholas R.
  • Muratore C; Department of Chemical and Materials Engineering University of Dayton Dayton OH 45469 USA.
  • Muratore MK; m-nanotech Ltd. Dayton OH 45409 USA.
  • Austin DR; m-nanotech Ltd. Dayton OH 45409 USA.
  • Miesle P; Department of Biology University of Dayton Dayton OH 45469 USA.
  • Benton AK; UES Inc. Dayton OH 45432 USA.
  • Beagle LK; Materials and Manufacturing Directorate Air Force Research Laboratory Wright-Patterson Air Force Base Dayton OH 45433 USA.
  • Motala MJ; UES Inc. Dayton OH 45432 USA.
  • Moore DC; Materials and Manufacturing Directorate Air Force Research Laboratory Wright-Patterson Air Force Base Dayton OH 45433 USA.
  • Slocik JM; Department of Mechanical Engineering Dayton OH 45469 USA.
  • Brothers MC; Department of Chemical and Materials Engineering University of Dayton Dayton OH 45469 USA.
  • Kim SS; UES Inc. Dayton OH 45432 USA.
  • Krupa K; Materials and Manufacturing Directorate Air Force Research Laboratory Wright-Patterson Air Force Base Dayton OH 45433 USA.
  • Back TA; Department of Chemical and Materials Engineering University of Dayton Dayton OH 45469 USA.
  • Grant JT; UES Inc. Dayton OH 45432 USA.
  • Glavin NR; Materials and Manufacturing Directorate Air Force Research Laboratory Wright-Patterson Air Force Base Dayton OH 45433 USA.
Adv Mater Interfaces ; 9(18): 2102209, 2022 Jun 22.
Article in English | MEDLINE | ID: covidwho-1729091
ABSTRACT
Multiplex electronic antigen sensors for detection of SARS-Cov-2 spike glycoproteins and hemagglutinin from influenza A are fabricated using scalable processes for straightforward transition to economical mass-production. The sensors utilize the sensitivity and surface chemistry of a 2D MoS2 transducer for attachment of antibody fragments in a conformation favorable for antigen binding with no need for additional linker molecules. To make the devices, ultra-thin layers (3 nm) of amorphous MoS2 are sputtered over pre-patterned metal electrical contacts on a glass chip at room temperature. The amorphous MoS2 is then laser annealed to create an array of semiconducting 2H-MoS2 transducer regions between metal contacts. The semiconducting crystalline MoS2 region is functionalized with monoclonal antibody fragments complementary to either SARS-CoV-2 S1 spike protein or influenza A hemagglutinin. Quartz crystal microbalance experiments indicate strong binding and maintenance of antigen avidity for antibody fragments bound to MoS2. Electrical resistance measurements of sensors exposed to antigen concentrations ranging from 2-20 000 pg mL-1 reveal selective responses. Sensor architecture is adjusted to produce an array of sensors on a single chip suited for detection of analyte concentrations spanning six orders of magnitude from pg mL-1 to µg mL-1.
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Full text: Available Collection: International databases Database: MEDLINE Type of study: Diagnostic study Language: English Journal: Adv Mater Interfaces Year: 2022 Document Type: Article

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Full text: Available Collection: International databases Database: MEDLINE Type of study: Diagnostic study Language: English Journal: Adv Mater Interfaces Year: 2022 Document Type: Article