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4928 search results found
  • 1.21.21-Sanjay Sarma - Japanese Version

    January 21, 2021Conference Video Duration: 34:1
    Sanjay Sarma
    Vice President for Open Learning
    Fred Fort Flowers (1941) and Daniel Fort Flowers (1941) Professor of Mechanical Engineering
  • Leon
    M
    Bellan

    Postdoctoral Associate
    Primary DLC
    Koch Institute for Integrative Cancer Research (KIICR)

    Contact

    MIT Room
    76-661
    Phone
    (617) 253-3125
    lbellan@mit.edu
  • Leon
    M
    Bellan

    Postdoctoral Associate
    Primary DLC
    Koch Institute for Integrative Cancer Research (KIICR)

    Contact

    MIT Room
    76-661
    Phone
    (617) 253-3125
    lbellan@mit.edu
  • Theodore
    Postol

    Professor of Science, Technology and International Security, Emeritus
    Primary DLC
    Program in Science, Technology, and Society

    Contact

    MIT Room
    E51-296G
    Phone
    (617) 253-8077
    postol@mit.edu
  • Stephen
    W
    Van Evera

    Professor of Political Science, Emeritus
    Primary DLC
    Department of Political Science

    Contact

    MIT Room
    E40-475
    Phone
    (617) 253-0530
    vanevera@mit.edu
  • Alicia
    Goldstein
    Raun

    Associate Director, MIT International Science and Technology Initiatives (MISTI)
    Primary DLC
    Center for International Studies

    Contact

    MIT Room
    1-3161P
    Phone
    (617) 324-5494
    aliciag@mit.edu
  • Rosalind
    H
    Williams

    Bern Dibner Professor of the History of Science and Technology, Emeritus
    Primary DLC
    Program in Science, Technology, and Society

    Contact

    MIT Room
    E51-278
    Phone
    (617) 253-4062
    rhwill@mit.edu
  • Ahmad
    Bahai

    Professor of the Practice
    Primary DLC
    Department of Electrical Engineering and Computer Science

    Contact

    MIT Room
    39-567B
    Phone
    (617) 324-3730
    abahai@mit.edu
  • 2020 Japan - Cullen R. Buie

    January 31, 2020Conference Video Duration: 39:44

    Electric fields can be a useful tool in the interrogation and genetic manipulation of cells. With respect to bacteria, the cell envelope is critical for understanding important physiological behaviors, such as extracellular electron transfer (EET) and antibiotic uptake. Through EET, microbes can transport electrons from their interior to external insoluble electron acceptors (e.g. metal oxides or electrodes in an electrochemical cell), which has attracted tremendous attention due to potential applications in environmental remediation and energy conversion. In this talk, we will present how bacterial envelope phenotypes such as EET can be quantified by cell surface polarizability, a dielectric property that can be measured using microfluidic dielectrophoresis. Next, we will discuss work in our laboratory to use very high electric fields (~10 kV/cm) in microfluidic devices to enable high throughput delivery of nucleic acids to bacterial populations. Results of this work hold exciting promise for rapid screening of bacterial envelope phenotypes and for accelerating genetic engineering of bacteria for industrial applications. Lastly, we will present recent efforts by a company spun out of the Buie Laboratory, Kytopen, which is leveraging the electroporation work to enable scalable non-viral transfection of mammalian cells. Applications of this work include adoptive cell therapies such as CAR-T, which are currently plagued by high costs and manufacturing issues.

  • Johan
    A
    Frenje

    Senior Research Scientist
    Primary DLC
    Plasma Science and Fusion Center

    Contact

    MIT Room
    NW17-235
    Phone
    (617) 452-4941
    jfrenje@psfc.mit.edu

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