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Nanomembrane Research Group
  • NRG

    Review of ACKD nanotechnology articles (Vol 20, issue 6, Nov 2013)

    ByDean Johnson October 30, 2013

    This is a cursory review of the nonotechnology articles appearing along with our paper in the Journal “Advances in Chronic Kidney Disease” Most of these are reviews and most deal with nanoparticles for either imaging or therapy. One does discuss nanoparticles for use with membranes to improve biocompatibility. I do not have full access to…

    Read More Review of ACKD nanotechnology articles (Vol 20, issue 6, Nov 2013)Continue

  • NRG

    Co-Culture on SiO2 3um Low Density Membranes

    ByAndrea October 30, 2013

    Scope: Human umbilical vein endothelial cells (HUVEC) and adipose derived stem cells (ADSC) were co-cultured on SiO2 low density 3um pore membranes. The ADSCs were initially seeded onto the membranes, at 6 hours the membranes were flipped over and placed into a 24 well plate and HUVECs were seeded. Cells were grown for 3 days…

    Read More Co-Culture on SiO2 3um Low Density MembranesContinue

  • NRG

    NSF Proposal: Tunable dielectrophoretic separation of nanoparticles with ultrathin microporous silicon membranes

    ByBob Carter October 29, 2013

    Blanca, Tom, Aytug and I are working on a proposal to NSF that will be submitted Oct.29th to the Chem. & Bio. Separations Program of the CBET division. This is a joint 3-year project between Blanca’s and Tom’s labs.  Basically, we are combining Blanca’s insultator-dielectrophoresis with the microporous version of the SiO2 (or SiN) ultrathin…

    Read More NSF Proposal: Tunable dielectrophoretic separation of nanoparticles with ultrathin microporous silicon membranesContinue

  • NRG

    Paper Summary – Surface Engineered Porous Silicon for Stable, High Performance Electrochemical Super Capacitors

    ByGreg Madejski October 24, 2013

    Pint Silicon Supercapacitor   Tejas sent me an interesting article about Silicon-based supercapacitors. I have made a previous post on potential uses for our membranes as separators in EDLC (electrical double layer capacitors), and one of the problems I posited was that the electrolyte chemistry seemed particularly inimical to silicon (KOH, Na2SO4). The authors in…

    Read More Paper Summary – Surface Engineered Porous Silicon for Stable, High Performance Electrochemical Super CapacitorsContinue

  • NRG

    HUVECs Contracting on Nonporous SiO2 120nm Membranes

    ByZachary Oppito October 24, 2013

    While performing an experiment to study HUVEC growth rates on various substrates, I observed an interesting phenomena on the oxide membranes.  I was using 120nm, nonporous, 600C annealed SiO2 membranes in this trial.  The cells were observed at least once per day over a course of 173 hours from seeding.  The growth rates and quantitative…

    Read More HUVECs Contracting on Nonporous SiO2 120nm MembranesContinue

  • Knowledge | NRG

    Modeling EOF and Electric Field Gradient at a Microporous Membrane

    ByAytug Gencoglu October 23, 2013

    I used COMSOL for finite element analysis (FEA) modeling of EOF and DEP at a microporous membrane in a PDMS microfluidic channel. Effects of two parameters were determined: Membrane thickness, and spacing between pores. The modeled membranes had a 25×25 um surface, and a thickness of either 100 nm or 500 nm. Pore diameter was…

    Read More Modeling EOF and Electric Field Gradient at a Microporous MembraneContinue

  • NRG

    Adipose Stem Cells on Nitride LiftOff Membranes (Part 1)

    ByThomas Gaborski October 23, 2013

    We have successfully plated adipose derived stem cells (ADSC) on microporous silicon nitride (SiN) membranes. Cells plated on nanoporous SiN appeared fine at time of seeding, but membranes were broken at 2 hours – possibly due to media washing or cell spreading/contracting. Josh Miller made new Microporous and Nanoporous Nitride liftoff membranes. These membranes were…

    Read More Adipose Stem Cells on Nitride LiftOff Membranes (Part 1)Continue

  • NRG

    PDMS cell channels

    ByElizabeth Stoyan October 23, 2013July 7, 2014

    Michael and I have been working to create cell channels of varying widths and heights to test out a concept used in a paper we recently read as a group. This work claims to see cell cords in 12 hours, so no media renewal is necessary.   The channels were made by layering and bonding…

    Read More PDMS cell channelsContinue

  • NRG

    Drifting and Biasing Potentials in the Electrodes Make Streaming Potential Measurements Difficult

    ByKarl Smith October 23, 2013

    A few weeks back I had finished my streaming potential/electro-osmotic pump setup. It looks like this: For streaming potential measurements, we pressurize a tube filled with 100mM KCl that connects to the membrane and measure the voltage drop across the membrane. When I first applied a pressure to the setup, the voltage drop did seem…

    Read More Drifting and Biasing Potentials in the Electrodes Make Streaming Potential Measurements DifficultContinue

  • NRG

    Fluorescence Focal Test – 300nm Microporous Oxide Membranes Do Not Wrinkle or Sag After Autoclaving

    ByZachary Oppito October 23, 2013

    Method: Oxide membranes in some conditions have been shown to wrinkle over time.  To study this, three different varieties of SiO2 membranes were observed (1000C nonporous 120nm SiO2, 150W deposited microporous low-density 300nm SiO2, and 100W deposited microporous low-density300nm  SiO2).  Beads were placed on the top of each membrane and given ~24 hours to settle…

    Read More Fluorescence Focal Test – 300nm Microporous Oxide Membranes Do Not Wrinkle or Sag After AutoclavingContinue

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    • Home
    • Publications
    • Membranes
      • Common Chip Formats
      • Common Membranes
      • Microslit Membranes
    • Devices
      • µSiM
        • Geometry
        • µSiM CAD Files
        • Assembly
          • Protocols.io (µSiM Assembly)
          • Instructions
          • Common Issues and Troubleshooting Tips
        • Cell Culture Protocols
          • Top Well: hCMEC/D3
          • Top Well: HUVEC
          • Bottom Channel Culturing
          • Immunocytochemistry Protocol
          • Impact of Chip Orientation on Fluorescence Imaging
          • Permeability: In Situ Method
          • Permeability: Sampling Method
          • Cell Culture Common Issues and Troubleshooting Tips
      • SepCon®
        • Sepcon Assembly
        • Sepcon Video Protocol: Assembly
        • SepCon Gasket Silhouette File
        • SepCon Video Protocol: Wetting the membrane
        • SepCon Video Protocol: Disassembly
      • µSiM-DX
        • µSIM Video Protocol: Capture of Nanoparticles
    • Impact
      • TraCe-bMPS
      • HCIC
      • LOMP
      • SiMPore