Home Parallel Fluidics logotype

Knowledge Base

20 entries

Resources

  1. What to Look for in an Automated LNP Formulation Workflow

    by Joshua Gomes

    • application
    • overview
    • deep dive
  2. What Causes Variability in LNP Formulation?

    by Joshua Gomes

    • application
    • overview
    • deep dive
  3. LNP Screening Array vs. Benchtop Systems

    by Joshua Gomes

    • application
    • overview
    • deep dive
  4. What Determines the Cost per LNP Formulation?

    by Joshua Gomes

    • application
    • overview
    • deep dive
  5. How the LNP Screening Array Works

    by Joshua Gomes

    • application
    • overview
  6. Building a Higher-Throughput LNP Screening Workflow

    by Joshua Gomes

    • application
    • overview
  7. A SLAS format microfluidic device with four sets of identical channels. Each channel has two pipette interfaces on one end and a reservoir on the other end. Herringbone mixers occupy the majority of each channel’s length. Bold, graphic text at the center reads "002."

    Hidden Costs of Microfluidic Manufacturing Transitions

    by Joshua Gomes

    • deep dive
  8. A SLAS format microfluidic device with four sets of identical channels. Each channel has two pipette interfaces on one end and a reservoir on the other end. Herringbone mixers occupy the majority of each channel’s length. Bold, graphic text at the center reads "001."

    Why Microfluidic Prototype Data Fails in Production

    by Joshua Gomes

    • deep dive
  9. A SLAS format microfluidic device with 6 sets of meandering channels connecting pipette interfaces to reservoirs.

    Accelerate innovation with Parallel Fluidics

    by Sophie Naud

    • overview
  10. A SLAS format microfluidic device with four sets of identical channels. Each channel has two pipette interfaces on one end and a reservoir on the other end. Herringbone mixers occupy the majority of each channel’s length.

    Drug Development & Therapeutics

    by Joshua Gomes

    • overview
    • application
  11. Half of a SLAS format microfluidic device with eight pipette interfaces

    Design to device, simplified

    by Sophie Naud

    • overview
  12. A double-slide format microfluidic device with three MV-1 microvavles on top of a white background.

    Choosing your device material

    by Sophie Naud

    • overview
  13. A microfluidic device with multiple pipette interfaces connected to a zig-zagging channel. The device is placed on top of a black background.

    Creating flow in a microfluidic system

    by Joshua Gomes

    • overview
  14. A 2D microfluidic device in AutoCAD. The features of the device are outlined in white.

    CAD for microfluidics

    by Joshua Gomes

    • overview
  15. A microfluidic device with an SLAS adapter placed on the deck of an automated liquid handler. The microfluidic device has multiple pipette interfaces along one edge connected to meandering channels filled with multiple colored fluids.

    Sterilization guide for microfluidic medical devices

    by Kris Buchanan

    • deep dive
  16. A double slide format microfluidic device with three capillary tube interfaces and three Luer interfaces. These interfaces connect to microvalves in the microfluidic device, mixing different colored liquids together to form a rainbow.

    Tubing and fitting guide for microfluidics

    by Joshua Gomes

    • deep dive
  17. Close-up of a 3D printed microfluidic herringbone mixer next to a Transition Molded one. The 3D printed structure is very vague, with clearly visible layers, while the Transition Molded structure is clearly defined, with sharp edges.

    3D printing vs Machining vs Transition Molding

    by Joshua Gomes

    • deep dive
  18. A 3D microfluidic device in SolidWorks. The device has three 1/4-28 ports and is shown in a transparent material.

    How to design a microfluidic device in Solidworks

    by Joshua Gomes

    • video
    • tutorial
  19. Three MV-2 microvalves on a microfluidic device. Channels connect the microvalves to the 1/4-28 ports next to them.

    Material selection for microfluidic devices

    by Duncan O'Boyle

    • deep dive
    • video
  20. A microfluidic device in an SLAS adapter, secured to a liquid handler’s deck.

    Manufacturing basics for microfluidic devices

    by Joshua Gomes

    • deep dive