CA2249886C

Acrylic microchannels and their use in electrophoretic applications

Abstract

Microchannels having at least an acrylic inner surface and methods of their use in electrophoretic applications are provided. Thesubject microchannels may be in the form of a variety of configurations suitable for holding an electrophoretic medium. The subjectmicrochannels give rise to substantially reduced EOF and/or adsorption as compared to fused silica under conditions of electrophoresis andfind use in a variety of electrophoretic applications in which charged entities are moved through a medium under the influence of an appliedelectric field.

CA2249886C, drawing sheet 1
Sheet 1 of 7

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Granted
  4. Today

29 claims: 13 independent, 16 dependent

  1. 1
    CA 02249886 2004-03-24 50'988-4 CLAIMS :1. In a method where charged entities are moved through a channel under the influence of an applied voltage gradient, the improvement comprising: employing a microchannel having an acrylic polymer material surface, the microchannel being formed in a substrate comprising an acrylic polymer material or a composite substrate comprising a layer of an acrylic polymer material over a heat dissipating material, the layer having a thickness of at least about 1 pm, such microchannel resulting in a reduction of at least one of electroosmotic flow or adsorption as compared to native fused silica.
  2. 5
    In a method of electrophoretic separation of a sample in which sample components are separated in an electrophoretic separation medium in a channel by application of a voltage gradient to said medium, the improvement comprising :employing a microchannel having an acrylic polymer material surface, the microchannel being formed in a substrate comprising an acrylic polymer material or a composite substrate comprising a layer of an acrylic polymer material over a heat dissipating material, the layer having a thickness of at least about 1 pm, and such microchannel CA 02249886 2004-03-24 50988-4 having cross-sectional inner dimension ranging from about 1 to 200 pm.
  3. 7
    The method according to Claim 6, wherein said substrate is i covered by a cover
  4. 8
    The method according to Claim 7, wherein said cover is fabricated :from fused silica.
  5. 9
    The method according to Claim 7, wherein a surface of said cover is coated with an l adhesive •
  6. 10
    The method according to Claim 9, wherein said adhesive comprises polydimethylsiloxane.
  7. 11
    The method according to Claim 7, wherein said cover is fabricated from a polymer material.
  8. 16
    The method according to Claim 7, wherein said cover has flat surfaces.
  9. 17
    The method according to Claim 4, wherein said microchannel is in a capillary.
  10. 18
    The method according to Claim 5, wherein said sample comprises nucleic acids.
  11. 19
    The method according to Claim 5, wherein said sample comprises proteins.
  12. 20
    A device comprising a microchannel having at least an acrylic inner surface, wherein said microchannel is formed in a substrate comprising an acrylic polymer material or a composite substrate comprising a layer of an acrylic polymer material over a heat dissipating material, the layer having a thickness of at least about 1 pm, and wherein said microchannel has cross-sectional inner dimensions ranging from about 1 to 200 pm.
  13. 24
    In an electrophoretic device for use in electrophoretic applications in which charged entities are moved through an electrophoretic medium in response to an applied voltage gradient, wherein said device comprises a channel comprising said electrophoretic medium, the improvement comprising:CA 02249886 2004-03-24 50'988-4 said channel conisiting of a microchannel having at least an acrylic inner surface, wherein said microchannel is formed in a substrate comprising an acrylic polymer material or a composite substrate comprising a layer of an 5 acrylic polymer material over a heat dissipating material, the layer having a thickness of at least about 1 pm, and wherein said microchannel has cross-sectional inner dimensions ranging from about 1 to 200 pm.