EP1524034A2

Electropipettor and compensation means for electrophoretic bias

Abstract

The present invention provides for techniques for transporting materials using electrokinetic forces through the channels of a microfluidic system. The subject materials are transported in regions of high ionic concentration, next to spacer material regions of high ionic concentration, which are separated by spacer material regions of low ionic concentration. Such arrangements allow the materials to remain localized for the transport transit time to avoid mixing of the materials. Using these techniques, an electropipettor which is compatible with the microfluidic system is created so that materials can be easily introduced into the microfluidic system. The present invention also compensates for electrophoretic bias as materials are transported through the channels of the microfluidic system by splitting a channel into portions with positive and negative surface charges and a third electrode between the two portions, or by diffusion of the electrophoresing materials after transport along a channel. <IMAGE>

EP1524034A2, drawing sheet 1
Sheet 1 of 13

Term

Term ended

Projected expiry passed 27 June 2017, 9.2 years ago.

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16 claims: 5 independent, 11 dependent

  1. 1
    A microfluidic device, comprising:a body structure having at least first and second microfluidic channels disposed therein;anda pipettor element extending from said body structure, said pipettor element having a third microfluidic channel disposed therethrough, the third microfluidic channel being open at a first end and fluidly connected to at least one of the first and second microfluidic channels at a second end, wherein the pipettor element is formed from at least a portion of the body structure.
  2. 7
    The microfluidic device of any preceding claim, wherein the pipettor element is shaped at an end where the third channel is open.
  3. 9
    The microfluidic device of any preceding claim, wherein the body is comprised of glass, quartz or a polymer.
  4. 10
    A method of fabricating a microfluidic device, comprising:providing a body structure having at least first and second microfluidic channels disposed therein;andforming a pipettor element from at least a portion of the body, the pipettor element extending from the body structure and including at least a third microfluidic channel disposed therethrough.
  5. 15
    The method of any one of claims 10 to 14, wherein the body structure comprises glass, quartz or a polymer.