CA2807591C

Microfluidic devices and methods of using same

Abstract

Introducing a sample solution that includes a target nucleic acid polymer into a microfluidic device that has a sample region with: (i) a flow channel in fluid communication with one fluid inlet and one fluid outlet; and (ii) a plurality of valves that, when closed, partition the flow channel into isolated reaction sites. Each valve is formed from an elastomeric membrane that separates a control channel from the flow channel and which is disposed to be deflected into or retracted out from the flow channel in response to an actuation force to the control channel, thereby forming the valve. The method includes closing the valves, thereby partitioning the flow channel into isolated reaction sites containing portions of said sample solution; exposing the reaction sites to conditions under which the nucleic acid polymer is amplified to produce an amplification product; and opening said valves and displacing sample solution out of the flow channel.

CA2807591C, drawing sheet 1
Sheet 1 of 21

Term

Term ended

Expired 5 April 2024, 2.5 years ago.

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

4 claims: 2 independent, 2 dependent

  1. 1
    CA 02807591 2013-06-26 We Claim:1. A method of microfluidic analyses comprising: (a) introducing a sample solution comprising a target nucleic acid polymer into a microfluidic device, wherein the device comprises a sample region having: (i) a flow channel in fluid communication with one fluid inlet and one fluid outlet;and (ii) a plurality of valves that, when closed, partition said flow channel into isolated reaction sites, wherein each valve is formed from an elastomeric membrane that separates a control channel from said flow channel, and wherein the elastomeric membrane is disposed to be deflected into or retracted out from the flow channel in response to an actuation force to the control channel, thereby forming the valve, and wherein said control channel is part of a network of control channels and said actuation force is due to pressure in the network of control channels from an inlet via;(b) closing said valves, thereby partitioning the flow channel into isolated reaction sites containing portions of said sample solution;(c) exposing the reaction sites to conditions under which the nucleic acid polymer is amplified to produce an amplification product;and (d) opening said valves and displacing sample solution out of the flow channel.
  2. 4
    A microfluidic device comprising a sample region having an unbranched flow channel in fluidic communication with one fluid inlet and one fluid outlet and a plurality of valves that, when closed, partition said flow channel into isolated reaction sites, wherein each valve is formed from an elastomeric membrane that CA 02807591 2013-06-26 separates a control channel from said flow channel, wherein the elastomeric membrane is disposed to be deflected into or retracted out from the flow channel in response to an actuation force to the control channel, thereby forming the valve, and wherein said control channel is part of a network of control channels and said actuation force is due to pressure in the network of control channels from an inlet via.