EP2492011A1

Multiple laminar flow-based particle and cellular separation with laser steering

Abstract

The invention provides a method, apparatus and system for separating blood and other types of cellular components, and can be combined with holographic optical trapping manipulation or other forms of optical tweezing. One of the exemplary methods includes providing a first flow having a plurality of blood components; providing a second flow; contacting the first flow with the second flow to provide a first separation region; and differentially sedimenting a first blood cellular component of the plurality of blood components into the second flow while concurrently maintaining a second bloo.d cellular component of the plurality of blood components in the first flow. The second flow having the first blood cellular component is then differentially removed from the first flow having the second blood cellular component.; Holographic optical traps may also be utilized in conjunction with the various flows to move selected components from one flow to another, as part of or in addition to a separation stage.

EP2492011A1, drawing sheet 1
Sheet 1 of 30

Term

Term ended

Projected expiry passed 3 September 2024, 2.1 years ago.

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19 claims: 4 independent, 15 dependent

  1. 1
    An apparatus for separating at least one component from a plurality of components in a fluid mixture, the apparatus comprising:a first input channel into which a first flow is introduced, said first flow which contains the fluid mixture of the plurality of components;a plurality of buffer input channels, into which additional flows of buffer solution are introduced, disposed on either side of said first input channel;wherein said first flow and said additional flows have a flow direction along a length of the apparatus from one end of the apparatus to another end of the apparatus;a plurality of selection channels disposed at said another end of the apparatus, said plurality of selection channels which are adapted to receive said additional flows enriched by selected components of the plurality of components, said selected components which are selectively removed from said first flow to said additional flows;anda waste channel through which unselected components are removed from said first flow which is depleted of said selected components.
  2. 16
    A method of separating at least one component from a plurality of components in a fluid mixture, the method comprising:introducing a first flow into a first input channel, said first flow which contains the fluid mixture of the plurality of components;introducing additional flows into a plurality of buffer input channels, said plurality of buffer channels which are disposed on either side of said first input channel;wherein said first flow and said additional flows have a flow direction along a length of the apparatus from one end of the apparatus to another end of the apparatus;selectively removing selected components from said first flow to said additional flows via a plurality of selection channels disposed at said another end of the apparatus, said plurality of selection channels which are adapted to receive said additional flows enriched by said selected components of the plurality of components;andremoving unselected components from said first flow via a waste channel, said first flow which is depleted of said selected components.
  3. 18
    A method of separating a fluid mixture into constituent components, the method comprising:Providing a substantially laminar first flow having the fluid mixture, the fluid mixture having a plurality of components, the plurality of components having a corresponding plurality of sedimentation rates;providing a substantially laminar second flow;providing a substantially laminary third flow;contacting the first flow with the second flow and with the third flow to provide a first separation region, the first flow and the second flow having a substantially non-turbulent first interface within the separation region, and the first flow and the third flow having a substantially non-turbulent second interface within the separation region;differentially removing from the first flow a first component of the plurality of components into the second flow to form an enriched second flow and a depleted first flow;differentially removing from the first flow a second component of the plurality of components into the third flow to form an enriched third flow and a further depleted first flow;differentially removing the enriched second flow from the depleted first flow;and differentially removing the enriched third flow from the depleted first flow.
  4. 19
    A method of separating a plurality of cells, the method comprising:Providing a first flow having the plurality of cells;Proving a second flow;contacting the first flow with the second flow to provide a first separation region;anddifferentially removing a first cell of the plurality of cells into the second flow while concurrently maintaining a second cell of the plurality of cells in the first flow.