CA2500751C

Buffy coat tube and float system and method

Abstract

A tube and float system for use in separation and axial expansion of the buffy coat is provided. The system includes a transparent, or semi-transparent, flexible sample tube (130) and a rigid separator float (110) having a specific gravity intermediate that of red blood cells and plasma. The sample tube has an elongated sidewall (136) having a first cross-sectional inner diameter. The float consists of a main body portion and one or more support members protruding from the main body portion to engage and support the sidewall of the sample tube. The main body portion and the support members of the float have a cross-sectional diameter less than that of the first cross-sectional inner diameter of the tube (138) when the sample tube is expanded, such as by centrifugation. The main body portion of the float together with an axially aligned portion of the sidewall define an annular volume therebetween. The support members protruding from the main body portion of the float traverse said annular volume to produce one or more analysis areas. During centrifugation, the centrifugal force enlarges the diameter of the tube to permit density-based axial movement of the float in the tube. Thereafter, the centrifugal force is reduced to cause the tube sidewall to return to its first diameter, thereby capturing the float and trapping the buffy coat constituents in the analysis area.

CA2500751C, drawing sheet 1
Sheet 1 of 13

Term

Term ended

Expired 2 October 2023, 3 years ago.

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

48 claims: 5 independent, 43 dependent

  1. 1
    CA 02500751 2011-03-02 31842-1 CLAIMS:1. A method of separating and axially expanding the buffy coat constituents of a blood sample, comprising: introducing the blood sample into a flexible sample tube, the sample 5 tube having an elongate sidewall which is resiliently radially expandable from a first diameter to a second diameter in response to centrifugal force;introducing an elongate rigid volume-occupying float into the flexible sample tube, said rigid float having a specific gravity intermediate that of red blood cells and plasma;10 said float comprising: a main body portion and one or more support members protruding from the main body portion to engage and support the sidewall of the sample tube when the sidewall is at the first diameter, wherein said main body portion together with an axially aligned portion of said sidewall define an annular volume therebetween;and 15 wherein said support members traverse said annular volume to produce one or more analysis areas;centrifuging the sample tube to effect a density-based separation of the blood sample into discrete layers at a rotational speed that causes a resilient enlargement of the sidewall to the second diameter in response to the centrifugal 20 force, said second diameter being sufficiently large to permit axial movement of the float in the tube;moving said float into axial alignment with at least the buffy coat constituents of the blood sample in response to centrifugal forces produced in centrifuging the blood;and CA 02500751 2011-03-02 31842-1 thereafter, reducing the rotational speed to cause the tube sidewall to return to said first diameter, thereby capturing the float and trapping the buffy coat constituents in the analysis area.
  2. 8
    An apparatus for separation and analysis of a target analyte in sample of anticoagulated whole blood, comprising:an at least semi-transparent, flexible sample tube for holding the sample, the sample tube having an elongate sidewall which is resiliently radially expandable from a first diameter to a second diameter in response to centrifugal force;an elongate, rigid, volume-occupying float having a specific gravity intermediate that of red blood cells and plasma, said float comprising: CA 02500751 2011-03-02 31842-1 a main body portion and one or more support members protruding from the main body portion to engage and support the sidewall of the sample tube when the sidewall is at the first diameter, wherein said main body portion together with an axially aligned portion of said sidewall define an annular volume therebetween;and wherein said support members traverse said annular volume to produce one or more analysis areas;said sidewall being resiliently radially expandable to the second diameter in response to the centrifugal force, said second diameter being sufficiently large to permit axial movement of the float in the tube during centrifugation.
  3. 25
    A volume occupying separator float adapted for use with an associated sample tube, comprising:a main body portion and one or more support members protruding from the main body portion to engage and support a sidewall of the sample tube, said main body portion and said support members having a cross-sectional diameter less than a first inner diameter of the tube when the sample tube is expanded, wherein said main body portion together with an axially aligned portion of said sidewall define CA 02500751 2011-03-02 31842-1 an annular volume therebetween;and wherein said support members traverse said annular volume to produce one or more analysis areas.
  4. 41
    A method for detecting circulating target cells in an anticoagulated whole blood sample, comprising:combining the blood sample with one or more labeling agents so as to 15 differentiate target cells from other cells in the blood sample;introducing the blood sample into an at least semi-transparent, flexible sample tube, the sample tube having an elongated sidewall which is resiliently radially expandable from a first diameter to a second diameter in response to centrifugal force;20 inserting a volume-occupying separator float having a specific gravity intermediate that of red blood cells and plasma into the sample tube;said separator float comprising a rigid main body portion and one or more support members protruding from the main body portion to engage and support the sidewall of the sample tube when the sidewall is at the first diameter, wherein 25 said main body portion together with an axially aligned portion of said sidewall define CA 02500751 2011-03-02 31842-1 an annular volume therebetween;and wherein said support members traverse said annular volume to produce one or more analysis areas;centrifuging the blood sample and separator float in the sample tube to effect centrifugally-motivated localization of any target cells present in the blood sample within said analysis area;and after said centrifuging, allowing the sample tube to constrict upon the separator float, and examining the blood sample present in the analysis area to identify any target cells contained therein.
  5. 45
    A method of separating and axially expanding the buffy coat constituents of a blood sample, comprising:introducing the blood sample into an assembly comprising a flexible sample tube, and an elongated rigid volume-occupying float, the sample tube having an elongate sidewall which is resiliently radially expandable from a first diameter to a second diameter in response to centrifugal force;the rigid float having a specific gravity intermediate that of red blood cells and plasma;said float comprising: CA 02500751 2011-03-02 31842-1 a main body portion and one or more support members protruding from the main body portion to engage and support the sidewall ofthe sample tube when the sidewall is at the first diameter wherein said main body portion together with an axially aligned portion of said sidewall define an annular volume therebetween;and 5 wherein said support members protruding from the main body portion traverse said annular volume to produce one or more analysis areas;centrifuging the assembly to effect a density-based separation of the blood sample in the tube into discrete layers at a rotational speed that causes a resilient enlargement ofthe sidewall to the second diameter in response to the 10 centrifugal force, said second diameter being sufficiently large to permit axial movement of the float in the tube;moving said float into axial alignment with at least the buffy coat constituents of the blood sample in response to centrifugal force produced in centrifuging the blood;and 15 thereafter, reducing the rotational speed to cause the tube sidewall to return to said first diameter, thereby capturing the float and trapping the buffy coat constituents in the analysis area.