IL240923A

Liquid to liquid biological particle concentrator with disposalbe fluid path

Abstract

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Term

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

21 claims: 21 independent, 0 dependent

  1. 1
    240923/2 1. A device, comprising:a filter enclosed within a housing, wherein the filter has a permeate side and a retentate side, the housing comprising an opening for aspirating a fluid sample positioned at a first end and an elution port positioned at a second end, the filter spanning a length of the housing from the second end to the first end;wherein, using elution fluid, a plurality of particles in the fluid sample are eluted from a retentate surface of the filter and dispensed in a reduced fluid volume through the opening;a permeate port positioned adjacent the second end, wherein the permeate port is in fluid communication with a permeate chamber of the filter;and one or more valves in fluid communication with the permeate chamber, wherein the one or more valves are used to return the permeate chamber to atmospheric pressure prior to elution.
  2. 2
    The device in claim 1, wherein the plurality of particles are eluted by an elution fluid flowing tangentially across the retentate surface of the filter from the second end to the first end.
  3. 3
    The device in claim 1, further comprising a connecting portion for connecting the elution port and the permeate port to a concentrating unit.
  4. 4
    The device in claim 4, wherein the sample is aspirated by a vacuum source in the concentrating unit via the permeate port.
  5. 5
    The device in claim 1, wherein the one or more valves in the concentrating unit are used to close any external connections to the permeate port prior to elution.
  6. 6
    The device in claim 1, wherein the permeate chamber is pressurized during or prior to elution.
  7. 7
    The device in claim 1, wherein the permeate chamber is allowed to fill with liquid prior to elution.
  8. 8
    The device in claim 1, wherein the permeate chamber is in fluid communication with the elution port during elution. 240923/2
  9. 9
    The device in claim 1, wherein the filter is one or more of a flat membrane filter, a hollow fiber filter, a flat depth filter, an electrostatically charged filter, or a microsieve.
  10. 10
    The device in claim 1, further comprising a second filter.
  11. 11
    A device, comprising:an elution port through which an elution fluid passes, and a permeate port;a first half of a housing coupled to a first filter made of a first flat filter membrane, the first filter spanning a length of the first half of the housing;and a second half of a housing coupled to a second flat filter membrane, the second filter spanning a length of the second half of the housing;wherein each filter has a permeate side defining a permeate chamber;wherein the first and second halves of the housing are sandwiched together to form a concentrating pipette tip;and wherein a plurality of particles in a fluid sample are first aspirated via an opening positioned adjacent a first end of the housing;wherein one or more valves adjacent to the permeate chamber are used to return the permeate chamber to atmospheric pressure prior to elution;wherein the particles are eluted with an elution fluid from a retentate surface of the first and second filters and dispensed in a reduced fluid volume via the opening;wherein the retentate chamber is formed from a volume between the retentate surface of each of the first and second filters and a valve adjacent to the permeate chamber which when closed maintains pressure on the permeate side such that the elution fluid stays on the retentate side of the filter.
  12. 12
    The device in claim 9, wherein the permeate chamber is formed by a volume between each filter and its respective half of the housing.
  13. 13
    The device in claim 11, wherein a permeate chamber is formed by a volume between each filter and its respective half of the housing. 240923/2
  14. 14
    A device, comprising:a housing;on e or more hollow fiber filters enclosed within the housing, the one or more hollow fiber filters spanning a length of the housing, wherein the housing has only three openings comprising;a) an elution port positioned adjacent a second end of the housing for receiving an elution fluid from a concentrating unit external to the housing;b) a permeate port positioned adjacent the second end of the housing, the permeate port for coupling the housing to a vacuum source in the concentrating unit;and c) an opening positioned adjacent a first end of the housing for aspirating a fluid sample;wherein a plurality of particles in the fluid sample are aspirated via the opening positioned at the first end and then tangentially eluted from a retentate surface of each of the one or more hollow fiber filters and dispensed through the opening and wherein one or more valves adjacent to the permeate chamber are used to return the permeate chamber to atmospheric pressure prior to elution.
  15. 15
    The device in claim 14, wherein the retentate surface comprises an inner surface of each of the one or more hollow fiber filters.
  16. 16
    The device in claim 14, wherein a permeate chamber is formed by a volume external to each of the one or more hollow fiber filters.
  17. 17
    The device in claim 14, further comprising a connection point positioned adjacent the second end of the housing, the connection point for connecting the elution port and the permeate port to the concentrating unit.
  18. 18
    The device in claim 14, wherein the elution fluid is a wet foam.
  19. 19
    The device in claim 1, wherein the one or more valves are further used to provide a positive pressure to the permeate chamber prior to elution. 240923/2
  20. 20
    The device in claim 11, wherein the one or more valves are further used to provide a positive pressure to the permeate chamber prior to elution.
  21. 21
    The device in claim 14, wherein the housing has four openings wherein the fourth opening provides positive pressure to the permeate side.