EP2834344A1

Tissue processing apparatus and method for processing adipose tissue

Abstract

This record has no abstract on file.

Term

6.9 yearsto projected expiry

Projected expiry 5 September 2033, counted from filing; an application has no term until it is granted.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

46 claims: 23 independent, 23 dependent

  1. 1
    Claims of equivalent WO 2014039697 A1 What Is Claimed Is:1. An apparatus for processing human biological material containing stringy tissue, the apparatus comprising;a container having an internal containment volume, the internal containment volume including a tissue retention volume and a filtrate volume;a filter disposed within the internal containment volume with the tissue retention volume on one side of the filter and the filtrate volume on another side of the filter with the tissue retention volume and with the filtrate volume being in fluid communication through the filter;an inlet port in fluid communication with the tissue retention volume and configured to access the tissue retention volume for introducing human biological material into the tissue retention volume;a suction port in fluid communication with the filtrate volume and configured to access the filtrate volume for suctioning material from the filtrate volume;a tissue collector disposed in the tissue retention volume and rotatable relative to the container in at least a first direction of rotation about an axis of rotation, the tissue collector including at least one toothed member that sweeps through a portion of the tissue retention volume when the tissue collector is rotated in the first direction, the toothed member being configured with a plurality of teeth to collect and retain stringy tissue when the tissue collector is rotated in the first direction in contact with human biological material containing stringy tissue disposed in the tissue retention volume.
  2. 2
    An apparatus according to Claim 1, wherein each said toothed member includes at least three teeth and an open space between the teeth of each pair of adjacent said teeth.
  3. 3
    An apparatus according to Claim 2, wherein each said toothed member includes at least 5 of said teeth.
  4. 4
    An apparatus according to any one of Claims 1-3, wherein the tissue collector comprises at least two of said toothed member.
  5. 5
    An apparatus according to any one of Claims 1-4, wherein each said toothed member has a first end located radially toward the axis and a second end located radially away from the axis, and wherein the second end is located from one to 10 centimeters from the axis.
  6. 6
    An apparatus according to any one of Claims 1-5, wherein the teeth project toward a leading side of the toothed member when the tissue collector is rotated in the first direction.
  7. 7
    An apparatus according to any one of Claims 1-6, wherein the teeth project in a plane of rotation of the toothed member when the tissue collector is rotated in the first direction.
  8. 8
    An apparatus according to any one of Claims 1-7, wherein each of the teeth has a height of from 1 millimeter to 10 millimeters relative to a bottom of each adjacent said open space.
  9. 9
    An apparatus according to any one of Claims 1-8, comprising a first mixing impeller in the tissue retention volume.
  10. 10
    An apparatus according to Claim 9, wherein the first mixing impeller is configured to direct axial flow from the first mixing impeller in an direction toward the tissue collector.
  11. 11
    An apparatus according to either one of Clam 9 or Claim 10, wherein the first mixing impeller includes at least one portion configured to scrape a portion of the filter when the first mixing impeller is operated.
  12. 12
    An apparatus according to Claim 11, wherein each said portion of the first mixing impeller configured to scrape a portion of the filter includes a peripheral edge portion of an impeller blade of the first mixing impeller.
  13. 13
    An apparatus according to either one of Claim 11 or Claim 12, wherein at least a part of each said portion of the filter is in a tapered portion of the filter that is disposed in a tapered portion of the internal containment volume.
  14. 14
    An apparatus according to any one of Claims 9-13, wherein the tissue collector and the first mixing impeller are coaxial and rotatable about the axis in the first direction.
  15. 15
    An apparatus according to Claim 14, wherein a spacing along the axis between the first mixing impeller and the tissue collector is in a range of from 0.5 centimeter to 5 centimeters.
  16. 16
    An apparatus according to any one of Claims 9-14, wherein the first mixing impeller extends to a first radial distance from the axis and the tissue collector extends to a second radial distance from the axis, wherein the second radial distance is larger than the first radial distance by at least 1 millimeter.
  17. 17
    An apparatus according to any one of Claims 9-16, comprising a second mixing impeller in the tissue retention volume.
  18. 18
    An apparatus according to Claim 17, wherein the second mixing impeller is configured to direct axial flow in a direction away from the tissue collector when the rotatable shaft is rotated in the first direction.
  19. 19
    An apparatus according to either one of Claim 17 or Claim 18, wherein the tissue collector and the second mixing impeller are coaxial and rotatable about the axis in the first direction.
  20. 20
    An apparatus according to Claim 19, wherein a spacing along the axis between the second mixing impeller and the tissue collector is in a range of from 0.5 centimeter to 5 centimeters.
  21. 21
    An apparatus according to any one of Claims 17-20, wherein the second mixing impeller extends to a third radial distance from the axis that is at least 1 millimeter smaller than a radial distance from the axis to which the tissue collector extends.
  22. 22
    An apparatus according to any one of claims 1-21, wherein the apparatus is orientable in a first orientation in which the inlet port and the outlet port are configured for access therethrough from above the container into the internal containment volume.
  23. 23
    An apparatus according to Claim 22, wherein in the first orientation, all access to the internal containment volume is from above the container.
  24. 24
    An apparatus according to Claim 22 or Claim 23, comprising an extraction port configured for accessing the internal containment volume to remove processed biological material from the internal containment volume;and wherein the extraction port is configured for access therethrough from above the container into the internal containment volume when the apparatus is oriented in the first orientation.
  25. 25
    An apparatus according to Claim 24, wherein access through the extraction port is through a lumen extending through the rotatable shaft aligned with the axis.
  26. 26
    An apparatus according to Claim 24, wherein no access is provided into the internal containment volume through a lumen extending through a rotatable shaft.
  27. 27
    An apparatus according to any one of Claims 1-26, wherein the filter has a separation size in a range of from 70 to 400 microns.
  28. 28
    An apparatus according to any one of Claims 1-26, wherein the filter has a separation size that is larger than 400 microns and not larger than 800 microns.
  29. 29
    An apparatus according to any one of Claims 1-28, wherein the container is configured to be received in a centrifuge for centrifuging the container.
  30. 30
    An apparatus according any one of Claims l-29,wherein the internal containment volume has a volume in a range of from 100 cubic centimeters to 1300 cubic centimeters.
  31. 31
    An apparatus according to any one of Claims 1-30, wherein:the internal containment volume includes a pellet well disposed in a bottom portion of the filtrate volume below a bottom elevation of the filter and accessible only from above when the apparatus is in the access orientation;the filtrate volume includes a lower tapered portion below a bottom elevation of the filter and above a top elevation of the pellet well;the lower tapered portion of the filtrate volume is defined by internal wall surfaces of the container that are each inclined relative to horizontal at a maximum angle of no larger than 60° when the container is in an access orientation;at least a portion of the pellet well is defined by a wall surface of the container inclined relative to horizontal at an angle that is larger than the maximum angle when the apparatus is in the access orientation.
  32. 32
    An apparatus according to Claim 31 , wherein the wall surface of the container defining at least a portion of the pellet well is inclined relative to horizontal at an angle of at least 70° when the apparatus is in the access orientation.
  33. 33
    An apparatus according to either one of Claim 31 or Claim 32, wherein:when the apparatus is in the access orientation, the pellet well has at least one portion with a vertical length of 1 centimeter, a maximum horizontal dimension along the vertical length of no larger than 5 millimeters and a minimum horizontal dimension along the vertical length of no smaller than 1.5 millimeters.
  34. 34
    An apparatus according to any one of Claims 31-33, wherein the pellet well has a volume in a range of from 0.5 cubic centimeter to 2 cubic centimeters.
  35. 35
    An apparatus according to any one of Claims 31-34, wherein the internal containment volume has a volume in a range of from 150 cubic centimeters to 350 cubic centimeters.
  36. 36
    A method of processing adipose tissue using an apparatus according to any one of Claims 1-35, the method comprising processing in the container of the apparatus, the processing comprising:washing adipose tissue within the container to remove contaminants from the adipose tissue.
  37. 37
    A method according to Claim 36, comprising after the washing, removing washed adipose tissue from the container.
  38. 38
    A method according to Claim 36, comprising;after the washing, digesting adipose tissue within the container, the digesting adipose tissue comprising adding to the container a volume of enzyme-containing digestion medium to contact washed adipose tissue in the container;after permitting enzymatic digestion in the container for a retention time following adding the digestion medium, disposing the container in a centrifuge and centrifuging the container in the centrifuge to form density-separated phases within the container, the density- separated phases including lower-density material phases and a higher-density pellet phase comprising leuko stromal vascular cells;and selectively removing material of the pellet phase from the container.
  39. 39
    A method according to Claim 38, wherein the selectively removing comprises:inserting an aspiration tube from outside of to inside of the container to contact the pellet phase inside the container;and aspirating at least a majority of material of the pellet phase through the aspiration tube to outside of the container without suspending material of the pellet phase in a suspension liquid in the container.
  40. 40
    A method according to Claim 39, wherein:the lower-density material phases include an aqueous phase above the pellet phase;and the aqueous phase is not removed from the container prior to the aspirating.
  41. 41
    A method according to either one of Claim 39 or Claim 40, wherein after the aspirating, the lower-density material phases remain in the container.
  42. 42
    A method according to any one of Claims 39-41, wherein the inserting comprises inserting the aspiration tube downward into the container from above.
  43. 43
    A method according to any one of Claims 39-42, wherein:the aspirating comprises aspirating the at least a majority of the material of the pellet phase into a receptacle located outside of the container that is in fluid communication with the aspiration tube;and prior to commencement of the aspirating, the receptacle contains a volume of dispersion medium and during the aspirating the dispersion medium mixes with the at least a majority of the material of the pellet phase in the receptacle.
  44. 44
    A method according to Claim 43, wherein the volume of the dispersion medium is in a range of from 2 times to 10 times a volume of the at least a majority of the material of the pellet phase that is aspirated into the receptacle during the aspirating.
  45. 45
    A method according to any one of Claims 39-44, wherein during the aspirating the aspiration tube is in fluid communication with a syringe and the aspirating comprises collecting the at least a majority of the material of the pellet phase into the syringe.
  46. 46
    A method according to Claim 36, wherein:the washing comprises multiple wash cycles with each said wash cycle comprises: adding a volume of aqueous wash liquid to the container to contact the adipose tissue within the container;mixing the wash liquid and the adipose tissue in the container;and removing at least a majority of the wash liquid with contaminants from the filtrate volume of the container on a first side of the filter and retaining at least most of the adipose tissue in the tissue retention volume of the container disposed on a second side of the filter;and the method further comprises: after the washing, digesting adipose tissue within the container, the digesting adipose tissue comprising: adding to the container a volume of digestion medium comprising a collagenase enzyme solution to contact washed adipose tissue in the container following the washing, wherein a volume ratio of the volume of digestion medium to volume of adipose tissue within the container is in a range of from 0.6: 1 to 2:1 and where the digestion medium provides from 150 to 300 collagen digestion units (CDU) per milliliter of catalytic volume, wherein the catalytic volume is the total of the volume of digestion medium and the volume of adipose tissue within the container;and after the adding of the volume of digestion medium, permitting enzymatic digestion within the container for a retention time in a range of from 20 minutes to 50 minutes while the container is disposed in a temperature controlled environment maintained within a temperature range of from 32° C to 38° C and with at least occasional agitation of contents within the container;and not later than 50 minutes following the adding of the volume of digestion medium, adding a stopping reagent to the container to stop enzymatic activity within the container;disposing the container in a centrifuge and centrifuging the container in the centrifuge to form density-separated phases within the container, the density-separated phases including lower-density material phases and a higher-density pellet phase comprising leuko stromal vascular cells;after the centrifuging, removing the container from the centrifuge;and removing the lower-density material phases from the container while retaining the pellet phase within the container.
Independent claims46