Claims
- 1. An apparatus for separating components of a fluid comprising:
an outer housing with an upper housing end and a lower housing end, wherein said outer housing increases in diameter from said upper housing end to said lower housing end, said lower housing end having a housing floor and said housing upper end having a housing outlet, said outer housing adapted for rotation about a center axis; said outer housing containing a core in said interior volume; the core having an outer wall, an upper core end, and a lower core end; said core connected with said outer housing for rotation therewith; and providing a separation volume between said core and said outer housing; said core end having a lumen connector and a lumen connector top surface; a first lumen for providing fluid communication from the housing outlet through the lumen connector and then radially outward through the core to the fluid separation volume; a second lumen providing fluid communications from the housing outlet extending axially along center axis to housing floor; a connection sleeve which forms with the lumen connector a chamber and provide fluid communications between the housing outlet and the separation volume.
- 2. An apparatus of claim 1 wherein said first lumen extending radially out to outer housing about midway to said housing floor.
- 3. An apparatus of claim 1 wherein said lumen extending radially out to outer housing about midway to said housing floor through one to eight channels.
- 4. An apparatus of claim 1 wherein said outer wall of said top core increases in diameter from said upper end to said lower end.
- 5. An apparatus of claim 1 wherein connection sleeve is adapted to be secured to said apparatus near said housing outlet of said outer housing for rotation therewith, said connection sleeve adapted to fluidly connect a first bowl channel, second bowl channels, and a chamber.
- 6. An apparatus for separating components of a fluid comprising:
an outer housing with an upper housing end and a lower housing end, wherein said outer housing increases in diameter from said upper housing end to said lower housing end, said lower housing end having a housing floor and said housing upper end having a housing outlet, said outer housing having an interior volume and adapted for rotation about a center axis; a top core having an outer wall, an upper top core end, and a lower top core end; said top core connected with said outer housing for rotation therewith; occupying a top coaxial volume of said interior volume of said outer housing; and providing a top separation volume between said top core and said outer housing; said upper top core end having a lumen connector; said lumen connector having a first lumen wall extending downward from the a top surface of the lumen connector; said lumen connector further having an inner lumen wall within said first lumen wall and extending downward from the top surface; said inner lumen wall having a top wall end and a bottom wall end; an upper plate having a top surface, a bottom surface, a second lumen wall extending above said top surface; said upper plate adapted to form a tight fit with the lower top core end for rotation therewith;
said second lumen wall (402A) adapted to overlap with said first lumen wall (401A) to form a lumen (400A) having an upper lumen end (480A) and a lower lumen end (490A); said lumen (400A) extending axially through said core 200A forming a first bowl channel (420A) for inflowing said fluid (800) and said lumen (400A) having fluid communication with separation volume (220A) via trench (305A); a bottom core (201A) having an outer wall (211A), a top surface (309A) contacting and connected with bottom surface (297A) of upper plate (299A) for rotation therewith; an upper bottom core end (206A), a lower bottom core end (296A), said top surface (309A) having an indentation (186A) and a trench (305A), and a lumen wall (324A) that has an upper wall end (324C) and a lower wall end (324B); said bottom core occupying a bottom coaxial volume of said interior volume (710A) of said outer housing (100A);
said upper wall end (324C) of lumen wall (324A) is adapted to engage with bottom wall end (325B) of inner lumen wall (325A) to form an inner lumen 400B having an upper lumen end (325C) and a lower lumen end (324B); said inner lumen (400B) forming a second bowl channel (410A) for removing a first separated fluid component (810); a lower plate (300A) having a top surface (730A), a bottom surface (730B), and a hollow cylinder (320A) near center of lower plate (300A); said hollow cylinder (320A) has an opening (302A) adapted to engage with lower wall end (324B) of lumen (324A); and said lower plate (300A) having a circumference adapted to form a tight fit with the lower bottom core end (296A) for rotation therewith; a connection sleeve having a sleeve flange surrounding a lumen mounting recess; said lumen mounting recess and top surface of lumen connector engaged to form a bowl chamber for removing a second separated fluid component; said connection sleeve further adapted to be secured to said apparatus near said housing outlet of said outer housing for rotation therewith.
- 7. The apparatus of claim 6 wherein said outer wall (210A) of said top core (200A) increases in diameter from said upper end (205A) to said lower end (295A).
- 8. The apparatus of claim 6 wherein said outer wall (211A) of said bottom core (201A) increases in diameter from said upper end (206A) to said lower end (296A).
- 9. The apparatus of claim 6 wherein said outer wall (210A) of said top core (200A) increases in diameter from said upper end (205A) to said lower end (295A) and said outer wall (211A) of said bottom core (201A) increases in diameter from said upper end (206A) to said lower end (296A).
- 10. The apparatus of claim 6 wherein lumen (400A) having a height (404A) and lumen wall (324A) having a height (324F) and the height (404A) of lumen (400A) is about one third to about four times the height (324F) of lumen wall (324A).
- 11. The apparatus of claim 10 wherein the height (404A) of lumen (400A) and the height of lumen wall (324A) are about the same.
- 12. The apparatus of claim 6 wherein the top surface (309A) of bottom core (201A) has one to 10 trenches (305A).
- 13. The apparatus of claim 12 wherein the top surface (309A) of bottom core (201A) has three to six trenches (305A).
- 14. The apparatus of claim 6 wherein said connection sleeve (500A) adapted to fluidly connect a first (420A) and second (410A) bowl channels, and a bowl chamber (740A) to a corresponding conduit channel (760A, 770A, and 780A) of an external conduit (20A).
- 15. The apparatus of claim 6 wherein said outer housing (100A) comprises a locking mechanism adapted to secure said outer housing (100A) to a means (900) for rotating said apparatus (10A).
- 16. The apparatus of claim 15 wherein said locking mechanism comprises protrusions (150A).
- 17. The apparatus of claim 16 wherein said locking mechanism comprises a key slot (160A).
- 18. The apparatus of claim 6 wherein said lower plate (300A) is circular.
- 19. The apparatus of claim 6 wherein said apparatus (10A) is adapted for use without a rotatable seal.
- 20. The apparatus of claim 6 wherein said apparatus (10A) is closed to undesired contagions.
- 21. The apparatus of claim 6 wherein said apparatus (10A) is adapted to allow rotation of said cores (200A, 201A), said lower plate (300A), said upper plate (299A), and said outer housing (100A) about said lumens (400A, 400B).
- 22. The apparatus of claim 6 further comprising means (900) for rotating said outer housing (100A) about said axis (11).
- 23. The apparatus of claim 22 wherein said means (900) for rotating comprises a bracket (910).
- 24. The apparatus of claim 23 wherein said bracket (910) is adapted to engage and rotate an external conduit (20A) that is fluidly connected to said first bowl channel (420A), said second bowl channel (410A), and said bowl chamber (740A).
- 25. The apparatus of claim 24 wherein said rotation means (900) is adapted to rotate said outer housing (100A) and said external conduit (20A) using 1-omega/2-omega spin technology.
- 26. The apparatus of claim 22 further comprising:
means (605) to remove said fluid (800) from a source (600), said means (605) to remove said fluid (800) fluidly connected to said first bowl channel (420A); means (607) to remove said first separated fluid component (810) via said second bowl channel (410A); means (608) to remove said second separated fluid component (820) via said bowl chamber (740A); and means (609) to treat said second separated fluid component (820) subsequent to being removed via bowl chamber (740A).
- 27. The apparatus of claim 26 further comprising means (606) to reinfuse treated second separated fluid component (820) and said first separated fluid component (810) back into said source (600), wherein said apparatus is a closed-loop apparatus when connected to said source (600).
- 28. The apparatus of claim 27 wherein said reinfusion means (606) comprises a needle or catheter.
- 29. The apparatus of claim 26 further comprising an anticoagulant source (615) fluidly connected between said means (605) to remove said fluid (800) from said source (600) and said first bowl channel (420A).
- 30. The apparatus of claim 26 wherein said means (605) to remove said fluid (800) from said source (600) comprises a needle or catheter (605).
- 31. The apparatus of claim 26 wherein said means (607) to remove said first separated fluid component (810) comprises a pump (617).
- 32. The apparatus of claim 26 wherein said treatment means (609) comprises a chamber and a source of ultraviolet radiation.
- 33. A connection sleeve (500A) for fluidly connecting an external conduit (20A) having a first conduit channel (780A) to a lumen (400A) of the centrifuge bowl (10A) having a first bowl channel (420A), said connection sleeve (500A) comprising;
a body (830A) having an upper sleeve end (831A) and a lower sleeve end (832A), said lower sleeve end (832A) adapted to be secured to said centrifuge bowl (10A); and a sleeve wall (835A) adapted to receive and hold said external conduit (20A); said sleeve wall (835A) reinforced by one to four sleeve rings (833A); a sleeve flange (790A) on said lower sleeve end (832A), said sleeve flange (790A) having a bottom surface (847A) and encircling a lumen mounting recess (851A) adapted to engage a lumen connector (481A) and outer housing outlet (700A) of said centrifuge bowl (10A).
- 34. The connection sleeve (500A) of claim 33 wherein said bottom surface (847A) further comprises protrusions (843A) for engaging lumen connector (481A).
- 35. The connection sleeve (500A) of claim 33 wherein said connection sleeve (500A) is adapted to be overmolded to said external conduit (20A).
- 36. The connection sleeve (500A) of claim 33 wherein said connection sleeve (500A) is made of a same material as external conduit (20A).
- 37. The connection sleeve (500A) of claim 33 wherein said lumen mounting recess (851A) and the top surface (482A) of lumen connector (481A)
- 38. An anchor sleeve (870A) for securing an external conduit (20A) having conduit channels (760A, 770A, 780A) to a restraint (918A), said anchor sleeve (870A) comprising: a body (870A) having a first anchor end (873A) and a second anchor end (874A); a plurality of longitudinal ribs (877A) in parallel with said conduit channels, said longitudinal ribs having first rib ends (877B) and second rib ends (877C) said second rib ends (877C) extending beyond the first anchor end (873A).
- 39. An anchor sleeve of claim 38 wherein the number of longitudinal ribs is three.
- 40. A conduit assembly (860A) for fluidly connecting a source (600) of fluid (800) to a centrifuge bowl (10A) comprising:
an external conduit (20A) of approximately constant diameter having a first conduit end (861A) and a second conduit end (862A); a connection sleeve (500A) secured to said first conduit end (861A), said connection sleeve (500A) adapted to fluidly connect to said centrifuge bowl (10A); an anchor sleeve (870A) secured to said second conduit end (862A); a first bearing ring (871A) surrounding said external conduit (20A) and positioned between said connection sleeve (500A) and said anchor sleeve (870A), said first bearing ring (871A) adapted to engage a means (900) for rotating said centrifuge bowl (10A); and a first assembly channel (990A), a second assembly channel (991A), and a third assembly channel (992A) extending through said conduit assembly (860A).
- 41. The conduit assembly (860A) of claim 40 wherein said connection sleeve (500A) and said anchor sleeve (870A) are overmolded to said external conduit (20A).
- 42. The conduit assembly (860A) of claim 40 wherein:
said anchor sleeve (870A) has a first anchor end (873A) and a second anchor end (874A), said first anchor end (873A) being secured to said external conduit (20A), said anchor sleeve (870A) increasing in diameter from said first anchor end (873A) to said second anchor end (874A); said connection sleeve (500A) has an upper sleeve end (831A) and a lower sleeve end (832A), said upper sleeve end (831A) being secured to said external conduit (20A), said connection sleeve (500A) increasing in diameter from said upper sleeve end (831A) to said lower sleeve end (832A); and said anchor sleeve (870A), connection sleeve (500A), and external conduit (20A) are made of the composition.
- 43. The conduit assembly (860A) of claim 40 wherein said connection sleeve (500A) comprises a sleeve flange (790A).
- 44. The conduit assembly (860A) of claim 40 further comprising a second bearing ring (872A) surrounding said conduit (20A) and positioned between said first bearing ring (871A) and said anchor sleeve (870A), said second bearing ring (872A) adapted to engage a means (900) for rotating said centrifuge bowl (10A).
- 45. The conduit assembly (860A) of claim 40 wherein said first and second bearing rings (871A, 872A) are 7.5 to 9.5 inches apart.
- 46. The conduit assembly (860A) of claim 45 wherein said first bearing ring (871A) is 5.0 to 5.5 inches from a lower end (832A) of said connection sleeve (500A).
- 47. A method for separating components of a fluid (800) comprising a higher density component (810) and a lower density component (820), the method comprising:
providing a centrifuge bowl (10A) comprising a first bowl channel (420A), a second bowl channel (410A), and a bowl chamber (740A); flowing said fluid (800) from a source (600) into said centrifuge bowl (10A) through said first bowl channel (420A); rotating said centrifuge bowl (10A) about an axis (11); removing said higher density component (810) from said bowl (10A) via said second bowl channel (410A); and removing said lower density component (820) from said bowl (10A) via said bowl chamber (740A).
- 48. The method of claim 47 wherein said centrifuge bowl (10) further comprises:
an outer housing (100A) with an upper housing end (110A) and a lower housing end (190A), wherein said outer housing (100A) increases in diameter from said upper housing end (110A) to said lower housing end (190A), said lower housing end (190A) having a housing floor (180A) and said housing upper end (110A) having a housing outlet (700A), said outer housing (100A) having an interior volume (710A) and adapted for rotation about a center axis (11); a top core (200A) having an outer wall (210A), an upper top core end (205A), and a lower top core end (295A); said top core (200A) connected with said outer housing (100A) for rotation therewith; occupying a top coaxial volume of said interior volume (710A) of said outer housing (100A); and providing a top separation volume (220A) between said top core (200A) and said outer housing (100A); said upper top core end (205A) having a lumen connector (481A); said lumen connector (481A) having a first lumen wall (401 A) extending downward from the a top surface (482A) of the lumen connector (481A); said lumen connector (481A) further having an inner lumen wall (325A) within said first lumen wall (401A) and extending downward from the top surface (482A); said inner lumen wall having a top wall end (325C) and a bottom wall end (325B); an upper plate (299A) having a top surface (298A), a bottom surface (297A), a second lumen wall (402A) extending above said top surface (298A); said upper plate (299A) having a circumference adapted to form a tight fit with the lower top core end (295A) for rotation therewith;
said second lumen wall (402A) adapted to overlap with said first lumen wall (401A) to form a lumen (400A) having an upper lumen end (480A) and a lower lumen end (490A); said lumen (400A) forming a first bowl channel (420A) for inflowing said fluid (800) and extending axially through said core 200A leading to indentation (186A) and trenches (305A); a bottom core (201A) having an outer wall (211A), a top surface (309A) contacting and connected with bottom surface (297A) of upper plate (299A) for rotation therewith; an upper bottom core end (206A), a lower bottom core end (296A), a top surface (309A) having an indentation (186A) and a trench (305A), and a lumen wall (324A) that has an upper wall end (324C) and a lower wall end (324B); said bottom core occupying a bottom coaxial volume of said interior volume (710A) of said outer housing (100A) and providing a bottom separation volume (220B) between said bottom core (201B) and said outer housing (100A); said upper wall end (324C) of lumen wall (324A) is adapted to engage with bottom wall end (325B) of inner lumen wall (325A) to form a second bowl channel (410A) for removing a first separated fluid component (810); said top surface (309A) is adapted to engage with the bottom surface 297A of the upper plate (299A); a lower plate (300A) having a top surface (730A), a bottom surface (730B), and a hollow cylinder (320A) near center of lower plate (300A); said hollow cylinder (320A) has an opening (302A) adapted to engage with lower wall end (324B) of lumen (324A); and said lower plate (300A) having a circumference adapted to form a tight fit with the lower bottom core end (296A) for rotation therewith; a connection sleeve (500A) having a sleeve flange (790A) surrounding a lumen mounting recess (851A); said lumen mounting recess (851A) and top surface (482A) of lumen connector (481A) engaged to form the bowl chamber (740A) for removing a second separated fluid component (820); said connection sleeve (500A) further adapted to be secured to said apparatus (10A) near said housing outlet (700A) of said outer housing (100A) for rotation therewith.
- 49. The method of claim 47 wherein said step of removing said first separated fluid component (810) comprises applying negative pressure to said second bowl channel (410A).
- 50. The method of claim 47 wherein said negative pressure is applied by a pump (617).
- 51. The method of claim 50 wherein said pump (617) provides substantially stable flow.
- 52. The method of claim 47 wherein said step of removing said first separated fluid component (810) comprises applying positive pressure to said centrifuge bowl (10A).
- 53. The method of claim 47 wherein said fluid (800) comprises a biological fluid.
- 54. The method of claim 53 wherein said biological fluid comprises blood.
- 55. The method of claim 54 wherein said higher density component (810) comprises red blood cells and said lower density component (820) comprises a buffy coat.
- 56. The method of claim 55 further comprising the step of collecting platelets from said lower density component (820).
- 57. The method of claim 55 further comprising the step of reinfusing said higher density component (810) into said source (600).
- 58. The method of claim 55 further comprising: treating said lower density component (820); and reinfusing said treated lower density component (820) into said source (600) to treat, ameliorate, prevent, or delay the onset of white blood cell or T-cell mediated diseases.
- 59. The method of claim 58 wherein said method is completed in less than 70 minutes.
- 60. The method of claim 58 wherein said white blood cell and T-cell mediated diseases are selected from the group consisting of cancer, T-cell lymphoma, Graft-versus-Host disease, Rheumatoid Arthritis, Progressive Systematic Sclerosis, Juvenile Onset Diabetes, Inflamatory Bowel Disease, Alopecia Areata, Ankylosing Spondylitis, Antiphospholipid Syndrome, Autoimmune Addison's Disease, Autoimmune Hemolytic Anemia, Autoimmune Hepatitis, Behcet's Disease, Bullous Pemphigoid, Cardiomyopathy, Celiac Sprue-Dermatitis, Chronic Fatigue Immune Dysfunction Syndrome, Chronic Inflammatory Demyelinating Polyneuropathy, Churg-Strauss Syndrome, Cicatricial Pemphigoid, CREST Syndrome, Cold Agglutinin Disease, Crohn's Disease, Discoid Lupus, Essential Mixed Cryoglobulinemia, Fibromyalgia-Fibromyositis, Graves' Disease, Guillain-Barré Syndrome, Hashimoto's Thyroiditis, Idiopathic Pulmonary Fibrosis, Idiopathic Thrombocytopenia Purpura, IgA Nephropathy, Insulin Dependent Diabetes, Juvenile Arthritis, Lichen Planus, Ménière's Disease, Mixed Connective Tissue Disease, Multiple Sclerosis, Myasthenia Gravis, Pemphigus Vulgaris, Pernicious Anemia, Polyarteritis Nodosa, Polychondritis, Polyglandular Syndromes, Polymyalgia Rheumatica, Polymyositis and Dermatomyositis, Primary Agammaglobulinemia, Primary Biliary Cirrhosis, Psoriasis, Raynaud's Phenomenon, Reiter's Syndrome, Rheumatic Fever, Rheumatoid Arthritis, Sarcoidosis, Scleroderma, Sjögren's Syndrome, Stiff-Man Syndrome, Systematic Lupus Erythematosus, Takayasu Arteritis, Temporal Arteritis/Giant Cell Arteritis, Ulcerative Colitis, Uveitis, Vasculitis, Vitiligo, and Wegener's Granulomatosis.
- 61. The method of claim 58 further comprising ameliorating or preventing organ or tissue transplant rejection.
- 62. The system of claim 58 wherein said treatment step comprises irradiating said lower density component (820).
- 63. The method of claim 58 wherein said treatment step is performed so as to induce apoptosis within said lower density component (820).
- 64. The method of claim 58 wherein said method is performed continuously without the need to batch process said fluid (800).
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation-in-part application of U.S. patent application Ser. No. 10/375,628, filed Feb. 27, 2003, which claims the benefit of U.S. Provisional Application, Serial No. 60/361,287, filed Mar. 4, 2002, both of which are hereby incorporated by reference in their entireties.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60361287 |
Mar 2002 |
US |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
10375628 |
Feb 2003 |
US |
Child |
10654742 |
Sep 2003 |
US |