Claims
- 1. A sterile container assembly for delivering repeated precisely controlled volumes of a liquid therefrom in a sterile condition; said sterile container assembly comprising in liquid-tight arrangement:
a liquid-tight housing with an opening of reduced size relative to the housing; wherein the interior of the housing is maintained in a sterile condition and has a maximum internal volume in the range of about 3 ml to about 70 ml; a self-sealing puncturable sterile barrier covering the opening for receiving a hollow needle cannula, and a pressure actuator in liquid-tight connection with the interior of the housing, wherein the pressure actuator repeatedly exerts a positive pressure on liquid in the interior of the housing so as to repeatedly expel a precisely controlled volume of the liquid therefrom via the opening without septic contamination of the liquid and without uncontrolled loss of liquid therefrom.
- 2. The sterile container assembly of claim 1, wherein the precisely controlled volume is from about 10 ml to about 36 ml.
- 3. The sterile container assembly of claim 1, wherein the sterile container is sufficiently airtight that the pressure actuator can establish a partial vacuum within the sterile container for aspiration of liquids therein.
- 4. The sterile container assembly of claim 1, wherein the pressure actuator comprises a plunger and a seal between the plunger and the housing sufficient to establish a partial vacuum within the housing by withdrawal of the plunger.
- 5. The sterile container assembly of claim 1, wherein the pressure actuator applies mechanical pressure to the liquid within the sterile container so as to express the controlled volume of the liquid from the container.
- 6. The sterile container assembly of claim 5, wherein the precisely controlled volume is in the range from about 0.1 ml to about 3.0 ml.
- 7. The sterile container assembly of claim 1, wherein the sterile container is preloaded to contain one or more agents useful in processing of bone marrow aspirate liquids to enhance the yield of one or more autologous growth factors therefrom.
- 8. The sterile container assembly of claim 7, wherein the growth factor is selected from the group consisting of human vascular endothelial growth factor (VEGF), VEGF-2, HIF-1, and basic fibroblast growth factor (bFGF).
- 9. A filter assembly for aspiration and filtering of a bodily liquid containing undesired components, said filter assembly comprising in co-axial liquid-tight arrangement:
one or more filters with pores sized to filter out the undesired components from the liquid and; a filter receptacle having at least a distal part and a proximal part which parts engage to cooperatively form a liquid-tight enclosure for the one or more filters, wherein the distal part of the filter receptacle attaches to the hub of the aspiration needle; a hollow needle cannula attached to the exterior of the proximal part of the filter receptacle; and a liquid-tight liquid connector attached to the exterior of the distal side of the filter receptacle.
- 10. The filter assembly of claim 9 further comprising a hollow needle releasably attached to the liquid connector.
- 11. The filter assembly of claim 9, wherein the fluid connector is a male luer connection for releasably attaching the flow-through filter assembly to the hub of a hollow needle.
- 12. The filter assembly of claim 9, wherein the distal part and the proximal part of the filter receptacle releasably engage by means selected from the group consisting of friction fit, mating screw threads provided thereon, and luer lock.
- 13. The filter assembly of claim 9, wherein the distal-most filter has a larger average pore size than the proximal-most filter.
- 14. The filter assembly of claim 13 wherein the filters are spaced apart to prevent plugging and have average pore openings in the range from about 50 microns to about 300 microns.
- 15. The filter assembly of claim 9, wherein the diameter of the filters is 3 to 10-fold larger than the interior diameter of the needle hub.
- 16. An aspiration/injection system for aspiration and filtering of a bodily liquid containing undesired components, said system comprising in co-axial liquid-tight arrangement:
a) a sterile container of claim 1;b) a flow-through filter assembly, said filter assembly comprising:
i) one or more filters with pores sized to filter out the undesired components from the liquid and; ii) a filter receptacle having at least a distal part and a proximal part which parts engage to cooperatively form a liquid-tight enclosure for the one or more filters, wherein the distal part of the filter receptacle attaches to the hub of the aspiration needle; iii) a hollow needle cannula attached to the exterior of the proximal part of the filter receptacle; and iv) a liquid-tight liquid connector attached to the exterior of the distal side of the filter receptacle; c) an aspiration needle with hub attached to the fluid connector; d) an aspiration syringe with moveable plunger in liquid connection with the hub of the aspiration needle; and e) a three-way flow diverter; wherein the needle cannula of the filter assembly punctures the sterile septum of the sterile container and wherein the flow diverter is positioned to divert liquids aspirated through the needle into the syringe and to divert liquids ejected from the syringe into the sterile container through the flow-through filter assembly.
- 17. A sterile container for treating bodily liquid containing cells, said container comprising in co-axial arrangement:
a housing having a cylindrical portion and a distal portion of reduced diameter; a distal opening; a puncturable, self-sealing sterile barrier covering the distal opening; one or more piston ring-like stops fixedly mounted circumferentially around an interior wall of the cylindrical portion of the housing; a piston-like plunger having a domed head portion shaped to conform to the interior of the distal end of the housing; wherein the plunger is liquid-tightly and moveably mounted within the cylindrical portion of the housing so that the stroke of the plunger is defined by abutment of the head portion against the distal opening and against a stop; and a proximally extending plunger handle for moving the plunger within the cylindrical portion of the housing; wherein the sterile barrier, the cylindrical portion of the housing, and the exterior of the domed head portion of the plunger form an expandable and compressible sterile chamber.
- 18. The sterile container of claim 17, wherein withdrawal of the plunger head from the distal portion of the housing generates a negative pressure within the sterile chamber and movement of the plunger head from the stop towards the distal end creates a positive pressure on a liquid within the sterile chamber.
- 19. The sterile container of claim 17, wherein the opening at the distal end of the container is surrounded by a protruding lip that is threaded or provides a male luer fitting.
- 20. The sterile container of claim 17, wherein contact between the proximal portion of the container housing and the plunger maintains co-axial alignment during movement of the plunger.
- 21. The sterile container of claim 17, wherein the stop is provided with a liquid-tight seal between the cylindrical portion of the plunger and the face of each of the one or more piston ring-like stops.
- 22. The sterile container of claim 21, wherein the liquid-tight seal is seated in a groove on the face of the one or more stops.
- 23. The sterile container of claim 17, wherein the maximum interior volume of the sterile chamber is in the range from about 3 ml to about 70 ml.
- 24. The sterile container of claim 17 wherein the head portion of the plunger has one or more seals circumferentially attached thereto, wherein the seals provide a liquid-tight seal between the interior wall of the housing and the head portion of the plunger.
- 25. The sterile container of claim 17 wherein the maximum interior volume of the sterile chamber is in the range from about 12 ml to 36 ml.
- 26. The sterile container of claim 17 wherein the sterile container is preloaded with one or more agents for treating or modifying the bodily liquid.
- 27. The sterile container assembly of claim 17, wherein the sterile container is preloaded with one or more agents useful in processing of bone marrow aspirate liquids to enhance the yield of one or more autologous growth factors therefrom.
- 28. The sterile container assembly of claim 27, wherein the agents are selected from the group consisting of heparin, vascular endothelial growth factor (VEGF), VEGF-2, BIF-1 and basic fibroblast growth factor (bFGF).
- 29. The sterile container of claim 27, wherein the one or more agents includes a growth factor that promotes angiogenesis.
- 30. The sterile container of claim 27, wherein the one or more agents includes a polynucleotide encoding a therapeutic protein.
- 31. The sterile container of claim 30, wherein the polynucleotide encodes a growth factor that promotes angiogenesis.
- 32. The sterile container of claim 30, wherein the polynucleotide is contained in a vector for transfection into cells in the liquid for expression of the polynucleotide.
- 33. The sterile container of claim 17, wherein the container further comprises an optical scan chip on the exterior of the container that provides information regarding the contents of the container that can be read by an optical scanner.
- 34. The sterile container of claim 27, wherein the exterior of the container has an optical scan chip that provides information regarding the one or more agents preloaded into the container.
- 35. The sterile container of claim 34, wherein the scan chip contains visible barcode information concerning the modifying or treating of bodily liquids introduced into the container.
- 36. A sterile system for injection of one or more precisely controlled volumes of a liquid, said system comprising:
a) a sterile container, said container comprising in co-axial arrangement:
a housing having a cylindrical portion and a distal portion of reduced diameter; a distal opening; a puncturable, self-sealing sterile barrier covering the distal opening; one or more piston ring-like stops fixedly mounted circumferentially around an interior wall of the cylindrical portion of the housing; a piston-like plunger having a domed head portion shaped to conform to the interior of the distal end of the housing; wherein the plunger is liquid-tightly and moveably mounted within the cylindrical portion of the housing so that the stroke of the plunger is defined by abutment of the head portion against the distal opening and against a stop; and a plunger handle for moving the plunger within the cylindrical portion of the housing; wherein the sterile barrier, the cylindrical portion of the housing, and the exterior of the domed head portion of the plunger form an expandable and compressible sterile chamber; b) a hollow needle in fluid communication with the sterile chamber via the sterile barrier of the sterile container; and (c) a pressure actuator operationally coupled to the plunger handle of the sterile container wherein the pressure actuator exerts a positive pressure on liquid in the sterile chamber so as to expel liquids therefrom in a controlled volume by distal movement of the container plunger one or more precisely controlled longitudinal distances.
- 37. The system of claim 36, further comprising a filter assembly of claim 9 interposed between the hollow needle and the opening of the sterile container such that the hollow needle is attached to the fluid connector of the filter assembly and the needle cannula of the filter assembly pierces the sterile barrier covering the opening of the sterile container.
- 38. The system of claim 36 or 37, wherein the system is configured as a hand-held device.
- 39. The system of claim 36, wherein the hollow needle is contained within an injection needle catheter.
- 40. The system of claim 39, wherein the pressure actuator comprises a motor that moves the container plunger the precisely controlled longitudinal distance.
- 41. The system of claim 40, wherein the precisely controlled distance is calibrated to expel a fixed volume of liquid in the range from about 100 μL to about 2000 μL from the sterile chamber via the needle.
- 42. The system of claim 41, wherein the pressure actuator incrementally moves the plunger distally by the controlled longitudinal distance to repeatedly expel the fixed volume of liquid.
- 43. The system of claim 40 wherein the motor is a precision motion control motor.
- 44. The system of claim 43, wherein the precision motion control motor is operator-controlled.
- 45. The system of claim 37 wherein the proximal end of the sterile container and the distal end of the actuator contain mating parts of an alignment mechanism to facilitate operational coupling of the plunger of the sterile container to the pressure actuator.
- 46. The system of claim 45, wherein the pressure actuator comprises a piston co-axially housed within a cylindrical housing and the container plunger is operationally coupled with the distal end of the piston such that the motor drives the piston a predetermined proximal distance within the pressure actuator housing.
- 47. The system of claim 37, wherein one or more pins located on the exterior of the plunger handle and a J-shaped slot in the distal end of the pressure actuator piston cooperate to form an operational coupling mechanism for coupling the plunger handle and the piston.]
- 48. The system of claim 37, wherein the sterile container and the pressure actuator each has an exterior interlocking alignment feature for operational coupling thereof.
- 49. The system of claim 37, wherein a scanable chip containing information regarding the contents of the sterile container that can be read by a suitable scanner is mounted on the exterior of the sterile container.
- 50. The system of claim 49 wherein the scanable chip is an optically scanable bar code and the exterior of the pressure actuator has an optical scanner positioned thereon such that operational coupling of the sterile container and the pressure actuator places the optical scanner in visual alignment with the scan chip.
- 51. The system of claim 49, wherein information read by the scanner is transferred electronically to the motor in the pressure actuator so as to selectively control the precisely controlled distance the motor moves the container plunger.
- 52. The system of claim 40, wherein the system further comprises:
a computer system in operational communication with the precision motion control motor for actuating the motor so as to expel the fixed volume of liquid from the sterile container.
- 53. A hand-operated injection system for injection of a precisely controlled volume of a therapeutic fluid in a sterile condition, said system comprising in sterile, fluid-tight communication:
a) a sterile container, said sterile container comprising:
an elongated liquid-tight housing with an opening of reduced size relative to the housing; wherein the interior surface the housing defines a sterile fluid chamber a self-sealing puncturable sterile barrier covering the opening for receiving a hollow needle cannula, and a hand-operated plunger constructed and arranged within said chamber for reciprocal motion within the chamber; b) an injection syringe, said injection syringe comprising:
an elongated barrel having an inner surface defining a fluid chamber and a distal fluid port, a plunger constructed and arranged within said fluid chamber for reciprocal motion within the fluid chamber; c) an adjustable plunger arrester positioned with respect to the syringe plunger so as to precisely and adjustably control proximal travel of the plunger; d) a needle connector comprising a hollow needle cannula and connector for attachment of a hollow injection needle; and e) one way liquid flow valves for directing discrete liquid flow from the opening of the sterile container via the puncturable, sterile barrier into the distal fluid port of the syringe and from the fluid port of the syringe into the needle connector; wherein the controlled distance of proximal travel of the plunger allowed by the plunger arrester precisely controls the volume of the sterile fluid expelled from the system upon depression of the syringe plunger.
- 54. The injection system of claim 53, wherein the one-way valves are hand-operated.
- 55. The injection system of claim 53, wherein the one-way valves are pressure operated and contained within a three-way valve such that distal compression of the plunger of the sterile container causes liquid to flow only into the fluid chamber of the syringe and only to the extent permitted by the plunger arrester, and wherein distal compression of the syringe plunger expresses liquid contained in the fluid chamber of the syringe only via the needle connector.
- 56. The system of claim 53, wherein the plunger arrester is adjustably positionable with respect to the syringe plunger so as to control proximal travel of the plunger in increments calibrated to expel from the system fixed volumes in 0.1 ml increments.
- 57. The system of claim 53, wherein the sterile fluid chamber has a volume about ten-fold larger than the volume of the syringe barrel.
- 58. The system of claim 53, wherein the volume of the sterile fluid chamber is about 5 ml to 15 ml and the volume of the syringe barrel is about 0.5 ml to about 1.5 ml.
- 59. The system of claim 53, wherein the syringe, three-way valve and needle connector are fixedly attached and the sterile container is detachable.
- 60. The system of claim 53, further comprising a holder to which the syringe barrel and adjustable stopper of the syringe, the valves, and the needle connector are attached, said holder also providing a repository space for receiving and holding the sterile container such that the hollow needle cannula of the needle connector pierces the sterile barrier of the sterile container.
- 61. The system of claim 60, wherein the repository space is an elongated hollow functioning as a canister into which the distal end of the sterile container is slideably received.
- 62. The system of claim 60, wherein the holder includes a series of apertures positioned along the length of the plunger barrel and the adjustable plunger arrester comprises an elongate slideable piece with an outward extension against which the proximal end of the syringe plunger abuts so as to control the proximal travel of the plunger and a removable pin that locks the slideable piece in a fixed position when the pin is positioned into one of the apertures.
- 63. A hand-operated injection system for injection of a precisely controlled volume of a therapeutic fluid in a sterile condition, said system comprising in sterile, fluid-tight communication:
a) a fluid-tight sterile container, said sterile container comprising:
an elongated liquid-tight housing with a distal opening of reduced size relative to the housing; wherein the interior surface the housing defines a sterile fluid chamber having a maximum internal volume in the range from about 10 ml to about 30 ml; a self-sealing puncturable sterile barrier covering the opening for receiving a hollow needle cannula, a plunger constructed and arranged within said chamber for reciprocal motion within the chamber, said plunger comprising a distal head and proximal plunger handle extending from the proximal end of the housing; a fluid-tight seal moveably mounted on the extending portion of the plunger handle so as to maintain a seal of the fluid chamber upon reciprocal motion of the plunger, and b) an elongated holder for grasping by the operator, said holder comprising
an elongated side portion, an opening at the distal end, and an end piece closing the proximal end wherein the holder is shaped for rotatable plunger-first reception of the sterile container and wherein each rotation or partial rotation of the holder about the sterile container causes the plunger to expel a precisely controlled volume of a fluid contained in the sterile chamber, and c) a signaling mechanism formed by cooperative interaction of the holder and the plunger handle during the rotation generates a sensible signal; wherein the signal advises the operator how many of the precisely controlled volumes of the fluid have been expelled as a result of the operator causing the rotation of the holder about the sterile container.
- 64. The system of claim 63, wherein the sensible signal is a flash of light.
- 65. The system of claim 63, wherein the sensible signal is an audible and/or tactile signal.
- 66. The system of claim 65, wherein the sensible signal is mechanically generated.
- 67. The system of claim 66, wherein the sensible signal is generated by frictional interaction of the holder and the plunger handle caused by the rotation.
- 68. The system of claim 67, wherein the signaling mechanism comprises a detent and ratchet wheel.
- 69. The system of claim 67, wherein the proximal end of the plunger handle is substantially circular, and the ratchet wheel comprises one or more notches equally spaced along the circumference of the end of the plunger handle and wherein the detent comprises a flexible extension from the holder.
- 70. The system of claim 63, wherein the generation of one signal corresponds to the precisely controlled volume of fluid having been expelled from the sterile chamber.
- 71. The system of claim 63, wherein the sterile container is sized such that a half-rotation of the holder with respect to the sterile container expels 0.1 ml of the fluid and a full rotation expels 0.2 ml of the fluid.
- 72. The system of claim 63, wherein the precisely controlled volume is in the range from 0.1 ml to 2 ml.
- 73. The system of claim 63, wherein the proximal end of the plunger abuts against at least one thrust bearing located on the interior of the end piece of the holder.
- 74. The system of claim 63, wherein the sterile container is rotatably received within the holder by interior threads along the inner surface of the holder rotatably mating with exterior threads on the proximal end portion of the housing.
- 75. The system of claim 74, wherein the interior and exterior threads are interrupted threads having at least two threaded segments and two unthreaded segments.
- 76. The system of claim 63, wherein the moveable seal is a pleated bellows sleeve for the portion of the plunger handle that extends from the housing and wherein proximal movement of the plunger in the housing causes compression of the bellows sleeve to accommodate the movement without breaking the seal at the proximal end of the sterile fluid chamber.
- 77. The system of claim 63, wherein the system further comprises a hollow injection needle in fluid-tight communication with the interior of the sterile chamber.
- 78. The system of claim 77, wherein the hollow injection needle is contained within an injection catheter.
- 79. The system of claim 77, wherein a distal portion of the injection needle extends from the injection catheter, said system further comprising an operator-controlled adjustable needle stop fixedly attached to the distal portion of the injection needle, wherein one or more precisely controlled increments of the distal tip of the needle are exposed by the operator advancing the needle distally through a series of positions within the needle stop and wherein the needle stop provides a sensible signal to the operator that precisely indicates how many of the precisely controlled increments of the distal tip have been extended from within the needle stop by the operator and wherein depth penetration of the injection needle is controlled by the length of distal tip of the needle exposed by the operator.
- 80. The system of claim 77, wherein the adjustable needle stop comprises in co-axial arrangement:
a substantially cylindrical outer needle holder, and a needle carriage having an interior shaped to receive the distal portion of the injection needle, said needle carriage being slideably mounted within the needle holder for movement between a recessed position, in which the distal tip of the needle does not protrude from the distal end of the needle holder, and a series of progressively advanced positions, in which the distal tip of the needle is advanced to expose the precisely controlled increments of the distal tip thereof; and a locking mechanism for locking longitudinal movement of the needle carriage within the needle holder.
- 81. The system of claim 80, wherein each sensible signal corresponds to advancement of the needle tip 0.5 mm to about 2.0 mm.
- 82. The system of claim 80, wherein the sensible signal is a flash of light.
- 83. The system of claim 80, wherein the sensible signal is an audible and/or tactile signal.
- 84. The system of claim 83, wherein the needle holder comprises a flexible detent extending from the proximal end of the holder, and the exterior of the needle carriage comprises a longitudinal series of circumferential notches shaped to sequentially receive the flexible detent as the needle carriage slides within the needle holder, causing the detent to move from one notch to an adjoining notch along the series of circumferential notches so as to generate the audible and/or tactile signal.
- 85. The system of claim 84, wherein the flexible detent comprises an arcuate cut out flap in the holder.
- 86. The system of claim 80, wherein the distal end of the needle holder is bell-shaped with a substantially flat distal end face.
- 87. A system for delivery of a therapeutic fluid with controlled depth penetration, said system comprising:
a) an injection catheter comprising:
an elongate hollow catheter body having a proximal end and a distal end with a flexible portion at the distal tip thereof, said catheter body being sized and constructed to be advanced intravascularly into an interior body cavity of a subject; a hollow needle housed throughout the catheter body, said needle having a distal portion with a sharp tip and a proximal portion, wherein the distal portion extends from the distal end of the catheter body; and an operator-controlled adjustable needle stop fixedly attached to distal portion of the needle wherein one or more precisely controlled increments of the distal tip of the needle are exposed by the operator advancing the needle distally through a series of positions within the needle stop and wherein the needle stop provides an indicator to the operator that indicates how many of the precisely controlled increments of the distal tip have been extended from within the needle stop by the operator and wherein the depth of needle penetration is controlled by the length of the distal tip of the needle exposed by the operator; and b) an injector system of claim 63, wherein the proximal end of the injection needle is in fluid communication with the sterile chamber of the sterile container via the sterile barrier.
- 88. The system of claim 87, wherein the adjustable needle stop comprises in co-axial arrangement:
a substantially cylindrical outer needle holder, and a needle carriage having an interior shaped to receive the distal portion of the injection needle, said needle carriage being slideably mounted within the needle holder for movement between a recessed position, in which the distal tip of the needle does not protrude from the distal end of the needle holder, and a series of progressively advanced positions, in which the distal tip of the needle is advanced to expose the precisely controlled increments of the distal tip thereof; and a locking mechanism for locking longitudinal movement of the needle carriage within the needle holder.
- 89. The system of claim 87, wherein each sensible signal corresponds to advancement of the needle tip 0.5 mm to about 2.0 mm.
- 90. The system of claim 87, wherein the indicator is an audible and/or tactile signal.
Parent Case Info
[0001] This application claims priority under 35 U.S.C. § 119(e) of U.S. Provisional Application Serial No. 60/304,641, filed Jul. 10, 2001, and U.S. Provisional Application Serial No. 60/304,607, filed Jul. 10, 2001, the entire contents of which are incorporated herein by reference.
[0002] This application is related to U.S. application Ser. No. ______ entitled “FLEXIBLE TISSUE INJECTION CATHETERS WITH CONTROLLED DEPTH PENETRATION”; U.S. application Ser. No. ______ entitled METHODS FOR CONTROLLED DEPTH INJECTIONS INTO INTERIOR BODY CAVITIES, and U.S. application Ser. No. ______ entitled METHODS FOR STERILE ASPIRATION/REINJECTION OF BODILY FLUID, filed on even date herewith, the entire contents of each of which is incorporated herein by reference.
Provisional Applications (2)
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Number |
Date |
Country |
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60304641 |
Jul 2001 |
US |
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60304607 |
Jul 2001 |
US |