Claims
- 1. A delivery device, comprising:
a sachet pack including a plurality of unit doses of a medicament enclosed between a first strip and a second strip; a first member; a second member; an actuator, the actuator pulling the first strip against the first member and the second strip against the second member to release a unit dose of the medicament from the a sachet pack; and a mouthpiece positioned relative to the sachet pack, the first member, and the second member, to deliver the unit dose of the medicament to an oral cavity of a patient.
- 2. A delivery device, comprising:
a sachet pack including a plurality of unit doses of a medicament enclosed between a first strip and a second strip; a first roller spaced apart forward from a second roller, the first strip being wrapped around the first roller, the second strip being wrapped around the second roller; an actuator, the actuator, upon actuation by a patient, pulling the first strip around the first roller and pulling the second strip around the second roller to release a unit dose of the medicament from the sachet pack; a mouthpiece positioned relative to the sachet pack, the first roller, and the second roller, to deliver the unit dose of the medicament to an oral cavity of the patient.
- 3. A multiple dose delivery device for delivering a medicament into an oral cavity of a patient, comprising:
a sachet pack including a plurality of unit doses of a medicament enclosed between a first strip and a second strip; a sachet advance mechanism engaged with the sachet pack, the sachet advance mechanism, upon user actuation, separating the first strip from the second strip to release one of the plurality of the unit doses from the sachet pack; a mouthpiece having an opening, each released unit dose passing through the opening.
- 4. A delivery. device, comprising:
a sachet pack including a plurality of unit doses of a medicament enclosed between a first strip and a second strip; a first roller spaced apart forward from a second roller, the first strip being wrapped around the first roller, the second strip being wrapped around the second roller; an actuator that, upon actuation by a patient, causes a predetermined rotation of the first and second rollers, the predetermined rotation being selected such that repeated actuation of the actuator will cause successive ones of the plurality of the unit doses to be released from the sachet pack; a mouthpiece positioned relative to the sachet pack, the first roller, and the second roller, to deliver the unit dose of the medicament to an oral cavity of the patient.
- 5. A delivery device, comprising:
a sachet pack including a plurality of unit doses of a medicament enclosed between a first strip and a second strip; a first roller spaced apart forward from and above a second roller, the first strip being wrapped around the first roller, the second strip being wrapped around the second roller; an actuator, the actuator, upon actuation by a patient, pulling the first strip around the first roller and pulling the second strip around the. second roller to release a unit dose of the medicament from the sachet pack; a mouthpiece surrounding the first and second rollers, the mouthpiece having a top surface, a bottom surface, and a pair of lateral surfaces, the bottom surface having an opening formed therein, the released medicament passing through the opening.
- 6. The device of claim 5, wherein the opening has a forward edge, a rear edge, and a pair of lateral edges, and wherein the forward edge contacts the first strip and the rear edge contacts the second strip.
- 7. The device of claim 6, wherein the first strip separates from the second strip at a separation point, and wherein the separation point is approximately midway between the forward and rear edges.
- 8. The device of claim 4, wherein the mouthpiece surrounds the first and second rollers, the mouthpiece having a top surface, a bottom surface, and a pair of lateral surfaces, the bottom surface having an opening formed therein, the released medicament passing through the opening.
- 9. The device of claim 8, wherein the opening has a forward edge, a rear edge, and a pair of lateral edges, and wherein the forward edge contacts the first strip and the rear edge contacts the second strip.
- 10. The device of claim 9, wherein the first strip separates from the second strip at a separation point, and wherein the separation point is approximately midway between the forward and rear edges.
- 11. The device of claim 2, wherein the mouthpiece surrounds the first and second rollers, the mouthpiece having a top surface, a bottom surface, and a pair of lateral surfaces, the bottom surface having an opening formed therein, the released medicament passing through the opening.
- 12. The device of claim 11, wherein the opening has a forward edge, a rear edge, and a pair of lateral edges, and wherein the forward edge contacts the first strip and the rear edge contacts the second strip.
- 13. The device of claim 12, wherein the first strip separates from the second strip at a separation point, and wherein the separation point is approximately midway between the forward and rear edges.
- 14. The device of claim 3, wherein the mouthpiece has a top surface, a bottom surface, and a pair of lateral surfaces, the bottom surface having an opening formed therein, the released medicament passing through the opening.
- 15. The device of claim 14, wherein the opening has a forward edge, a rear edge, and a pair of lateral edges, and wherein the forward edge contacts the first strip and the rear edge contacts the second strip.
- 16. The device of claim 15, wherein the first strip separates from the second strip at a separation point, and wherein the separation point is approximately midway between the forward and rear edges.
- 17. The device of claim 1, wherein the first member is a first roller and the second member is a second roller, and wherein the first roller is spaced apart forward from the second roller.
- 18. The device of claim 1, wherein the actuator includes
an actuator input; a first pair of index rollers defining a first nip therebetween, the first strip passing through the first nip; a second pair of index rollers defining a second nip therebetween, the first strip passing though the second nip; and a drive coupled to the actuator input, the first pair of index rollers and the second pair of index rollers; and wherein upon actuation of the actuator input by a patient, the drive causes rotation of the first and second pairs of index rollers, which in turn, pull the a portion of the first and second strips through the first and second nips, respectively.
- 19. The device of claim 18, wherein the drive comprises a gear, the gear engaging one of the first pair of index rollers and one of the second pair of index rollers, the gear being coupled to the actuator input such that actuation of the actuator input causes a predetermined rotation of the gear.
- 20. The device of claim 2, wherein the actuator includes
an actuator input; a first pair of index rollers defining a first nip therebetween, the first strip passing through the first nip; a second pair of index rollers defining a second nip therebetween, the first strip passing though the second nip; and a drive coupled to the actuator input, the first pair of index rollers and the second pair of index rollers; and wherein upon actuation of the actuator input by a patient, the drive causes rotation of the first and second pairs of index rollers, which in turn, pull the a portion of the first and second strips through the first and second nips, respectively.
- 21. The device of claim 20, wherein the drive comprises a gear, the gear engaging one of the first pair of index rollers and one of the second pair of index rollers, the gear being coupled to the actuator input such each actuation of the actuator input causes a predetermined rotation of the gear.
- 22. The device of claim 5, wherein the actuator includes
an actuator input; a first pair of index rollers defining a first nip therebetween, the first strip passing through the first nip; a second pair of index rollers defining a second nip therebetween, the first strip passing though the second nip; and a drive coupled to the actuator input, the first pair of index rollers and the, second pair of index rollers; and wherein upon actuation of the actuator input by a patient, the drive causes rotation of the first and second pairs of index rollers, which in turn, pull the a portion of the first and second strips through the first and second nips, respectively.
- 23. The device of claim 22, wherein the drive comprises a gear, the gear engaging one of the first pair of index rollers and one of the second pair of index rollers, the gear being coupled to the actuator input such each actuation of the actuator input causes a predetermined rotation of the gear.
- 24. The device of claim 4, wherein the actuator includes
an actuator input; a first pair of index rollers defining a first nip therebetween, the first strip passing through the first nip; a second pair of index rollers defining a second nip therebetween, the first strip passing though the second nip; and a drive coupled to the actuator input, the first pair of index rollers and the second pair of index rollers; and wherein upon actuation of the actuator input by a patient, the drive causes rotation of the first and second pairs of index rollers, which in turn, pull the a portion of the first and second strips through the first and second nips, respectively.
- 25. The device of claim 24, wherein the drive comprises a gear, the gear engaging one of the first pair of index rollers and one of the second pair of index rollers, the gear being coupled to the actuator input such each actuation of the actuator input causes rotation of the gear in an amount sufficient to cause the predetermined rotation of the first and second rollers.
- 26. The device of claim 1, wherein the actuator includes an actuator input coupled to a carriage, wherein the carriage is coupled to the first and second strips, and wherein actuation of the actuator input causes a movement of the carriage away from the first and second members.
- 27. The device of claim 1, wherein the actuator includes an actuator input coupled to a carriage, wherein the carriage is coupled to the first and second strips wherein actuation of the actuator input causes a movement of the carriage from a first position to a second position and then to the first position, the first position being closer to the first and second members than the second position.
- 28. The device of claim 27, wherein the carriage includes a first draw roller and a second draw roller, the first and second draw rollers being rotationally fixed when the carriage moves from the first position to the second position, the first draw roller rotating to wrap the first strip thereabout when the carriage moves from the second position to the first position, the second draw roller rotating to wrap the second strip thereabout when the carriage moves from the second position to the first position.
- 29. The device of claim 2, wherein the actuator includes an actuator input coupled to a carriage, wherein the carnage is coupled to the first and second strips, and wherein actuation of the actuator input causes a movement of the carriage away from the first and second rollers.
- 30. The device of claim 2, wherein the actuator includes an actuator input coupled to a carnage, wherein the carriage is coupled to the first and second strips wherein actuation of the actuator input causes a movement of the carriage from a first position to a second position and then to the first position, the first position being closer to the first and second rollers than the second position.
- 31. The device of claim 30, wherein the carriage includes a first draw roller and a second draw roller, the first and second draw rollers being rotationally fixed when the carriage moves from the first position to the second position, the first draw roller rotating to wrap the first strip thereabout when the carriage moves from the second position to the first position, the second draw roller rotating to wrap the second strip thereabout when the carriage moves from the second position to the first position.
- 32. The device of claim 4, wherein the actuator includes an actuator input coupled to a carriage, wherein the carriage is coupled to the first and second strips wherein actuation of the actuator input causes a movement of the carriage from a first position to a second position and then to the first position, the first position being closer to the first and second rollers than the second position.
- 33. The device of claim 32, wherein the carriage includes a first draw roller and a second draw roller, the first and second draw rollers being rotationally fixed when the carriage moves from the first position to the second position, the first draw roller rotating to wrap the first strip thereabout when the carriage moves from the second position to the first position, the second draw roller rotating to wrap the second strip thereabout when the carriage moves from the second position to the first position.
- 34. The device of claim 5, wherein the actuator includes an actuator input coupled to a carnage, wherein the carriage is coupled to the first and second strips wherein actuation of the actuator input causes a movement of the carriage from a first position to a second position and then to the first position, the first position being closer to the first and second rollers than the second position.
- 35. The device of claim 34, wherein the carriage includes a first draw roller and a second draw roller, the first and second draw rollers being rotationally fixed when the carriage moves from the first position to the second position, the first draw roller rotating to wrap the first strip thereabout when the carriage moves from the second position to the first position, the second draw roller rotating to wrap the second strip thereabout when the carriage moves from the second position to the first position.
- 36. The device of claim 3, wherein the sachet advance mechanism includes
a first roller spaced apart forward from a second roller, the first strip being wrapped around the first roller, the second strip being wrapped around the second roller; an actuator, the actuator, upon actuation by a patient, pulling the first strip around the first roller and pulling the second strip around the second roller to release a unit dose of the medicament from the sachet pack.
- 37. The device of claim 3, wherein the sachet advance mechanism includes
a first member; a second member; and an actuator, the actuator pulling the first strip against the first member and the second strip against the second member to release a unit dose of the medicament from the a sachet pack.
- 38. The device of claim 3, wherein the sachet advance mechanism includes,
a first roller spaced apart forward from a second roller, the first strip being wrapped around the first roller, the second strip being wrapped around the second roller; and an actuator that, upon actuation by a patient, causes a predetermined rotation of the first and second rollers, the predetermined rotation being selected such that repeated actuation of the actuator will cause successive ones of the plurality of the unit doses to be released from the sachet pack.
- 39. The device of claim 3, wherein the sachet advance mechanism includes
a first roller spaced apart forward from and above a second roller, the first strip being wrapped around the first roller, the second strip being wrapped around the second roller; and an actuator, the actuator, upon actuation by a patient, pulling the first strip around the first roller and pulling the second strip around the second roller to release a unit dose of the medicament from the sachet pack.
- 40. The device of claim 1, wherein the actuator includes
a stored energy component; a stored energy initiator coupled to the stored energy component, wherein the stored energy initiator, upon actuation, stores energy in the stored energy component; an actuation trigger which, upon actuation, releases the energy from the stored energy component; and a draw component coupled to the stored energy component, the draw component pulling the first strip against the first member and the second strip against the second member when the energy is released from the stored energy component.
- 41. The device of claim 40, wherein the draw component comprises
a first pair of index rollers defining a first nip therebetween, the first strip passing through the first nip; a second pair of index rollers defining a second nip therebetween, the second strip passing though the second nip; and a drive coupled to the stored energy component, the first pair of index rollers and the second pair of index rollers; and wherein upon release of the energy from the stored energy component, the drive causes rotation of the first and second pairs of index rollers, which in turn, pull a portion of the first and second strips through the first and second nips, respectively.
- 42. The device of claim 41,
wherein the drive comprises a first gear, the first gear engaging one of the first pair of index rollers and one of the second pair of index rollers, the first gear being coupled to the actuator input such each actuation of the actuator input causes a predetermined rotation of the gear, wherein the stored energy component includes a second gear and a torsion element, the second gear engaged with the first gear, the torsion element coupled between the stored energy initiator and the second gear.
- 43. The device of claim 2, wherein the actuator includes
a stored energy component; a stored energy initiator coupled to the stored energy component, wherein the stored energy initiator, upon actuation, stores energy in the stored energy component; an actuation trigger which, upon actuation, releases the energy from the stored energy component; and a draw component coupled to the stored energy component, the draw component pulling the first strip against the first member and the second strip against the second member when the energy is released from the stored energy component.
- 44. The device of claim 43, wherein the draw component comprises
a first pair of index rollers defining a first nip therebetween, the first strip passing through the first nip; a second pair of index rollers defining a second nip therebetween, the second strip passing though the second nip; and a drive coupled to the stored energy component, the first pair of index rollers and the second pair of index rollers; and wherein upon release of the energy from the stored energy component, the drive causes rotation of the first and second pairs of index rollers, which in turn, pull a portion of the first and second strips through the first and second nips, respectively.
- 45. The device of claim 44,
wherein the drive comprises a first gear, the first gear engaging one of the first pair of index rollers and one of the second pair of index rollers, the first gear being coupled to the actuator input such each actuation of the actuator input causes a predetermined rotation of the gear, wherein the stored energy component includes a second gear and a torsion element, the second gear engaged with the first gear, the torsion element coupled between the stored energy initiator and the second gear.
- 46. The device of claim 4, wherein the actuator includes
a stored energy component, and a stored energy initiator coupled to the stored energy component, wherein the stored energy initiator, upon actuation, stores energy in the stored energy component; an actuation trigger which, upon actuation, releases the energy from the stored energy component; and a draw component coupled to the stored energy component, the draw component pulling the first strip against the first member and the second strip against the second member when the energy is released from the stored energy component.
- 47. The device of claim 46, wherein the draw component comprises
a first pair of index rollers defining a first nip therebetween, the first strip passing through the first nip; a second pair of index rollers defining a second nip therebetween, the second strip passing though the second nip; and a drive coupled to the stored energy component, the first pair of index rollers and the second pair of index rollers; and wherein upon release of the energy from the stored energy component, the drive causes rotation of the first and second pairs of index rollers, which in turn, pull a portion of the first and second strips through the first and second nips, respectively.
- 48. The device of claim 47,
wherein the drive comprises a first gear, the first gear engaging one of the first pair of index rollers and one of the second pair of index rollers, the first gear being coupled to the actuator input such each actuation of the actuator input causes a predetermined rotation of the gear; wherein the stored energy component includes a second gear and a torsion element, the second gear engaged with the first gear, the torsion element coupled between the stored energy initiator and the second gear.
- 49. The device of claim 5, wherein the actuator includes
a stored energy component, and a stored energy initiator coupled to the stored energy component, wherein the stored energy initiator, upon actuation, stores energy in the stored energy component; an actuation trigger which, upon actuation, releases the energy from the stored energy component; and a draw component coupled to the stored energy component, the draw component pulling the first strip against the first member and the second strip against the second member when the energy is released from the stored energy component.
- 50. The device of claim 49, wherein the draw component comprises
a first pair of index rollers defining a first nip therebetween, the first strip passing through the first nip; a second pair of index rollers defining a second nip therebetween, the second strip passing though the second nip; and a drive coupled to the stored energy component, the first pair of index rollers and the second pair of index rollers; and wherein upon release of the energy from the stored energy component, the drive causes rotation of the first and second pairs of index rollers, which in turn, pull a portion of the first and second strips through the first and second nips, respectively.
- 51. The device of claim 50,
wherein the drive comprises a first gear, the first gear engaging one of the first pair of index rollers and one of the second pair of index rollers, the first gear being coupled to the actuator input such each actuation of the actuator input causes a predetermined rotation of the gear; wherein the stored energy component includes a second gear and a torsion element, the second gear engaged with the first gear, the torsion element coupled between the stored energy initiator and the second gear.
- 52. The device of claim 1, wherein the medicament is in the form of a solid.
- 53. The device of claim 1, wherein the solid comprises drug particles having a mean diameter of greater than 10 μm to about 1 mm such that an effective dose of said drug cannot be delivered into the lower lung of a human patient.
- 54. The device of claim 1, wherein the medicament is in the form of a liquid.
- 55. The device of claim 1, wherein the medicament is in the form of a semi-solid.
- 56. The device of claim 2, wherein the medicament is in the form of a solid.
- 57. The device of claim 2, wherein the solid comprises drug particles having a mean diameter of greater than 10 μm to about 1 mm such that an effective dose of said drug cannot be delivered into the lower lung of a human patient.
- 58. The device of claim 2, wherein the medicament is in the form of a liquid.
- 59. The device of claim 2, wherein the medicament is in the form of a semi-solid.
- 60. The device of claim 3, wherein the medicament is in the form of a solid.
- 61. The device of claim 3, wherein the solid comprises drug particles having a mean diameter of greater than 10 μm to about 1 mm such that an effective dose of said drug cannot be delivered into the lower lung of a human patient.
- 62. The device of claim 3, wherein the medicament is in the form of a liquid.
- 63. The device of claim 3, wherein the medicament is in the form of a semi-solid.
- 64. The device of claim 4, wherein the medicament is in the form of a solid.
- 65. The device of claim 4, wherein the solid comprises drug particles having a mean diameter of greater than 10 μm to about 1 mm such that an effective dose of said drug cannot be delivered into the lower lung of a human patient.
- 66. The device of claim 4, wherein the medicament is in the form of a liquid.
- 67. The device of claim 4, wherein the medicament is in the form of a semi-solid.
- 68. The device of claim 5, wherein the medicament is in the form of a solid.
- 69. The device of claim 5, wherein the solid comprises drug particles having a mean diameter of greater than 10 μm to about 1 mm such that an effective dose of said drug cannot be delivered into the lower lung of a human patient.
- 70. The device of claim 5, wherein the medicament is in the form of a liquid.
- 71. The device of claim 5, wherein the medicament is in the form of a semi-solid.
- 72. A method of delivering a unit dose of a medicament to a patient, comprising:
providing a device having a sachet pack, an actuator, a first roller, a second roller, and mouthpiece, the sachet pack including a plurality of unit doses of a medicament enclosed between a first strip and a second strip, the first roller spaced apart forward from the second roller, the first strip being wrapped around the first roller, the second strip being wrapped around the second roller; and upon actuation of the actuator by a patient, rotating the first and second rollers such that one of the plurality of the unit doses is released from the sachet pack and delivered to an oral cavity of the patient via the mouthpiece.
- 73. The device of claim 1, wherein the unit dose includes a non-compressed free flowing plurality of particles comprising an active agent and a water-soluble excipient, said particles having a mean diameter of greater than about 10 μm to about 1 mm, and said formulation dissolving or dispersing in a patient's mouth within 1 minute after administration without the coadministration of a fluid.
- 74. The device of claim 1, wherein the unit dose delivered is substantially independent of the orientation of the device.
- 75. The device of claim 1,
wherein the first strip separates from the second strip at a separation point; wherein the device includes a window located adjacent a path of the first strip, downstream of the separation point; and wherein an interior surface of the first strip includes sequential dose numbering, such that a number corresponding to a next dose to be delivered is on the interior surface and visible to a user of the device through the window.
- 76. The device of claim 1, wherein the device includes a housing, and wherein the actuation input is a lever which actuated by a user squeezing the lever towards the housing.
- 77. The device of claim 74, wherein the wherein the first strip separates from the second strip at a separation point, and wherein the separation point is directly above an opening in the mouthpiece.
Parent Case Info
[0001] This application claims priority from U.S. Provisional Application No. 60/362,307 filed on Mar. 07, 2002 and No. 60/366,710 filed Mar. 22, 2002, the entire disclosures of which are hereby incorporated by reference.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60362307 |
Mar 2002 |
US |
|
60366710 |
Mar 2002 |
US |