EP2968751A2

Multiple impact microprojection applicators and methods of use

Abstract

This record has no abstract on file.

Term

7.5 yearsto projected expiry

Projected expiry 10 March 2034, counted from filing; an application has no term until it is granted.

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

77 claims: 41 independent, 36 dependent

  1. 1
    Claims of equivalent WO 2014150285 A2 WHAT IS CLAIMED IS:1. A method of delivering a therapeutic agent to a subject, comprising: applying to a skin site of a subject, an applicator comprising at least one plunger element, at least one microprojection retained on a distal surface of the plunger, and an actuator;actuating the actuator to convey an external force to the at least one plunger element such that an energy required for the at least one microprojection to penetrate the skin site is delivered in multiple, discrete quanta and/or impacts.
  2. 4
    The method of any one of claims 1-3, wherein the at least one microstructure partially penetrates the skin site from a first impact, further comprising:detaching the at least one microstructure from the plunger distal end.
  3. 5
    The method of any one of claims 1 -4, wherein, the multiple, discrete quanta and/or impacts are created by one or more of:(a) the plunger comprises multiple energy-mass systems, each system having a different time constant;(b) the applicator comprises a plurality of plunger elements and an asynchronous release mechanism such that the plunger elements are released at different time periods;(c) the applicator comprises a plurality of plunger elements each comprising a dashpot element having a different damping coefficient;(d) the applicator comprises a plurality of plunger elements, each having a different type of spring;and (e) the applicator further includes a vibration element.
  4. 8
    The method of any one of claims 5-7, wherein an amplitude of the vibration element is controlled to limit an impact strain from one or more of the multiple, discrete quanta and/or impacts.
  5. 9
    The method of any one of claims 5-8, wherein a frequency of the vibration element is controlled to limit an impact strain from one or more of the multiple, discrete quanta and/or impacts.
  6. 10
    The method of any one of claims 5-9, wherein the each of the energy-mass systems has a progressively higher time constant such that the plunger elements impact the skin site in a defined sequence.
  7. 11
    1 1. The method of any one of claims 5-10, wherein each energy-mass element includes a spring and a mass element.
  8. 14
    An applicator, comprising:at least a first plunger element comprising a first energy-mass system, the first plunger element having a first restrained position and a second extended position, the first plunger element comprising a distal end on which at least one microprojection can be retained;at least a second energy-mass system, wherein the first and second energy-mass systems each has a different time constant, and each energy-mass system has a first restrained position and a second extended position;and an actuating member that can convey an external force to at least the first plunger element to release the first plunger element from the first restrained position.
  9. 19
    The applicator of any one of claims 14-18, wherein the first energy-mass system has a faster time constant than the second energy-mass system.
  10. 20
    The applicator of any one of claims 16 to 19, wherein the mass of the first energy- mass system is different than the mass of the second energy-mass system.
  11. 21
    The applicator of any one of claims 14-20, wherein the first energy-mass system has a stored energy sufficient to deploy the at least one microprojection at least partially into a subject's skin when the stored energy is released.
  12. 22
    The applicator of any one of claims 14 to 21 , further comprising a third energy-mass system, wherein the third energy-mass system has a different time constant than the first or second energy-mass systems.
  13. 24
    The applicator of any one of claims 14-23, further comprising a housing member at least partially housing the first plunger element and actuating member.
  14. 27
    The applicator of any one of claims 14-26, wherein the at least one microprojection is a microprojection array comprising a plurality of microprojections.
  15. 31
    The applicator of any one of claims 27 to 30, wherein at least a portion of the plurality of microprojections are detachable from the microprojection array.
  16. 32
    The applicator of any one of claims 14-31 , where the first plunger element contacts a subject's skin with an energy of about 0.15-0.2 J.
  17. 33
    The applicator of any one of claims 14-32, further comprising:a backing member positioned on the distal surface of the first plunger distal end, wherein the backing member comprises the at least one microprojection;the backing member being detachable from the first plunger element distal end.
  18. 37
    The applicator of any one of claims 14 to 36, further comprising:a damper positioned between at least one of the energy-storing elements and a proximal surface of the first plunger element distal end.
  19. 38
    A method of delivering a therapeutic agent to a subject, comprising:applying to a skin site of the subject, an applicator according to any one of claims 14-37;actuating the actuating member to convey an external force to at least the first plunger element;releasing the first plunger element from the first restrained position to the second extended position to impact the subject's skin;releasing the second energy-mass system from the first restrained position to the second extended position with a different time constant than the first plunger element;wherein the second energy mass system impacts a proximal surface of the first plunger distal end.
  20. 41
    The method of any one of claims 38-40, further comprising:adhering the applicator to the subject's skin.
  21. 42
    The method of any one of claims 38-41 , wherein in the deployed position, the first plunger element has an equilibrium position such that the distal end of the plunger on which the at least one microprojection is retained is positioned below a surface of the skin.
  22. 44
    The method of any one of claims 38 to 43, further comprising:detaching a backing member such that the backing member and the at least one microprojection are retained on the subject's skin.
  23. 45
    The method of any one of claims 38 to 44, wherein the therapeutic agent is selected from a drug, a small molecule, a peptide or protein, or a vaccine.
  24. 46
    An applicator, comprising:a plunger element comprising at least a shaft and a distal end on which at least one microprojection can be retained;at least one projection positioned on a proximal surface of the plunger distal end, the plunger having a first restrained position and a second extended position;an actuating member that can convey an external force to the plunger element to release the plunger element from the first restrained position;a linear energy-storing member positioned between the actuator and the plunger distal end, the linear energy-storing member having a first position and a second position, wherein the linear energy-storing member is effective to move the plunger from its first position to its second position as the linear energy-storing member moves from its first position to its second position;and a torsional energy-mass system at least partially surrounding the plunger shaft and being positioned between the linear energy-storing member and the plunger distal end, wherein the torsional energy-mass system contacts the at least one projection as the torsional energy-mass system rotates about the plunger shaft.
  25. 49
    The applicator of any one of claims 46 to 48, wherein the torsional energy-mass system includes a rod perpendicular to an axis of motion of the linear energy-storing member, wherein the rod contacts the at least one projection as the torsional energy-mass system rotates.
  26. 50
    The applicator of any one of claims 46 to 49, wherein impact of the plunger distal end on a patient's skin releases the torsional spring-mass system.
  27. 51
    The applicator of any one of claims 46 to 50, each of the at least one protrusions are wedge shaped.
  28. 52
    The applicator of any one of claims 46 to 51 , wherein the energy-storing member is an elastic energy element.
  29. 53
    The applicator of any one of claims 46 to 52, wherein the energy-storing elements are each selected from a compression spring, a coil spring, and a wave spring.
  30. 54
    The applicator of any one of claims 46 to 53, wherein the linear energy-storing member has a stored energy sufficient to deploy the at least one micro projection into a subject's skin when the stored energy is released.
  31. 55
    The applicator of any one of claims 46 to 54, further comprising a housing member at least partially housing the plunger member and actuating member.
  32. 58
    The applicator of any one of claims 46 to 57, wherein the at least one microprojection is a microprojection array comprising a plurality of microprojections.
  33. 62
    The applicator of any one of claims 58 to 61 , wherein at least a portion of the plurality of microprojections are detachable from the microprojection array.
  34. 63
    The applicator of any one of claims 46 to 62, where the plunger element contacts a subject's skin with a force of about 0.15-0.2 J.
  35. 64
    The applicator of any one of claims 46 to 63, further comprising:a backing member positioned on a bottom surface of the plunger distal end, wherein the backing member comprises the at least one microprojection;the backing member being detachable from the plunger distal end.
  36. 67
    The applicator of any one of claims 64 to 66, wherein the adhesive layer at least partially surrounds the at least one microprojection.
  37. 68
    The applicator of any one of claims 46 to 67, further comprising:a damper positioned between the energy-storage devices and a proximal surface of the plunger distal end.
  38. 69
    A method of delivering a therapeutic agent to a subject, comprising:applying to a skin site of the subject, an applicator according to any one of claims 46 to 68;actuating the actuating member to convey an external force to the plunger element;releasing the plunger element from the first restrained position to the second extended position;rotating the torsional energy-mass system about the plunger shaft such that the system contacts the at least one projection on the plunger proximal surface and pushes it downward as the system rotates about the plunger shaft thereby to move the plunger distal end toward the skin site.
  39. 73
    The method of any one of claims 69 to 72, further comprising:adhering the applicator to the subject's skin.
  40. 74
    The method of any one of claims 69 to 73, wherein in the deployed position, the plunger element has an equilibrium position such that the distal end of the plunger on which the at least one microprojection is retained is positioned below a surface of the skin.
  41. 76
    The method of any one of claims 69 to 75, further comprising:detaching a backing member such that the backing member and the at least one microprotrusion is retained on the subject's skin.
  42. 77
    The method of any one of claims 69 to 76, wherein the therapeutic agent is selected from a drug, a small molecule, a peptide or protein, or a vaccine.
Independent claims42