Nova Patents
EP3359232A2

Injector needle cap remover

Abstract

This record has no abstract on file.

Term

10 yearsto projected expiry

Projected expiry 10 October 2036, counted from filing; an application has no term until it is granted.

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

40 claims: 20 independent, 20 dependent

  1. 1
    Claims of equivalent WO 2017062943 A2 WHAT IS CLAIMED IS:1. A device for removing a needle cap, the needle cap shielding a needle of an injector system, said device comprising: (a) an elongated hollow body, having a distal end sized and shaped to at least partially envelop the needle cap;and (b) at least one snap coupled to at least one respective element of said elongated body;said elongated body having a closed and open configuration, wherein the closed configuration is defined by the at least one snap defining a width smaller than a width of a top sill of the needle cap, and said open configuration is defined by the at least one snap having a width wide enough to fit at least the width of said top sill;wherein said hollow body in said closed configuration is shaped to hold said at least one snap overhanging a top sill of said needle cap with said hollow body enveloping a lower portion of said needle cap.
  2. 3
    The device of any of claims 1-2, comprising at least two snaps coupled to at least two respective elements being at least two elastic arms having an open configuration defined by elastically deflecting away from the central axis of the needle cap, and wherein once said at least two snaps are pushed beyond the top sill of the needle cap, the elastic arms return to their closed configuration and the at least two snaps overhang the top sill of the needle cap.
  3. 6
    The device of any of claims 4-5, wherein each of said two slits have a width having a range of about 0.5 mm and about 1.5 mm.
  4. 7
    The device of any of claims 4-6, further comprising at least one intermediate longitudinal slit provided in said surface between said two slits.
  5. 8
    The device of any of claims 3-7, wherein said at least two arms encompass no more than about 40% of a circumference of said elongated hollow body.
  6. 10
    The device of any of claims 1-9, wherein said elongated body is configured to be pushed over a needle cap using a force having a range of about 50 g and about 200 g.
  7. 11
    1 1. The device of any of claims 1-10, wherein said elongated body further comprises at least two guides along its inner surface and oriented along a longitudinal axis of said elongated body, said at least two guides sized and shaped to accommodate complementary elements positioned on an outer surface of said needle cap.
  8. 12
    The device of any of claims 1-1 1, further comprising a connector sized and shaped to fit a proximal portion of said body, said connector comprising a user handle having a protruding element.
  9. 14
    A system for medicament delivery, comprising:(a) a cartridge containing a medicament and being in fluid communication with a needle, said needle enveloped by a needle cap;(b) a housing for containing said cartridge and having an orifice for allowing access to said needle cap and its associated needle;and (c) a needle cap remover device comprising: (i) at least two elastic arms coupled to define an unstressed width greater than the outside of a width of the top sill of the needle cap, said elastic arms envelop at least a portion of said needle cap, wherein a proximal end of said elastic arms can be accessed through said orifice;and (ii) at least two snaps, each coupled to a distal end of each of said at least two elastic arms, said snaps defining an unstressed width smaller than the width of the top sill of the needle cap;wherein said at least two snaps overhang the top sill of the needle cap, and when said proximal end of said elastic arms is pulled, said snaps cause said needle cap to pull with the needle cap remover device.
  10. 17
    The system of any of claims 15-16, wherein said needle cap remover device comprises two of said at least two arms, and wherein each of said two arms comprises two of said hooks.
  11. 18
    The system of any of claims 14-17, further comprising an adhesive layer having a protective liner, said adhesive layer connected to said housing, wherein said protective liner extends beyond a surface of said housing and positioned between said cap remover body and a connector.
  12. 20
    The system of any of claims 14-19, wherein pulling said cap remover body together with the enveloped needle cap requires a force being no more than 1 kg at most.
  13. 21
    A method of assembling a needle cap remover onto a needle cap, comprising:(a) aligning a longitudinal axis of the needle cap remover body to be colinear with a longitudinal axis of the needle cap;(b) inserting the distal end of the cap remover body in the direction of the top portion of the needle cap while deflecting at least two elastic elements of said cap remover body in a direction away from the central axis of the needle cap, said deflecting is provided by a plurality of hooks coupled to a distal end of the elastic members and defining a smaller perimeter than a perimeter of the needle cap;wherein said inserting is provided until said plurality of hooks extend beyond the top portion of the needle cap and snap inwardly towards the central axis of the needle cap, thereby overhanging the top portion of said needle cap, causing the elastic elements to snap from said deflecting towards the central axis of the needle cap.
  14. 23
    The method according to any of claims 21-22, further comprising interlocking a proximal portion of said needle cap remover body with a connector having a user handle.
  15. 24
    The method according to any of claims 21-23, further comprising associating said cap remover body with a battery insulator.
  16. 25
    A cover for an injector having a needle, a needle cap, and a needle cap remover having a coupler for a needle cap and a user handle, said user handle having a protruding element opposite said coupler, said protruding element having a short dimension and a long dimension, said cover comprising:at least one adhesive layer covering a surface of an outside of the injector;at least one liner layer, covering said adhesive layer, an extension extending beyond said surface;a first aperture through said adhesive layer and said liner layer aligned to an opening in said surface, said first aperture sized and shaped for passage of said coupler therethrough;and a second elongated aperture, through said extension, having a length being longer than said short dimension and shorter than said long dimension of said protruding element.
  17. 30
    The cover according to any of claims 25-29, further comprising a rigid layer surrounding at least a portion of a circumference of said second elongated aperture.
  18. 31
    The cover according to any of claims 25-30, wherein said first aperture having a circumference shape matching a circumference shape of said needle cap remover.
  19. 33
    The cover according to any of claims 25-32, further comprising at least one intermittent supporting layer attached to said at least one liner layer, said intermittent supporting layer is not continuous over an area of said cover.
  20. 34
    A method of assembling an automatic injector device having an interior volume and a base located between said interior volume and an exterior surface defined by said base, said base having an opening, said method comprising:supplying a cover having a first aperture aligned with said opening in the base, said cover having an extension extending beyond said exterior surface of said base and having a second aperture;passing a distal portion of a needle cap remover through said first aperture and said opening;coupling said distal portion to a needle cap positioned in said interior volume;bending said extension over a protruding element provided in a proximal end of said needle cap remover;said protruding element having a long dimension and a short dimension;orienting said second aperture of said cover to face said short dimension of said protruding element;and rotating said cover onto said protruding element until said second aperture is oriented to face said long dimension.
  21. 36
    The method of any of claims 34-35, wherein said cover converts a linear movement away from the exterior surface into a peeling force on said cover.
  22. 37
    The method of any of claims 34-36, further comprising sliding said second aperture along said long dimension in an offset direction from a central axis of said long dimension.
  23. 38
    The method of any of claims 34-37, further comprising stabilizing said extension of said cover onto said protruding element by constraining said second aperture against a widening portion of said protruding element.
  24. 40
    The method of any of claims 34-39, further comprising rotating said user handle such that said long dimension is not aligned with said length of said second aperture.
Independent claims24