IP Library Granted Patent US 11,458,252
Granted Patent B2
US 11,458,252 · App. 17/706,444 · Granted Oct 4, 2022

Auto-injector

Inventors: Yannick Hourmand (Haslingfield, GB); Timothy Donald Barrow-Williams (Herts, GB); Matthew Ekman (Cheshire, GB)
Assignee: Sanofi-Aventis Deutschland GMBH
A61M5/2033A61M5/50A61M5/326A61M2005/206A61M2005/208
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Quick Facts
Patent No.
US 11,458,252
App. No.
17/706,444
Granted
Oct 4, 2022
Kind
B2
Abstract

According to the invention, an auto-injector for administering a dose of a liquid medicament (M) comprises of a substantially cylindrical housing arranged to contain a pre-filled syringe filled with the medicament (M), a needle shroud slidably arranged with respect to the housing and adapted to rest on the skin of a patient receiving an injection, a releasable drive means arranged within the housing that is capable of, upon release, translating the needle shroud in a proximal direction (P) towards a safe position (PS) and a rotating collar rotatably arranged within the housing. The needle shroud in the safe position (PS) surrounds the injection needle after the injection has been carried out. The rotating collar engages the needle shroud in a manner that forces the rotating collar to rotate within the housing when the needle shroud is translated in the proximal direction (P).

Claims (41)

1. A method comprising:

disposing a syringe retainer in a distal position in a housing such that an outward protrusion of the syringe retainer is engaged with a flexible arm of the housing to releasably hold the syringe retainer in a fixed axial position relative to the housing;

disposing a syringe within the syringe retainer such that a proximal end of a body of the syringe is engaged with an inwardly angled protrusion of the syringe retainer that is disposed at a proximal end of the syringe retainer, the inwardly angled protrusion of the syringe retainer being configured to limit proximal movement of the syringe relative to the syringe retainer, wherein, with the syringe disposed within the syringe retainer, a distal end of the syringe extends distally beyond a distal end of the syringe retainer and a distal flange of the syringe is distally spaced apart from the syringe retainer;

applying an axial force to a beveled ramp of the flexible arm thereby deflecting the flexible arm outward such that the outward protrusion of the syringe retainer becomes disengaged from the flexible arm of the housing allowing the syringe retainer and the syringe disposed in the syringe retainer to move proximally relative to the housing; and

proximally moving the syringe retainer and the syringe within the housing from the distal position to a proximal position in which the syringe retainer is engaged with an inward protrusion of the housing to limit proximal movement of the syringe retainer relative to the housing.

2. A method comprising:

disposing a syringe retainer in a distal position in a housing such that an outward protrusion of the syringe retainer is engaged with a flexible arm of the housing to releasably hold the syringe retainer in a fixed axial position relative to the housing;

applying an axial force to a beveled ramp of the flexible arm thereby deflecting the flexible arm outward such that the outward protrusion of the syringe retainer becomes disengaged from the flexible arm of the housing allowing the syringe retainer and a syringe disposed in the syringe retainer to move proximally relative to the housing; and

proximally moving the syringe retainer and the syringe within the housing from the distal position to a proximal position in which the syringe retainer is engaged with an inward protrusion of the housing to limit proximal movement of the syringe retainer relative to the housing.

3. The method of claim 2 , wherein the housing, the syringe retainer, and the syringe are components of an auto-injector.

4. The method of claim 2 , wherein proximally moving the syringe retainer within the housing from the distal position to the proximal position comprises engaging the syringe retainer with the inward protrusion of the housing to proximally restrain the syringe retainer within the housing such that further proximal movement of the syringe retainer relative to the housing is prevented.

5. The method of claim 2 , wherein disposing the syringe within the syringe retainer comprises engaging an inwardly angled protrusion of the syringe retainer that is disposed at a proximal end of the syringe retainer with a proximal end of a body of the syringe.

6. The method of claim 5 , wherein engaging the inwardly angled protrusion of the syringe retainer with the proximal end of the body of the syringe axially retains the syringe relative to the syringe retainer such that proximal movement of the syringe relative to the syringe retainer is prevented.

7. The method of claim 5 , wherein, with the syringe disposed within the syringe retainer, a distal end of the syringe extends distally beyond a distal end of the syringe retainer and a distal flange of the syringe is distally spaced apart from the syringe retainer.

8. The method of claim 7 , wherein the outward protrusion extends radially outward from an outer surface of the syringe retainer and, with the syringe disposed within the syringe retainer, the outward protrusion extends radially beyond the distal flange of the syringe.

9. The method of claim 2 , comprising axially moving a needle shroud relative to the housing to apply the axial force to the beveled ramp of the flexible arm to deflect the flexible arm outward.

10. The method of claim 2 , wherein disposing the syringe retainer in the distal position in the housing such that the outward protrusion of the syringe retainer is engaged with the flexible arm of the housing comprises engaging the outward protrusion with a surface of the flexible arm.

11. The method of claim 2 , wherein deflecting the flexible arm outward comprises deflecting the flexible arm such that a portion of the flexible arm extends beyond an outer surface of the housing.

12. The method of claim 2 , wherein a distal end of syringe retainer is positioned proximal to a distal end of the housing when the syringe retainer is disposed in the distal position.

13. The method of claim 2 , wherein a distal end of a distal flange of the syringe is positioned proximal to a distal end of the housing when the syringe retainer is disposed in the distal position.

14. An auto-injector comprising:

a housing comprising (i) a flexible arm integrally formed with a cylindrical body of the housing and having a beveled ramp and (ii) an inward protrusion integrally formed with the cylindrical body of the housing;

a syringe containing a medicament; and

a syringe retainer retaining the syringe, the syringe retainer having an outer surface and an outward protrusion extending radially outward from the outer surface, the syringe retainer disposed within the housing and being axially slidable within the housing from a distal position in which the flexible arm of the housing engages the outward protrusion of the syringe retainer to restrain axial movement of the syringe retainer relative to the housing, to a proximal position in which the outer surface of the syringe retainer engages the inward protrusion of the housing to limit further proximal movement of the syringe retainer relative to the housing,

wherein the auto-injector is configured such that applying an axial force to the beveled ramp of the flexible arm deflects the flexible arm outward such that the outward protrusion of the syringe retainer becomes disengaged from the flexible arm of the housing allowing the syringe retainer and the syringe disposed in the syringe retainer to move proximally relative to the housing from the distal position to the proximal position,

wherein the syringe retainer is sized such that a distal end of the syringe extends distally beyond a distal end of the syringe retainer and a distal flange of the syringe is distally spaced apart from the syringe retainer.

15. The auto-injector of claim 14 , wherein an axial position of the inward protrusion of the housing defines an axial length that an injection needle of the syringe extends proximally beyond the housing when the syringe retainer is disposed in the proximal position.

16. The auto-injector of claim 14 , wherein the inward protrusion of the housing is located proximally of the flexible arm.

17. The auto-injector of claim 14 , wherein the outward protrusion is located on a distal portion of the syringe retainer.

18. The auto-injector of claim 14 , wherein the outward protrusion is configured to engage a surface of the flexible arm when the syringe retainer is disposed in the distal position.

19. The auto-injector of claim 14 , wherein the flexible arm is configured to deflect outward such that a portion of the flexible arm extends beyond an outer surface of the housing.

20. The auto-injector of claim 14 , wherein the beveled ramp extends inwardly from a surface of the flexible arm.

21. The auto-injector of claim 14 , wherein an axial distance between the distal flange of the syringe and a distal end of the syringe retainer is larger than an axial width of the inward protrusion of the housing.

22. The auto-injector of claim 14 , wherein a distal end of the syringe retainer is positioned proximal to a distal end of the housing when the syringe retainer is disposed in the distal position.

23. The auto-injector of claim 22 , wherein a distal flange of the syringe is positioned proximal to a distal end of the housing when the syringe retainer is disposed in the distal position.

24. The auto-injector of claim 14 , wherein an outer surface of the flexible arm substantially aligns with an outer surface of the cylindrical body when the syringe retainer is in the proximal position.

25. The auto-injector of claim 14 , wherein the housing has a unitary construction.

26. The auto-injector of claim 14 , wherein the flexible arm of the cylindrical body is a first flexible arm, and the cylindrical body comprises a second flexible arm having a beveled ramp.

27. The auto-injector of claim 26 , wherein the first and second flexible arms are disposed radially opposite to each another.

28. The auto-injector of claim 14 , comprising a needle shroud, the auto-injector being configured such that axially moving the needle shroud relative to the housing applies the axial force to the beveled ramp of the flexible arm to deflect the flexible arm outward.

29. The auto-injector of claim 28 , wherein the needle shroud is configured to retract from an extended position in which a proximal end of the needle shroud extends proximally beyond a proximal end of an injection needle of the syringe, to a retracted position in which the proximal end of the injection needle extends proximally beyond the proximal end of the needle shroud.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 29, 2022
From: HOURMAND, YANNICK; BARROW-WILLIAMS, TIMOTHY DONALD; EKMAN, MATTHEW
To: SANOFI-AVENTIS DEUTSCHLAND GMBH
Reel/Frame 059421/0713 →
Priority Claims (1)
EP 10196067 · Dec 21, 2010 · regional
Continuity (5)
Continuation 16909107 · Jun 23, 2020
Continuation 15669571 · Aug 4, 2017
Continuation 13993528
Provisional Application 61432255 · Jan 13, 2011
Related Publication 20220218906A1 · Jul 14, 2022
Cited By (30)
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