IP Library Granted Patent US 12,324,902
Granted Patent B2
US 12,324,902 · App. 18/985,633 · Granted Jun 10, 2025

Auto-injector

Inventors: Matthew Ekman (Cheshire, GB); Yannick Hourmand (Haslingfield, GB); Timothy Donald Barrow-Williams (St. Albans, GB)
Assignee: Sanofi-Aventis Deutschland GMBH
A61M5/2033A61M5/3202A61M5/3257A61M2005/206A61M2005/208
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Quick Facts
Patent No.
US 12,324,902
App. No.
18/985,633
Granted
Jun 10, 2025
Kind
B2
Abstract

Auto-injector for administering a dose of a liquid medicament includes a housing to contain a syringe with a hollow needle and a stopper for sealing the syringe and displacing the medicament, the housing having a distal end and a proximal end with an orifice to apply against an injection site. A spring means, upon activation, can push the needle from inside the housing through the orifice and past the proximal end, operate the syringe to supply the dose of medicament, and retract the syringe with the needle after delivering the medicament. An activating means can lock the spring means in a pressurized state prior to manual operation and capable of, upon manual operation, releasing the spring means for injection.

Claims (45)

1. A method comprising:

moving an interlock sleeve relative to a housing of an auto-injector by direct contact with skin of a user from a first sleeve position to a second sleeve position such that a trigger button of the auto-injector rotates relative to the housing to a button position by an engagement between the interlock sleeve and the trigger button to allow the trigger button to be depressed towards the housing, wherein a distal portion of the interlock sleeve has a greater diameter than a proximal portion of the interlock sleeve;

while the interlock sleeve is in the second sleeve position and the trigger button is in the button position, depressing the trigger button towards the housing by direct contact with skin of the user to radially deflect two resilient clips within the auto-injector to allow a plunger rod to proximally advance within the housing, wherein prior to radially deflecting the two resilient clips, a first portion of the plunger rod is engaged to a distal portion of a syringe holder to limit proximal movement of a syringe supported by the syringe holder relative to the plunger rod while a second portion of the plunger rod located proximal to the first portion of the plunger rod is located within a barrel of the syringe such that an axial length of the second portion of the plunger rod within the barrel of the syringe is greater than an axial length of a stopper within the barrel of the syringe, and the distal portion of the syringe holder surrounds at least two sides of the plunger rod;

after radially deflecting the two resilient clips within the auto-injector, proximally advancing the plunger rod within the auto-injector by a compression drive spring surrounding a distal portion of the plunger rod such that (i) the syringe moves proximally within the housing to insert a needle of the syringe into skin of the user, and then (ii) the plunger rod slides between two opposing walls of an opening defined by the distal portion of the syringe holder and within the barrel of the syringe to dispense a medicament from the syringe through the needle and into the user; and

after dispensing the medicament from the syringe, decoupling a retraction sleeve from the housing by deflecting a resilient arm out of engagement with a protrusion of the retraction sleeve such that the retraction sleeve moves distally within the auto-injector and the retraction sleeve forces the syringe holder in a distal direction together with the retraction sleeve by an engagement between a proximal end wall of the retraction sleeve and a proximal end wall of the syringe holder.

2. The method of claim 1 , comprising proximally moving the syringe within the housing without relative movement between the plunger rod and the syringe holder while inserting the needle of the syringe into skin of the user.

3. The method of claim 1 , wherein a gap between the two opposing walls of the opening defined by the distal portion of the syringe holder substantially corresponds to a first width of the plunger rod.

4. The method of claim 3 , wherein the gap extends in a direction perpendicular to a longitudinal axis of the housing.

5. The method of claim 1 , wherein the opposing walls of the opening defined by the distal portion of the syringe holder surround a recessed portion of the plunger rod when the plunger rod slides between the two opposing walls.

6. The method of claim 1 , wherein a proximally-directed biasing force is applied to a shoulder of the plunger rod by the compression drive spring.

7. The method of claim 6 , wherein the shoulder is proximal of a distal end of the plunger rod, is distal of a proximal end of the plunger rod, and is closer to the distal end of the plunger rod than the proximal end of the plunger rod.

8. The method of claim 1 , wherein the syringe is held by the syringe holder such that a distal end of the syringe holder is distal to a distal flange of the syringe, a proximal end of the syringe holder is proximal to the distal flange of the syringe, and the syringe holder at least partially surrounds the distal flange of the syringe.

9. The method of claim 1 , comprising distally moving a distal end of the compression drive spring within the auto-injector when retracting the needle of the syringe into the housing.

10. The method of claim 1 , comprising removing a cap from a proximal end of the auto-injector such that a clip of the cap engages and removes a protective needle shield from the needle of the syringe when the cap is removed from the housing.

11. The method of claim 10 , comprising rotating the cap relative to the housing to remove the cap from the auto-injector.

12. The method of claim 1 , comprising viewing the syringe through at least one window of the housing.

13. The method of claim 1 , wherein radially deflecting the two resilient clips within the auto-injector comprises radially deflecting the two resilient clips in a radially outward direction.

14. The method of claim 1 , wherein the medicament is a GLP-1 class medicament.

15. A method comprising:

moving a first sleeve relative to a housing of an auto-injector from a first sleeve position to a second sleeve position such that a button of the auto-injector rotates relative to the housing to a button position to allow the button to be depressed;

while the first sleeve is in the second sleeve position and the button is in the button position, depressing the button to radially deflect two resilient clips within the auto-injector, wherein prior to radially deflecting the two resilient clips, a plunger rod of the auto-injector is engaged to a distal portion of a syringe holder to limit proximal movement of a syringe supported by the syringe holder relative to the plunger rod;

after radially deflecting the two resilient clips within the auto-injector, proximally advancing the plunger rod within the housing by a compression drive spring surrounding a distal portion of the plunger rod such that (i) the syringe moves proximally within the housing to allow a needle of the syringe to extend from a proximal end of the auto-injector, and then (ii) the plunger rod slides between two opposing walls of the distal portion of the syringe holder and within a barrel of the syringe to dispense a medicament from the syringe through the needle; and

after dispensing the medicament from the syringe, decoupling a second sleeve from the housing by deflecting a resilient arm out of engagement with a protrusion of the second sleeve such that the second sleeve moves distally within the housing and the second sleeve forces the syringe holder in a distal direction together with the second sleeve by an engagement between a proximal end wall of the second sleeve and a proximal end wall of the syringe holder.

16. The method of claim 15 , wherein prior to radially deflecting the two resilient clips, the plunger rod is engaged to two inwardly-extending members of the distal portion of the syringe holder.

17. The method of claim 16 , wherein a first portion of the plunger rod is engaged to the two inwardly-extending members of the distal portion of the syringe holder while a second portion of the plunger rod located proximal to the first portion of the plunger rod is located within the barrel of the syringe.

18. The method of claim 17 , wherein prior to radially deflecting the two resilient clips, an axial length of the second portion of the plunger rod within the barrel of the syringe is greater than an axial length of a stopper within the barrel of the syringe.

19. The method of claim 16 , wherein a gap between the two inwardly-extending members of the syringe holder corresponds to a width of the plunger rod.

20. The method of claim 19 , wherein the width of the plunger rod corresponds to a width of the plunger rod at a recessed portion of the plunger rod.

21. The method of claim 16 , wherein the two inwardly-extending members of the syringe holder are disposed on opposite sides of the plunger rod.

22. The method of claim 16 , wherein the distal portion of the syringe holder surrounds at least two sides of the plunger rod.

23. The method of claim 22 , wherein the distal portion of the plunger rod extends distally from a shoulder of the plunger rod, the shoulder sized to receive a proximally-directed biasing force of the compression drive spring.

24. A method comprising:

moving a first sleeve relative to a housing of an auto-injector from a first sleeve position to a second sleeve position such that a button of the auto-injector rotates relative to the housing to a button position to allow the button to be depressed;

while the first sleeve is in the second sleeve position and the button is in the button position, depressing the button to radially deflect a resilient clip within the auto-injector, wherein prior to radially deflecting the resilient clip, a plunger rod of the auto-injector is engaged to a distal portion of a syringe holder to limit proximal movement of a syringe supported by the syringe holder relative to the plunger rod;

after radially deflecting the resilient clip within the auto-injector, proximally advancing the plunger rod within the housing by a compression drive spring surrounding a distal portion of the plunger rod such that (i) the syringe moves proximally within the housing to allow a needle of the syringe to extend from a proximal end of the housing, and then (ii) the plunger rod slides within the distal portion of the syringe holder and within a barrel of the syringe to dispense a medicament from the syringe through the needle; and

after dispensing the medicament from the syringe, retracting the needle within the housing.

25. The method of claim 24 , wherein the syringe is held by the syringe holder such that a distal end of the syringe holder is distal to a distal flange of the syringe, a proximal end of the syringe holder is proximal to the distal flange of the syringe, and the syringe holder at least partially surrounds the distal flange of the syringe.

26. The method of claim 24 , wherein prior to radially deflecting the resilient clip, the plunger rod is engaged to two inwardly-extending members of the distal portion of the syringe holder.

27. A method comprising:

moving a first sleeve relative to a housing of an auto-injector from a first sleeve position to a second sleeve position such that a button of the auto-injector rotates relative to the housing to a button position to allow the button to be depressed;

while the first sleeve is in the second sleeve position and the button is in the button position, depressing the button to radially deflect a resilient clip within the auto-injector, wherein prior to radially deflecting the resilient clip, a plunger rod of the auto-injector is engaged to a distal portion of a syringe holder to limit proximal movement of a syringe supported by the syringe holder relative to the plunger rod; and

after radially deflecting the resilient clip within the auto-injector, proximally advancing the plunger rod within the housing by a compression drive spring such that (i) the syringe moves proximally within the housing to allow a needle of the syringe to extend from a proximal end of the housing, and then (ii) the plunger rod slides within the distal portion of the syringe holder and within a barrel of the syringe to dispense a medicament from the syringe through the needle.

28. The method of claim 27 , wherein the distal portion of the syringe holder comprises two inwardly-extending members that are disposed on opposite sides of the plunger rod, and an axial gap between the two inwardly-extending members of the syringe holder corresponds to a width of the plunger rod.

29. The method of claim 27 , wherein radially deflecting the resilient clip within the auto-injector comprises radially deflecting the resilient clip in a radially outward direction.

30. The method of claim 27 , wherein the medicament is a GLP-1 class medicament.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 18, 2024
From: EKMAN, MATTHEW; HOURMAND, YANNICK; BARROW-WILLIAMS, TIMOTHY DONALD
To: SANOFI-AVENTIS DEUTSCHLAND GMBH
Reel/Frame 069630/0123 →
Priority Claims (1)
EP 10167506 · Jun 28, 2010 · regional
Continuity (6)
Continuation 17719441 · Apr 13, 2022
Continuation 16809669 · Mar 5, 2020
Continuation 15880251 · Jan 25, 2018
Continuation 15165720 · May 26, 2016
Continuation 13806324
Related Publication 20250114529A1 · Apr 10, 2025
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