Subassembly for a drug delivery device
The subassembly for drug delivery devices addresses the challenge of needle shield removal by using plastic gripping arms, achieving efficient and cost-effective needle shield removal in drug delivery devices.
Patent Information
- Application Number
- JP2024529383
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2021-11-17
- Filing Date
- 2022-11-03
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2042-11-03
AI Technical Summary
Existing drug delivery devices face challenges in efficiently removing needle shields without requiring durable materials, leading to high costs and limited design flexibility.
A subassembly for a drug delivery device featuring a cap with a needle shield remover having gripping arms that engage the distal end face of the needle shield, allowing for the use of less durable materials like plastic, thus reducing costs and enhancing design flexibility.
Enables efficient removal of needle shields using less durable materials, such as plastic, while maintaining functionality and reducing costs, thereby improving design flexibility.
Smart Images

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Figure 0007797643000003
Abstract
Description
[Technical Field]
[0001] FIELD OF THE DISCLOSURE The present disclosure relates generally to drug delivery devices. [Background technology]
[0002] A drug delivery device, such as an auto-injector, can house a syringe equipped with a needle. This type of drug delivery device can include a needle shield that protects the needle and seals the syringe to ensure sterility of both the needle and the medication contained in the syringe. Such a drug delivery device can have a cap that covers the needle shield. The cap can include a needle shield remover in the form of a sleeve disposed around the needle shield and provided with radially inward extending tabs configured to engage a peripheral surface of the needle shield when the cap is withdrawn. Summary of the Invention [Means for solving the problem]
[0003] Thus, according to a first aspect of the present disclosure, there is provided a subassembly for a medication delivery device, comprising: a cap including an outer cap body and a needle shield remover having a tubular inner cap body disposed concentrically and radially inward of the outer cap body, the tubular inner cap body defining a central channel configured to receive a needle shield, the needle shield remover including gripping arms extending axially distally from the tubular inner cap body distal end of the tubular inner cap body; and a medication container holder including a retention body configured to receive a medication container, the retention body having a retention body proximal end provided with a C-clip structure, the C-clip structure having open ends circumferentially of the retention body thereby forming an axial slot therebetween, the C-clip structure having a radially inward extending ledge configured to axially support a shoulder of the medication container, the gripping arms being disposed in the slot and configured to engage a distal end face of the needle shield.
[0004] The needle shield can thus be removed by a needle shield included in the medication delivery device when the cap is removed. Because the gripping arms engage the distal end face of the needle shield instead of gripping the circumferential surface, the material from which the needle shield remover is made does not need to be as durable as in the prior art, where the sleeve and tab are typically made of steel. Thus, greater design flexibility and the potential for lower costs are obtained.
[0005] In this disclosure, when the term "distal direction" is used, it refers to the direction away from the dose delivery site during use of the drug delivery device. When the term "distal portion / end" is used, it refers to the portion / end of the delivery device, or the portion / end of a member thereof, that is located furthest from the dose delivery site during use of the drug delivery device. Correspondingly, when the term "proximal direction" is used, it refers to the direction towards the dose delivery site during use of the drug delivery device.
[0006] When the term "proximal portion / end" is used, this refers to the portion / end of the delivery device, or the portion / end of a member thereof, that is located closest to the dose delivery site during use of the drug delivery device.
[0007] Additionally, the terms "longitudinal," "longitudinally," "axially," or "axial" refer to a direction extending along a device or component thereof, typically in the direction of the device's and / or component's greatest elongation, from the proximal end to the distal end.
[0008] Similarly, the terms "lateral," "lateral," and "laterally" refer to a direction generally perpendicular to the longitudinal direction.
[0009] Additionally, the terms "circumferential," "circumferential," or "circumferentially" refer to the circumference or direction of the circumference relative to an axis, usually a central axis extending in the direction of the greatest elongation of the device and / or component.
[0010] Similarly, "radial" or "radially" refers to a direction extending radially relative to an axis, and "rotational," "rotational," and "rotationally" refer to rotation relative to an axis.
[0011] According to one embodiment, the outer cap body has an outer cap body distal end and the tubular inner cap body extends distally beyond the outer cap body distal end.
[0012] According to one embodiment, the gripping arm includes a radially inwardly extending structure having a proximally facing radial surface configured to press against the distal end face of the needle shield.
[0013] According to one embodiment, the radially inwardly extending structures have radial dimensions that gradually decrease in a direction toward the distal end faces of the gripping arms.
[0014] According to one embodiment, the cap is made of plastic.
[0015] The gripping arms may be made of plastic. The gripping arms may include or consist of plastic.
[0016] The needle shield remover may be made of plastic.The needle shield remover may include or consist of plastic.
[0017] According to one embodiment, the central channel is sized to fit tightly over the needle shield.
[0018] According to one embodiment, the central channel is sized to accommodate the majority of the length of the needle shield.
[0019] According to one embodiment, the central channel is sized to accommodate at least 70% or 80% of the length of the needle shield.
[0020] According to one embodiment, the distal end of the tubular inner cap body is disposed adjacent to the proximal end of the retention body.
[0021] According to one embodiment, the needle shield remover includes only one gripping arm.
[0022] According to one embodiment, the needle shield comprises a rigid needle shield RNS and / or a flexible needle shield FNS.
[0023] One embodiment includes a housing configured to receive a medication container holder, the housing having an inner wall axially aligned with the c-clip structure, the inner wall configured to limit radial outward bending of the c-clip structure.
[0024] According to one embodiment, the inner wall includes an axial inner wall slot configured to receive the gripping arm.
[0025] According to a second aspect of the present disclosure, there is provided a medication delivery device comprising a subassembly according to any of the preceding claims.
[0026] In general, all terms used in the claims should be interpreted according to their ordinary meaning in the art unless expressly defined otherwise herein. All references to "elements, devices, components, means, etc." should be openly interpreted as referring to at least one instance of an element, device, component, means, etc., unless expressly stated otherwise.
[0027] Specific embodiments of the inventive concept will now be described, by way of example, with reference to the accompanying drawings, in which: [Brief explanation of the drawings]
[0028] [Figure 1] 1 is a perspective view of an example of a medication delivery device including an example of a subassembly according to the present disclosure. [Figure 2] 2 shows an exploded view of the drug delivery device in FIG. 1. [Figure 3] An example of a cap is shown. [Figure 4] FIG. 2 shows a perspective view of a drug container holder. [Figure 5] FIG. 1 is a perspective view of the proximal portion of the medication delivery device with the cap attached and the housing removed. [Figure 6] 1 is a longitudinal cross section of a drug delivery device with a cap attached. [Figure 7] 1 is a longitudinal cross section of the medication delivery device after the cap has been removed. DETAILED DESCRIPTION OF THE INVENTION
[0029] The inventive concepts will now be described more fully hereinafter with reference to the accompanying drawings, in which exemplary embodiments are shown. However, the inventive concepts may be embodied in many different forms and should not be construed as limited to the embodiments set forth herein; rather, these embodiments are provided as examples so that this disclosure will be thorough and complete, and will fully convey the scope of the inventive concepts to those skilled in the art. Like numbers refer to like parts throughout the description.
[0030] The present disclosure relates to a subassembly for a drug delivery device. The drug delivery device may be, for example, an auto-injector or a manual injector.
[0031] The subassembly includes a cap including a needle shield remover provided with a gripping arm, and a drug container holder having a c-clip structure with open ends having an axial slot formed therebetween.
[0032] The medication container holder is configured to hold or accommodate a medication container, such as a syringe, with a needle and a needle shield disposed around the needle.
[0033] The gripping arms are configured to extend into the axial slots and thereby press against the distal end face of the needle shield.
[0034] A medication delivery device that can include the subassemblies described herein can have a power pack assembly configured to effect the dispensing of a medication contained in a medication container.
[0035] The power pack assembly may include, for example, a spring-loaded plunger rod or a gas-powered plunger rod. For illustrative purposes, an example of a medication delivery device including the subassembly disclosed below includes a spring-loaded plunger rod.
[0036] Turning now to Figure 1, there is shown an example of a medication delivery device 1. The medication delivery device 1 is an auto-injector.
[0037] The medication delivery device 1 includes a housing 3. The housing 3 has a proximal end 3a and a distal end 3b. The housing 3 is hollow and may be generally tubular. The housing 3 may include a proximal end opening.
[0038] The medication delivery device 1 includes a cap 5. The cap 5 may be attached to the proximal end 3a of the housing 3 and / or to a delivery member cover (not shown in FIG. 1) that protrudes from the proximal end opening of the housing 3.
[0039] FIG. 2 is an exploded view of the drug delivery device 1.
[0040] The medication delivery device 1 is configured to receive a medication container 7, such as a syringe. The medication container holder 7 includes a delivery member, e.g., a needle. Attached to the delivery member is a needle shield 8. The needle shield 8 may include a flexible needle shield (FNS) 9 and / or a rigid needle shield (RNS) 11. In one example where a needle shield 8, including both an FNS 9 and an RNS 11, is attached to the needle, the RNS 11 may be disposed around the FNS 9.
[0041] The cap 5 includes a needle shield remover 13 configured to engage the needle shield 8 .
[0042] The needle shield remover 13 includes an axially extending gripping arm 13a that extends distally. The gripping arm 13a is configured to press against or engage a distal end surface of the needle shield 8. The distal end surface may be the distal end surface 11a of the RNS 11 and / or the distal end surface 9a of the FNS 9.
[0043] When the cap 5 is removed, it takes the needle shield 8, e.g., the RNS 11 and FNS 9, with it. In a preferred example, the cap includes a retention section disposed on the interior of the needle shield remover. The retention section is configured to retain the needle shield so that the needle shield does not fall out of the proximal end of the cap. Alternatively, the cap includes a closed proximal end. In an example where the cap includes a retention section, the retention section is preferably disposed at the proximal end of the needle shield remover. For example, the retention section is an annular ledge extending from the interior surface of the needle shield remover. Alternatively, the retention section is one or more axially extending ribs disposed on the interior surface of the needle shield remover.
[0044] The medication delivery device includes the aforementioned delivery member cover 17. The delivery member cover 17 is slidably disposed on the housing 3 and extends from the proximal end opening 6 of the housing 3.
[0045] The delivery member cover 17 is configured to move axially relative to the housing 3 from an extended position to a retracted position in which the housing 3 receives a larger portion of the delivery member cover 17 than in the extended position.
[0046] The delivery member cover 17 is biased towards the extended position. The medication delivery device 1 includes a first resilient member 15 configured to bias the delivery member cover 17 towards the extended position. The first resilient member 15 may be, for example, a coil spring.
[0047] The first elastic member 15 may for example be arranged to extend inside the delivery member cover 17 between a radial surface of the delivery member cover 17 and a radial surface provided on the inside of the housing 3 .
[0048] The delivery member cover 17 has a proximal tubular portion 17a and legs 17b that extend distally toward the distal end 3b of the housing 3.
[0049] The medication delivery device 1 includes a medication container holder 19. The medication container holder 19 is disposed in the housing 3 and is configured to hold a medication container, such as a syringe 7.
[0050] The housing 3 may, for example, include a radially inwardly extending ledge that prevents the medication container holder 19 from moving in a proximal direction, ie, towards the proximal end 3 a of the housing 3 .
[0051] The medication delivery device 1 includes a plunger rod 21. The plunger rod 21 is configured to extend into a medication container, i.e., a syringe 7 in this example.
[0052] The plunger rod 21 is configured to move in a proximal direction inside the housing 3. The plunger rod 21 is configured to move from an initial axial position to a final position that is closer to the proximal end 3 a of the housing 3 than the initial axial position.
[0053] The plunger rod 21 includes a radial recess 21a. Alternatively, the plunger rod may include a bulge extending radially from the outer surface of the wall of the plunger rod.
[0054] The plunger rod 21 may be hollow, as in the example in Figure 2. Alternatively, the plunger rod may include a tubular portion and a rod portion.
[0055] The illustrated drug delivery device 1 includes a rod 27 and a second elastic member 23. The rod 27 is configured to be disposed on the plunger rod 21, and the second elastic member 23, e.g., a spring, can be disposed around the rod 27. Alternatively, the second elastic member 23 can be disposed partially around the plunger rod, in which case the drug delivery device does not have a rod 27.
[0056] In one example, the medication delivery device includes a gas canister and a valve connected to the gas canister to actuate the plunger rod from the initial axial position in place of the second resilient member.
[0057] The medication delivery device 1 can include a U-shaped bracket 25. The U-shaped bracket 25 is positioned such that the bottom of the U faces the distal end 3b of the housing 3. The second elastic member 23 is configured to bias the U-shaped bracket 25 toward the distal end 3b of the housing 3.
[0058] The medication delivery device 1 includes a rotor 29 and a rear cap structure 31 .
[0059] The rear cap structure 31 is configured to engage with the plunger rod 21 to maintain the plunger rod 21 in its initial axial position. The rear cap structure 31 has a tubular proximal portion 31a provided with radially flexible arms 31b. Each flexible arm 31b is configured to engage with a respective radial recess 21a of the plunger rod 21 before the drug delivery device 1 is actuated or triggered to perform drug delivery.
[0060] The rotor 29 is disposed radially outside and around the tubular proximal portion 31 a and is configured to rotate relative to the tubular proximal portion 31 a from a first rotational position, which is held before actuation of the drug delivery device 1, to a second rotational position.
[0061] The rotor 29 has an inner surface that presses against the flexible arms 31b and prevents the flexible arms 31b from disengaging from respective ones of the radial recesses 21a when the rotor 29 is in the first rotational position.
[0062] The rotor 29 has an inner surface provided with an inner recess or window that is circumferentially offset from the flexible arm 31b when the rotor 29 is in the first rotational position.
[0063] The rotor 29 is configured to cooperate with the delivery member cover 17 as the delivery member cover 17 moves from the extended position toward the retracted position. The rotor 29 is configured to convert the linear movement of the delivery member cover 17 into rotation. The rotor 29 has a guide structure 29a configured to cooperate with a radially inwardly extending pin on the leg 17b of the delivery member cover 17, such that the pin moves against a cam surface of the guide structure 29a as the delivery member cover 17 moves toward the retracted position. This causes the rotor 29 to rotate from the first rotational position to the second rotational position. When the delivery member cover 17 reaches the retracted position, an inner recess or window on the inner surface of the rotor 29 aligns with a flexible arm 31b of the rear cap structure 31. This allows the flexible arm 31b to bend radially outward and disengage from the radial recess 21a of the plunger rod 21, thereby releasing the plunger rod 21 to move axially from the initial axial position toward the final position.
[0064] As the plunger rod 21 is released and reaches its final position, the U-shaped bracket 25, which was previously engaged with the rear cap structure 31, is released and impacts, for example, with the inner radial surface of the rear cap structure 31, which causes an audible click, indicating that the drug delivery operation is complete.
[0065] The medication container holder 19 , the cap 5 and, in some instances, the housing 3 form or form part of the aforementioned subassemblies of the medication delivery device 1 .
[0066] 3 is a perspective view of an example of the cap 5. The cap 5 has an outer cap body 5a, which has an outer cap body proximal end 5b and an outer cap body distal end 5c.
[0067] The needle shield remover 13 has a tubular inner cap body 13b with a gripping arm 13a extending axially distally from a tubular inner cap body distal end 13c of the tubular inner cap body 13b.
[0068] The tubular inner cap body 13b is arranged concentrically with the outer cap body 5a and radially inside the outer cap body 5a.
[0069] The tubular inner cap body 13b extends axially beyond the outer cap body distal end 5c, and the gripping arms 13a therefore also extend beyond the outer cap body distal end 5c.
[0070] A radial space 5d is formed between the tubular inner cap body 13b and the outer cap body 5a, and the radial distance between the tubular inner cap body 13b and the outer cap body 5a is dimensioned such that at least a portion of the proximal tubular portion 17a of the delivery member cover 17 can be received in the radial space 5d.
[0071] The tubular inner cap body 13b defines a central channel 14 configured to receive a needle shield 8, eg, an RNS 11 and / or an FNS 9.
[0072] The central channel 14 may be sized to receive the needle shield 8 with a tight or interference fit. The outer surface of the needle shield 8 may be in direct contact with the inner surface forming the central channel 14. The outer surface of the needle shield 8 may be in direct contact with the inner surface forming the central channel 14 around the entire periphery of the needle shield 8.
[0073] The central channel 14 may be sized to accommodate a majority of the axial length of the needle shield 8, for example at least 70% or 80% of the axial length of the needle shield 8.
[0074] According to this example, the cap 5 comprises a single gripping arm 13a.
[0075] The gripping arms 13a include radially inwardly extending structures 13d. The radially inwardly extending structures 13d can have a radial dimension that gradually decreases in a direction toward the distal end faces of the gripping arms 13a. For example, the radially inwardly extending structures 13d can have a wedge or ramp shape that increases in radial dimension in a direction toward the outer cap body proximal end 5b.
[0076] The radially inward extending structure 13d has a proximally facing radial surface 13e configured to press against the distal end face of the needle shield 8, e.g., the distal end face 11a of the RNS 11 and / or the distal end face 9a of the FNS 9, when the cap 5 is removed.
[0077] 4 shows a perspective view of the medication container holder 19. The medication container holder 19 includes a holding body 19a. The holding body 19a is configured to receive or accommodate the medication container 7.
[0078] Retention body 19a has a retention body proximal end 19b. Retention body proximal end 19b has a c-clip structure 19c. C-clip structure 19c has radially flexible open ends circumferentially about retention body 19a. An axial slot 19d is formed between the open ends. Axial slot 19d is dimensioned to receive gripping arm 13a when cap 5 is attached to delivery member cover 17.
[0079] The clip structure 19c has a ledge 19e extending radially inward. The ledge 19e is configured to support a shoulder of the drug container 7. The shoulder may be a proximal portion of the drug container in a region where its radial dimension decreases.
[0080] Figure 5 shows the medication delivery device 1 with the housing 3 removed and before the cap 5 is removed. The cap 5 is attached to the delivery member cover 17 and receives part of the needle shield 8. The gripping arm 13a is located in an axial slot 19d in the retaining body 19a. The gripping arm 13a is positioned to grip the needle shield 8 when the cap 5 is removed from the delivery member cover 17.
[0081] FIG. 6 shows the medication delivery device 1 in longitudinal cross section, including the housing 3, before the cap 5 is removed.
[0082] The drug container 7 is disposed in the housing 3. The shoulder portion 7a presses against the protrusion 19e of the drug container holder 19.
[0083] The tubular inner cap body distal end 13c is disposed adjacent to the retaining body proximal end 19b of the drug container holder 19. In another example, the tubular inner cap body distal end 13c extends axially to approximately the retaining body proximal end 19b. The axial distance between the tubular inner cap body distal end 13c and the retaining body proximal end 19b is less than the axial extent of the gripping arms 13a from the tubular inner cap body distal end 13c.
[0084] The housing 3 has an inner wall 3c that is axially aligned with the c-clip structure 19c. The inner wall 3c is therefore axially aligned at the same level as the c-clip structure 19c. The inner wall 3c is disposed radially outward of the c-clip structure 19c. The inner wall 3c is configured to limit radially outward bending of the c-clip structure 19c. This allows the radially inward extending ledge 19e to prevent the medication container 7 from moving proximally relative to the housing 3. Furthermore, during the assembly process of the medication delivery device, the inner wall 3c is disposed radially very close to the outer surface of the c-clip structure 19c, thereby limiting radially outward bending of the c-clip structure 19c.
[0085] The inner wall 3c has an axial inner wall slot 3d configured to receive the gripping arm 13a. The gripping arm 13a is simultaneously disposed in the axial slot 19d and in the axial inner wall slot 3d when the cap 5 is attached around the delivery member cover 17. A radially outer portion of the gripping arm 13a extends into the axial inner wall slot 3d, and a radially inner portion of the gripping arm 13a extends into the axial slot 19d of the retention body 19a.
[0086] During assembly, the drug container 7 may already be positioned on the drug delivery device 1 when the cap 5 is attached. Thus, when the cap 5 is positioned over the delivery member cover 17 and the needle shield 8, the gripping arms 13a can slide into the axial slots 19d and the axial inner wall slots 3d. The cap 5 is pushed against the housing 3 until the gripping arms 13a attain a position in which the proximal-facing radial surface 13e is distally positioned relative to the distal end face of the needle shield 8. Alternatively, during assembly, the cap may already be positioned on the delivery member cover and attached to the proximal end of the housing. In this example, the drug container holder would first be held in a distal position, for example, by an assembly tool or engagement with the housing. The drug container with the needle shield would then be inserted into the drug container holder from the distal end of the housing and the distal end of the drug container holder. During insertion of the drug container into the drug container holder, the needle shield bends the c-clip radially outward as it passes the proximal end of the drug container holder. The c-clip then bends radially inward as the needle shield passes the proximal end of the drug container holder. The drug container holder and drug container then move proximally together relative to the housing toward the cap to a proximal position where the inner wall of the housing restricts the c-clip from bending radially outward. Further proximal movement of the drug container holder with the drug container results in the needle shield moving into the needle shield remover of the cap. Thus, as the needle shield enters the needle shield remover, the gripping arms can position into the axial slot.
[0087] Thus, after assembly and before removal of cap 5, proximally-facing radial surface 13e of radially-inward extending structure 13d is disposed distally relative to the distal end face of needle shield 8, in this example, distal end faces 9a, 11a of both FNS 9 and FNS 11. When cap 5 is withdrawn from delivery member cover 17, proximally-facing radial surface 13e extends radially inward to engage or press against the distal end faces of needle shield 8, i.e., in this example, both FNS 9 and FNS 11.
[0088] 7 shows the cap 5 when it is pulled off the delivery member cover 17. The gripping arms 13a engage the distal end face of the needle shield 8, which in this example includes both the FNS 9 and FNS 11. The needle shield is therefore removed along with the cap 5. The delivery member 7b, and thus the needle, are exposed inside the delivery member cover 17.
[0089] When the medication delivery device 1 is pressed against the injection site, the delivery member cover 17 moves towards the retracted position, initiating medication delivery.
[0090] The inventive concept has been described above primarily with reference to certain examples. However, as will be readily understood by those skilled in the art, embodiments other than those disclosed above are equally possible within the scope of the inventive concept as defined by the appended claims. [Explanation of symbols]
[0091] 1. Drug delivery device 3. Housing 3a proximal end 3b distal end 3c inner wall 3d axial inner wall slot 5 Caps 5a Outer cap body 5b outer cap body proximal end 5c Outer cap body distal end 5d radial space 6 Proximal end opening 7. Medicine containers 7a Shoulder 7b Delivery member 8-needle shield 9 Flexible Needle Shield 9a Distal end face 11 Rigid Needle Shield 11a Distal end face 13 Needle Shield Remover 13a Grasping arm 13b Tubular inner cap body 13c tubular inner cap body distal end 13d radially inward extension structure 13e Proximally Facing Radial Surface 14. Central Channel 15 First elastic member 17 Delivery member cover 17a Proximal tubular part 17b leg 19 Drug container holder 19a Holding body 19b Retaining body proximal end 19c c-clip construction 19d Axial slot 19e protrusion 21 Plunger rod 21a Radial recess 23 Second elastic member 25 U-shaped bracket 27 Rod 29 Rotor 29a Guide structure 31 Rear cap structure 31a Tubular proximal part 31b Flexible arm
Claims
1. an outer cap body (5a); a needle shield remover (13) having a tubular inner cap body (13b) disposed concentrically and radially inside the outer cap body (5a); A cap (5) comprising: the tubular inner cap body (13b) defines a central channel (14) configured to receive a needle shield (8); The needle shield remover (13) includes a gripping arm (13a) extending axially distally from a tubular inner cap body distal end (13c) of the tubular inner cap body (13b). A cap (5), A medicament container holder (19) comprising a retaining body (19a) configured to receive a medicament container (7), said retaining body (19a) having a retaining body proximal end (19b) provided with a c-clip structure (19c), said c-clip structure (19c) having open ends circumferentially of said retaining body (19a) thereby forming an axial slot (19d) between said open ends; The c-clip structure (19c) has a radially inwardly extending ledge (19e) configured to axially support a shoulder of the drug container (7). a drug container holder (19); Including, The gripping arm (13a) is disposed in the axial slot (19d) and configured to engage the distal end surface (11a) of the needle shield (8). A subassembly for a drug delivery device (1).
2. 2. The subassembly of claim 1, wherein the outer cap body (5a) has an outer cap body distal end (5c) and the tubular inner cap body (13b) extends distally beyond the outer cap body distal end (5c).
3. 2. The subassembly of claim 1, wherein the gripping arm (13a) includes a radially inwardly extending structure (13d) provided with a proximally facing radial surface (13e) configured to press against the distal end face (11a) of the needle shield (8).
4. 4. The subassembly of claim 3, wherein the radially inwardly extending structure (13d) has a radial dimension that gradually decreases in a direction toward a distal end face of the gripping arm (13a).
5. 2. The subassembly of claim 1, wherein the cap (5) is made of plastic.
6. 2. The subassembly of claim 1, wherein the central channel (14) is dimensioned to fit tightly over the needle shield (8).
7. 2. The subassembly of claim 1, wherein the central channel (14) is sized to accommodate a majority of the length of the needle shield (8).
8. 2. The subassembly of claim 1, wherein the central channel (14) is dimensioned to accommodate at least 70% or 80% of the length of the needle shield (8).
9. The subassembly of claim 1 , wherein the tubular inner cap body distal end (13c) is disposed adjacent the retention body proximal end (19b).
10. The subassembly of claim 1, wherein the needle shield remover (13) includes only one gripping arm (13a).
11. 2. The subassembly of claim 1, wherein the needle shield (8) comprises a rigid needle shield RNS (11) and / or a flexible needle shield FNS (9).
12. 2. The subassembly of claim 1, comprising a housing (3), the housing (3) configured to receive the drug container holder (19), the housing (3) having an inner wall (3c) arranged in axial alignment with the c-clip structure (19c), the inner wall (3c) configured to limit radial outward bending of the c-clip structure (19c).
13. 13. The subassembly of claim 12, wherein the inner wall (3c) includes an axial inner wall slot (3d) configured to receive the gripping arm (13a).
14. A drug delivery device (1) comprising a subassembly according to any one of claims 1 to 13.
Citation Information
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