Palm Activated Drug Delivery Device
20230218833 · 2023-07-13
Inventors
- Lorin P. Olson (Scotts Valley, CA, US)
- Peter Krulevitch (Pleasanton, CA)
- James Glencross (Edinburgh, GB)
- Jingli Wang (San Jose, CA, US)
- Nicholas Foley (Edinburgh, GB)
- Mingqi Zhao (San Jose, CA)
Cpc classification
A61M5/31501
HUMAN NECESSITIES
A61M2005/208
HUMAN NECESSITIES
A61M5/3287
HUMAN NECESSITIES
A61M5/315
HUMAN NECESSITIES
A61M5/5086
HUMAN NECESSITIES
A61M5/31511
HUMAN NECESSITIES
A61M5/2046
HUMAN NECESSITIES
A61M5/50
HUMAN NECESSITIES
A61M5/3204
HUMAN NECESSITIES
A61M5/326
HUMAN NECESSITIES
A61M5/20
HUMAN NECESSITIES
A61M2005/3247
HUMAN NECESSITIES
A61M5/3202
HUMAN NECESSITIES
A61M5/2053
HUMAN NECESSITIES
A61M2005/3125
HUMAN NECESSITIES
A61M5/321
HUMAN NECESSITIES
A61M2005/2026
HUMAN NECESSITIES
A61M2005/3123
HUMAN NECESSITIES
A61M5/3157
HUMAN NECESSITIES
A61M5/2033
HUMAN NECESSITIES
A61M5/3243
HUMAN NECESSITIES
International classification
A61M5/32
HUMAN NECESSITIES
A61M5/20
HUMAN NECESSITIES
A61M5/315
HUMAN NECESSITIES
Abstract
Disclosed is a device for the parenteral delivery of a medication, such as a drug. The device includes upper and lower housings in which the upper housing is configured to move relative to the lower housing as a result of application of an external force to permit the user of the device to control the rate at which the drug is administered.
Claims
1. A device configured to administer a medication, the device comprising: a lower housing configured to support a syringe having a needle and configured to retain the medication; an upper housing supported relative to the lower housing and configured to move with respect to the lower housing along a direction toward the needle from a first position to a second position; a plunger rod carried by the upper housing and movable with the upper housing so as to advance relative to the syringe when the upper housing is moved along the direction, wherein advancement of the plunger rod relative to the syringe causes the syringe to deliver the medication out the needle; and a latch member that is configured to lock the upper housing in the second position so as to prevent the upper housing from moving from the second position toward the first position after the upper housing has moved to the second position from the first position.
2. The device of claim 1, further comprising a middle housing coupled between the lower housing and the upper housing, such that the upper housing further moves with respect to the middle housing as the upper housing moves from the first position to the second position.
3. The device of claim 2, wherein the latch member is carried by the upper housing, and the latch member interferes with the middle housing so as to prevent the latch member from moving from the second position toward the first position after the upper housing has moved to the second position from the first position.
4. The device of claim 3, wherein the middle housing defines a capture slot that is configured to receive the latch member after the upper housing has moved to the second position from the first position.
5. The device of claim 4, wherein the latch member is configured to produce an audible click when the latch member is received by the capture slot.
6. The device of claim 2, wherein the middle housing includes a body that is exposed between the upper housing and the lower housing when the upper housing is in the first position, and completely covered by the upper housing when the upper housing is in the second position.
7. The device of claim 1, further comprising a needle guard that is configured to move relative to the lower housing so as to expose the needle as the lower housing is pressed against a skin surface.
8. The device of claim 7, further comprising a second latch member that releasably interferes with the upper housing when the upper housing is in the first position such that an interference between the second latch member and the upper housing prevents the upper housing from moving toward the second position, wherein the movement of the needle guard relative to the lower housing, so as to expose the needle, causes the interference to be removed, thereby allowing the upper housing to move from the first position to the second position.
9. The device of claim 8, wherein the needle guard carries a surface that contacts the second latch member and causes the second latch member to deflect away from interference with the upper housing as the needle guard moves relative to the lower housing so as to expose the needle.
10. The device of claim 9, the surface causes the second latch member to deflect inwardly toward a central axis of the device as the needle guard moves relative to the lower housing so as to expose the needle.
11. The device of claim 9, wherein the surface is ramped.
12. The device of claim 1, wherein the second position is a fully-dispensed position such that when the upper housing is in the second position the medication would have been fully delivered by the syringe.
13. The device of claim 1, wherein the latch member extends in the direction from a body of the upper housing.
14. The device of claim 1, wherein the latch member extends radially inwardly from a body of the upper housing toward a longitudinal axis of the device.
15. The device of claim 1, wherein the latch member is configured to flex radially relative to a longitudinal axis of the device.
16. The device of claim 1, wherein the latch member includes a protrusion that extends radially inwardly toward a longitudinal axis of the device.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION AND PREFERRED EMBODIMENTS
[0047] The following detailed description is to be read with reference to the drawings in which like elements in different drawings are identically numbered. The drawings, which are not necessarily to scale, depict exemplary embodiments for the purpose of explanation only and are not intended to limit the scope of the invention. The detailed description illustrates by way of example, not by way of limitation, the principles of the invention.
[0048] The present invention is a drug delivery device, and methods for its use, which device overcomes many of the limitations and drawbacks of conventional syringes and needles as well as auto-injector-type devices. To overcome the drawbacks and limitations of prior devices and to address the unfilled needs in the art, embodiments of the presently disclosed device and methods include a device that is configured such that the user does not see and cannot touch the needle, reducing needle-phobia and potential for needle contamination. This includes automatic shielding of the needle after delivery of the drug.
[0049] Embodiments of the device have an ergonomic form-factor that permits operation one handedly and conveniently allows for alternate site injections, such as the leg, arm, or abdomen. In embodiments that include a pressure-sensitive triggering, a needle guard latch inhibits movement of the needle. In this manner, the device includes a safety mechanism that will not allow the needle to be exposed if it is not pressed against the injection site.
[0050] In
[0051] To ensure that the user is aware of the status of the drug delivery and whether it is completed, this embodiment of the invention includes pawls and ratchets, such as those illustrated by the pawl 117 and ratchet 116 shown in
[0052] To provide greater feedback to the user, the disclosed system of pawls and ratchets also provides audible clicks and motion of the device during delivery to indicate that the injection is progressing. In yet another embodiment, a louder click at the end of delivery alone or in combination with a visual indicator provides 1 feedback confirming that the delivery is completed.
[0053] Moreover, the present invention has a friendly, unintimidating design and method of operation, unlike conventional needle safety devices and auto-injectors, which are reminiscent of syringes and discomforting to the user. Additionally, unlike conventional auto-inserters, the user controls insertion of the needle and injection of the drug as described hereinafter.
[0054] In
[0055] As shown, the device's outwardly visible features include upper housing 101, lower housing 102, cap 103, window 104, interlock button 105, grip ring 106, bottom edge 111 of the upper housing 101 and dose indicator 107.
[0056] A preliminary step in using the device is to remove cap 103, which is removably attached to lower housing 102, as shown in
[0057] In use, the device is grasped by placing the palm of the hand over the top of the upper housing 101, similar to how one grasps a floor-mounted, automotive gear shift. Grip ring 106 provides a visual cue to the user on how to grasp the device. In one embodiment, grip ring 106 is covered, or coated, or made of a suitable elastomeric material including, without limitation, neoprene rubber, urethane, polyurethane, silicone, natural rubber, thermoplastic elastomer (“TPE”), or combinations thereof to provide a non-slip and comfortable gripping surface.
[0058] The user presses the device, by downward pressure of the palm on grip ring 106 and interlock button 105, against the body at the desired injection location, typically the top or side of the upper leg, the abdomen, or the side or back of the upper arm. The pressure of the palm on interlock button 105 causes it to deflect downwardly, as shown in
[0059] Needle guard latch 124 includes inwardly, with respect to the longitudinal center axis A-A′ of the device, ramped surface 127 and stop 130 at its uppermost end. To unlatch the needle guard latch 124, an outwardly ramped surface 128, complementary to surface 127, that forms the distal end of interlock button extension 123, engages ramped surface 127 on the needle guard latch 124. Engagement of surfaces 127 and 128 causes the needle guard latch 124 to deflect outwardly, with respect to the center axis, removing stop 130 from blocking the upward movement of needle guard 108. The latching mechanism and needle guard 108 are preferably configured so upward movement of needle guard 108 is prevented unless the interlock button 105 is fully depressed. This protects the needle from contamination and damage due to contact with other surfaces, protects the user from accidental needle punctures, and shields the needle from view.
[0060] As the user continues to press downwardly on upper housing 101, needle guard 108 moves upwardly, exposing and allowing needle 110 to penetrate the user's skin, stopping when bottom surface 131 of the lower housing 102 is substantially flush against the skin. Once needle guard 108 passes beyond stop 130, the user may release interlock button 105, or chose not to, without affecting the remaining injection steps. When interlock button 105 is released, resilient member 121, returns interlock button 105 to the up position. Movement guide 132 acts to ensure that interlock button travels straight up and down.
[0061] The needle insertion process described herein gives control of insertion to the user. This feature allows the user to take advantage of a commonly used method often employed by insulin-dependent diabetics: if the needle is brought into contact with the skin and held there without piercing the skin, after a few seconds the user will no longer feel the presence of the needle, at which point the needle can be inserted pain free by increasing the pressure applied to the needle.
[0062] After needle 110 has been inserted into the user, the injection process typically begins, as shown in
[0063] After inserting needle 110 into the body, the user maintains pressure on the upper housing 101. As shown in
[0064] After the housing latch 122 is disengaged, a biasing element 119 that surrounds the distal end of upper housing sleeve 120, is freed from a tensioned state to apply a downward force on the upper housing 101 by exerting a downward force on upper housing sleeve 120, which is fixedly attached, at its uppermost end, to upper housing 101. Biasing element 119 also can be used to provide energy for assisting with advancement of plunger rod 115 and plunger 112 with the user providing additional required force resulting in injection of the drug or the energy supplied by the biasing element 119 may be sufficient only to advance plunger rod 15 and plunger 112. In another embodiment of the present invention, biasing element 119 provides sufficient force to inject the drug, without additional force input required by the user, thus providing an injection device in which the needle is manually inserted and the drug is automatically injected. The biasing element may be any component capable of exerting a downward force on upper housing sleeve 120 to the degree desired and may be, without limitation, a spring, a compressed gas actuator, a hydraulic drive, a wax actuator, an electrochemical actuator, a shape memory alloy, and the like and the combinations thereof. In the embodiment depicted in
[0065] Referring to
[0066] Referring to
[0067] Prior to use, the patient can view the drug through window 104 to inspect it for clarity and particulates. After use, the plunger 112 can be viewed in the window 104, indicating that the device has been used. Alternatively, the window can be designed such that the plunger rod 115 as well is visible after the injection is complete. The plunger 112 and the plunger rod 115 can be brightly colored to provide a clear indication to the patient that the device has been used.
[0068] Referring to
[0069] With the assisted delivery approach offered by the present invention, the user is actively engaged during the entire delivery process. This is distinguishable from the activation process for conventional auto-inserters, in which after pressing the button, the user passively waits, for several second, for the drug to be delivered, sometimes wondering whether the injection is in process or not.
[0070] The assisted activation approach of the present invention has the additional advantage that it reduces development time and cost associated with modifying the injection device for delivering different drugs because the user controls delivery speed by varying the force applied to the upper housing 101. If the plunger is slightly stuck, the user can apply a little more force, unlike conventional auto-injectors that must be designed for worst case force requirements, that vary depending on the drug, cartridge, plunger, needle, and friction in the mechanism.
[0071] In another embodiment, the interlock button 105 and the interlock spring 121 can be omitted from the design. In this embodiment, the upper housing 101 is free to move downwardly before hitting a stop. This movement is used to unlock the needle guard 108 using a mechanism similar the interlock mechanism described above, allowing the needle guard 108 to retract. Once the needle guard 108 is fully retracted, it may disengage another latch that allows the upper housing 101 to discontinue moving downwardly and inject the drug in a similar manner as is described above.
[0072] In
[0073] Cap 203 is removably attached to lower housing 202 and, in
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[0075] In a preferred embodiment, the external surface of grip cap 228 is coated with or formed from, or the entirety of grip cap 228 is formed from, a material capable of providing a soft, non-slip grip for the user. Suitable materials for coating or forming the grip cap include, without limitation, elastomeric materials such as neoprene rubber, urethane, polyurethane, silicone, natural rubber, TPE and the like and combinations thereof.
[0076] Upper housing 205 includes click latch 220, handle rib guide 238, and bottom edge 211. For click latch 220, as well as the other latches used in the device, preferably at least two latches are used and the same latches are symmetrically positioned with respect to each other to facilitate smooth movement and operation of the device.
[0077] Middle housing 201 is shown in
[0078] Body 207 may serve as a dose indicator because, as the device is activated, upper housing 205 descends over body 207. When the complete medication dose has been delivered, body 207 is fully obscured by upper housing 205 as shown in
[0079] With reference to
[0080] With reference to
[0081] Window 204 provides an opening in lower housing 202 for viewing of the contents of syringe 218. Window 204 is positioned such that the bottom of syringe 218 is visible to the user allowing the user to verify that plunger 212 has reached the end of its travel to the bottom of the syringe. Window 204 may be any convenient size and shape and preferably is oblong in shape with its long axis aligned with the long axis of the device and syringe so that the desired length of the syringe is exposed to view.
[0082] Guide slots 227 maintain the alignment of three different components: guides 233 of grip cap 228; grip latch release 231; and needle guard extensions 241. Guide slots 227 ensure smooth activation of the device by maintaining alignment and vertical travel of upper housing 202 and needle guard 208 and reliable latching and unlatching of grip latch 231. Housing latch 229 extending outwardly secures middle housing 201 to lower housing 202 by engaging a recess, that is not shown, in inner surface 243 of middle housing 201. In non-reusable embodiments of the device, the shape of latch 229 and the recess are such that the middle and lower housing cannot be separated. For reusable embodiments, the recess and latch are configured to enable the middle and lower housing to be pulled apart.
[0083] Referring to
[0084] Needle guard slot 209 permits window 204 to be used to view the syringe and plunger as the plunger acts on the syringe at the end of the plunger's downward stroke. Additionally, needle guard return 214 lies within and at the bottom of a space formed by grip latch release 231 and needle guard extension 241.
[0085] An inventive aspect of the device 200 is the way in which syringe 218 is suspended inside the device. With reference to
[0086] With reference to
[0087] With reference to
[0088] When upper housing 205 moves downwardly, the medication inside of syringe 218 is delivered through needle 210 as plunger rod 215 and damper 221 of grip cap 228 push downwardly on syringe plunger 212. At the end of the medication delivery, body 207 is substantially completely covered by upper housing 205 and bottom edge 211 of upper housing 205 has mated with the complementarily shaped travel ridge 216 of lower housing 202. Also, plunger rod 215, damper 221, and plunger 212 are clearly visible within window 204. All of these features provide the user with visual confirmation that the drug has been delivered and the hard stop of bottom edge 211 against travel ridge 216 provides a tactile confirmation to the user.
[0089] Additionally, a click mechanism is activated at the end of drug delivery to provide audible feedback. With reference to
[0090] As the user removes device 200 from the skin, needle guard return 214, shown in
[0091] Prior to use, extension guides 233 of grip cap 228 retain needle guard latch 237 in an outwardly deflected position allowing needle guard 208 to retract for insertion of needle 210. Two needle guard retainers 232 and needle guard latches 237 preferably are used and are located 180 degrees apart around the central axis of the device 200. If the device 200 is removed from the skin before delivery of medication is completed, needle guard 208 will extend to cover needle 210 and locks to prevent reuse of the device. In an alternative, reusable embodiment, needle guard 208 extends, but does not lock in place in the event device 200 is removed from the skin before delivery of medication is completed.
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[0093] In
[0094] In
[0095] Additional embodiments of the present invention can be envisioned, but are not included in the attached figures. This includes a multiple-dose design in which one or both of the upper and middle housings rise to a partial height and deliver a partial syringe when depressed by the user.