Drug delivery device, method of manufacture, and method of use
US-2019022306-A1 · Jan 24, 2019 · US
US2017290975A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2017290975-A1 |
| Application number | US-201715436529-A |
| Country | US |
| Kind code | A1 |
| Filing date | Feb 17, 2017 |
| Priority date | Apr 6, 2016 |
| Publication date | Oct 12, 2017 |
| Grant date | — |
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Official abstract text for this publication.
An automatic injection device has an insertion needle configured to be inserted into a patient and a drug container which contains a pharmaceutical product and includes a plunger. The automatic injection device also has a fluid path which fluidly connects the drug container to the insertion needle, and a drive system configured to cause linear movement of the plunger to force the pharmaceutical product into the fluid path. The drive system has a movable element. The movable element has a shape memory alloy and is configured to change shape to move the plunger.
Opening claim text (preview).
What is claimed is: 1 . An automatic injection device, comprising: an insertion needle configured to be inserted into a patient; a drug container which contains a pharmaceutical product, the drug container including a plunger; a fluid path which fluidly connects the drug container to the insertion needle; and a drive system configured to cause linear movement of the plunger to force the pharmaceutical product into the fluid path, the drive system comprising a movable element, wherein the movable element comprises a shape memory alloy and is configured to change shape to move the plunger. 2 . The automatic injection device of claim 1 , wherein the movable element is a coil spring which is made of the shape memory alloy. 3 . The automatic injection device of claim 2 , wherein the coil spring changes shape by extending or contracting in a direction of movement of the plunger. 4 . The automatic injection device of claim 3 , wherein the coil spring is positioned in the drug container and includes a first end which is connected to the plunger. 5 . The automatic injection device of claim 3 , wherein the coil spring is positioned outside of the drug container and is configured to move the plunger indirectly. 6 . The automatic injection device of claim 5 , wherein the movable element further comprises an outer magnet outside of the drug container and an inner magnet inside of the drug container. 7 . The automatic injection device of claim 6 , wherein the spring is configured to extend or contract to move the outer magnet along the drug container to thereby move the plunger in the drug container via the inner magnet. 8 . The automatic injection device of claim 7 , wherein the outer magnet is diametrically magnetized in a first direction and the inner magnet is diametrically magnetized in an opposite second direction such that the inner magnet follows linear movement of the outer magnet. 9 . The automatic injection device of claim 1 , further including a driving element positioned outside of the drug container and configured to apply an input parameter to the movable element to change the shape of the movable element. 10 . The automatic injection device of claim 9 , wherein the input parameter is heating or cooling applied by the driving element to increase or decrease the temperature of the shape memory alloy. 11 . The automatic injection device of claim 9 , wherein the input parameter is current applied by the driving element to the shape memory alloy. 12 . A product for use in an automatic injection device, the product comprising: a drug container configured to contain a pharmaceutical product and including a first longitudinal end and a second longitudinal end; a plunger in the drug container configured to move in a linear direction from the first longitudinal end toward the second longitudinal end; and a movable element formed of a shape memory alloy in the drug container configured to move the plunger in the linear direction based on the shape memory properties of the movable element. 13 . The product of claim 12 , wherein the movable element is a coil spring made of the shape memory alloy. 14 . The product of claim 12 , wherein the shape memory properties include the coil spring returning to an extended shape after being compressed. 15 . A cartridge for an automatic injection device, comprising: a space for receiving a drug container which contains a pharmaceutical product; and a drive system comprising a movable element, the movable element comprising a coil spring made from a shape memory alloy and being configured to linearly extend or contract based on the shape memory properties of the movable element in the space for receiving the drug container. 16 . The cartridge of claim 15 , wherein the movable element further includes an outer magnet which is configured to be moved linearly in the space for receiving the drug container by the coil spring. 17 . The cartridge of claim 16 , wherein the outer magnet is ring-shaped and includes a through-hole for receiving the drug container. 18 . The cartridge of claim 17 , wherein the movable element further includes an outer collar which includes a through-hole which receives the outer magnet. 19 . The cartridge of claim 17 , wherein the movable element further includes an inner magnet configured to be inserted into the drug container. 20 . The cartridge of claim 15 , further comprising a drive system configured to apply an input parameter to the coil spring.
Automatic syringes, e.g. with automatically actuated piston rod, with automatic needle injection, filling automatically (A61M5/142 {, A61M5/46} take precedence; {hypodermic projectiles F42B12/54}) · CPC title
Springs · CPC title
Shape memory materials · CPC title
of the skin patch type · CPC title
spring-actuated, e.g. by a clockwork · CPC title
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