This invention relates to pen needle assemblies, more particularly, to pen needle assemblies for automatic injections.
Pen injectors are known in the prior art and typically include a dose-adjustment mechanism for setting a dose of a drug, for example insulin, and a pen needle for insertion into a patient to allow proper drug administration. Such pens may be disposable, containing a single dose of a drug, or reusable, containing a single dose or more of a drug. The pen needle should be single-use and replaced with each administered dose. The pen needle includes a distal end formed for insertion into a patient and a proximal end for insertion into a drug vial or cartridge located inside the pen injector body.
Many people have “needle phobia” and are apprehensive of seeing a needle during a medical injection. As a result, people with “needle phobia” may not regularly administer drugs as prescribed or may improperly conduct an injection due to their apprehension. In addition, current pen needles may require a patient to insert a needle into their skin with a needle exposed. Current pen needle assemblies may be prone to improper insertion, e.g., insufficient insertion, into a person's skin because the needle may be inserted at an improper angle.
A pen needle assembly is provided herein having a hub with a distal end and a proximal end; a needle fixed to the hub and having a distal end, for insertion into a patient, and a proximal end; an inner shield disposed proximally of the hub; a spring disposed between the inner shield and the hub and configured to bias the hub distally; an outer shield with a distal end, a proximal end, and a tubular body at least partially encircling a portion of the needle with at least portions located radially outward further from the needle than the inner shield such that the outer shield at least partially encases the hub, the needle, the inner shield, and the spring; and a releasable retaining assembly configured to releasably retain the hub in a first locked state against the biasing of the spring. The distal end of the needle is covered by the outer shield with the hub being in a first locked state. Upon release of the releasable retaining assembly, the hub moves under force of the spring to an unlocked second state. In the unlocked second state, the distal end of the needle extends distally from the distal end of the outer shield. Advantageously, with the arrangement of the subject invention, an injection may be conducted properly by a person apprehensive of seeing a needle during a medical injection and may also help a person insert the needle at the proper angle.
These and other features of the invention will be better understood through a study of the following detailed description and accompanying drawings.
With reference to the Figures, a pen needle assembly 10 is provided herein. The assembly 10 generally includes a hub 12, a needle 14, a spring 16, an inner shield 18, and an outer shield 20, as shown in
The needle 14 may be of any known type. Preferably, the needle 14 may have a length of less than 8 mm. The needle 14 includes a proximal end 15 and a distal end 17, formed for insertion into a patient. A lumen is defined between the proximal and distal ends 15, 17 for conveying medicament through the needle 14. The needle 14 is mounted to the hub 12 using any known technique.
The hub 12 includes a tubular body 13, which extends between a proximal end 19 and a distal end 21, and a releasable retaining assembly 28 for cooperative engagement with the inner shield 18 and the outer shield 20, such that a predetermined extent of proximal movement of the outer shield 20 relative to the inner shield 18, releases the hub 12 and the spring 16. The spring 16 may be located between the proximal end 19 of the hub 12 and the inner shield 18.
The inner shield 18 includes a tubular body 30 that at least partially encircles the needle 14 and fits inside the outer shield 20. The inner shield 18 may include a mounting assembly 32, such as threads, configured to cooperatively engage an associated pen injector body 42, such as described below.
The outer shield 20 includes a tubular body 34, which extends between a proximal end 26 and a distal end 27, and a rib 36 on the distal end 27 of the outer shield 20. The rib 36 provides a stable surface for contact with a person's skin at the time of injection and assists in providing proper insertion of the needle 14.
The inner shield 18 and the outer shield 20 may be provided with a cooperating shoulder 38 and tab 40 for limiting separation of the inner shield 18 from the outer shield 20. The tab 40 is formed to interferingly engage against the shoulder 38 such that relative movement between the inner shield 18 and the outer shield 20 is limited. In particular, this arrangement provides resistance against excessive proximal movement of the inner shield 18 under force of the spring 16. The shoulder 38 may be located on the inner shield 18 and the tab 40 may be located on the outer shield 20. Alternatively, the shoulder 38 may be located on the outer shield 20 and the tab 40 may be located on the inner shield 18.
With reference to
With reference to
With reference to
After use, the pen needle assembly 10 remains in the state shown in
This application is a National Stage Application under 35 U.S.C. §371 of PCT Application No. PCT/US2009/030800, filed Jan. 13, 2009, which claims priority to U.S. Provisional Patent Application No. 61/011,171, filed Jan. 15, 2008.
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/US2009/030800 | 1/13/2009 | WO | 00 | 9/28/2010 |
Publishing Document | Publishing Date | Country | Kind |
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WO2009/091709 | 7/23/2009 | WO | A |
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Number | Date | Country | |
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20110022001 A1 | Jan 2011 | US |
Number | Date | Country | |
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61011171 | Jan 2008 | US |