MEDICAL INJECTION SYSTEM AND METHOD
20220355033 · 2022-11-10
Assignee
Inventors
- Philippe Margairaz (La Chaux-de-Fonds, CH)
- Carlos Da Silva (Fleurier, CH)
- Luc Maffli (Fribourg, CH)
- Alain Jaccard (Ste-Croix, CH)
Cpc classification
A61M5/283
HUMAN NECESSITIES
A61M2005/3235
HUMAN NECESSITIES
A61M2005/208
HUMAN NECESSITIES
A61M5/5086
HUMAN NECESSITIES
A61M5/2033
HUMAN NECESSITIES
A61M2005/2474
HUMAN NECESSITIES
A61M2005/314
HUMAN NECESSITIES
A61M5/3234
HUMAN NECESSITIES
A61M2005/2073
HUMAN NECESSITIES
International classification
A61M5/20
HUMAN NECESSITIES
Abstract
A fluid dispensing device adapted for intramuscular injection into a living organism is provided. The device has an energy storage arrangement providing energy in at least two bursts. The first burst is provided from a first energy source and is that which is necessary to pierce the skin of the living organism and insert the needle to the injection site. The second burst is provided by a second energy source and is that which is necessary to pump the fluid out of the reservoir and into the living organism. Optionally, the remaining energy is used to retract the needle out of the living organism. Together with a prescribed operating sequence of the device, use of the two sources of energy contained in the device is optimized to provide the at least two bursts of energy.
Claims
1. A fluid dispensing device adapted for intramuscular and/or subcutaneous injection into a living organism, the device having an energy storage arrangement enclosed in a housing, the energy storage arrangement providing energy in at least two bursts, the first burst being that which is necessary to pierce the skin of the living organism and insert at least one needle to the injection site, the second burst being that which is necessary to press the fluid out of the at least one reservoir and into the living organism, and, optionally, to retract the at least one needle out of the living organism.
2. The device of claim 1, wherein the first burst is provided by a first energy source and the second burst is provided by a second energy source.
3. The device of any of the above claims, wherein the energy storage devices are springs.
4. The device of any of the above claims, wherein the at least one needle has first and second ends which are adapted to, pierce respective surfaces while translating together in a direction such that when used, the direction of movement of the first end of the at least one needle is parallel to a patient's skin and the direction of movement of the second end of the at least one needle is substantially non orthogonal to the patient's skin.
5. The device of any of the above claims, wherein the at least one needle passes through a mandrel which diverts the direction of translation of the at least one needle from one orientation, typically parallel, with respect to the patient's skin to a non-orthogonal angle with respect to the patient's skin.
6. The device of the above claim wherein the mandrel is adapted to deform the needle as it passes therethrough.
7. The device of claim 6, wherein the mandel is adapted to deform the needle beyond the needle's elastic limit thereby preventing re-use of the device.
8. The device of claim 1, wherein at least one thin, impermeable membrane is adhesively attached to the housing so as to cover and seal an at least one opening in the device through which the at least one needle pierces and extends upon actuation for injection.
9. A method of operation of the device includes the following steps: a) in case the device is attached to a second device as a pair, detaching the devices (1) to enable use one device at a time; b) removing a cover unless a thin membrane, which the at least one needle can pierce, is used to seal the device, in which case no cover is required; c) applying the device body with pressure against the skin of the living organism; d) optionally increasing the pressure applied against the skin of the living organism until it is sufficient so that the optional detector releases the push button (14) allowing manual triggering in the next step or alternatively, the detector automatically actuating the trigger mechanism, in which latter case, skip to step f; e) pushing the push button, thereby actuating the trigger mechanism (200) which in turn releases the at least one insertion subassembly; f) pushing an at least one needle subassembly using the insertion subassembly until the needle injecting end is inserted into the living organism at the injection depth, and the needle extraction end has pierced an at least one septum of the at least one reservoir; h) upon reaching this position, locking the insertion subassembly to the main structure (602); i) locking the at least one needle subassembly, which is still attached to the at least one insertion subassembly, in place, while, at the same time, releasing the dispensing assembly, pushing the fluid reservoir subassembly against the needle subassembly; j) displacing the at least one septum towards the bottom of the at least one fluid reservoir, acting as a piston and dispensing the fluid through the needle extraction end through the at least one needle, through the at least one needle injection end into the living organism; and k) removing the device from the living organism.
10. The method of claim 9, wherein just prior to removal in step k, when the dispensing subassembly has emptied the at least one reservoir, the method includes the additional step of releasing the at least one needle subassembly from the at least one insertion subassembly, which is then pushed back to its start position, thereby retracting the at least one needle until the needle injection end is fully retracted within the main structure thereby preventing harm that might be caused by an exposed needle.
11. The method of operation of claim 1, wherein the locking in step h is accomplished using a latch system.
12. The device of any of the above claims, wherein at least a portion of the interior channel of the needle conducting the fluid has a diameter different from that of another portion of the interior channel of the needle.
13. The device of any of the above claims, wherein at least two needles within one housing are used simultaneously to conduct the fluid into the living organism.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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[0042] Those skilled in the art will appreciate that elements in the Figures are illustrated for simplicity and clarity and have not necessarily been drawn to scale. For example, dimensions may be exaggerated relative to other elements to help improve understanding of the invention and its embodiments. Furthermore, when the terms ‘first’, ‘second’, and the like are used herein, their use is intended for distinguishing between similar elements and not necessarily for describing a sequential or chronological order. Moreover, relative terms like ‘front’. ‘back’, ‘top’ and ‘bottom’, and the like in the Description and/or in the claims are not necessarily used for describing exclusive relative position. Those skilled in the art will therefore understand that such terms may be interchangeable with other terms, and that the embodiments described herein are capable of operating in other orientations than those explicitly illustrated or otherwise described.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
[0043] The following description is not intended to limit the scope of the invention in any way as they are exemplary in nature, serving to describe the best mode of the invention known the inventors as of the filing date hereof. Consequently, changes may be made in the arrangement and/or function of any of the elements described in the exemplary embodiments disclosed herein without departing from the spirit and scope of the invention.
[0044] Referring now to
[0045] Referring now to
[0046] Referring now to
[0047] Referring now to
[0048] Referring now to
[0049] Referring now to
[0050] Referring now to
[0051] The sequence of operation of the device is as follows: [0052] 1. In case the device 1 is attached to a second device 1 as a pair (see
[0062] The combination of the herein described device and operating sequence brings the key advantage of optimizing the use of 2 sources of energy contained in the device (2 springs) using their maximum energy (when the springs are compressed at their maximum) to provide 2 bursts of energy: the first burst that is necessary to pierce the skin of the living organism and insert the needle to the injection site, the second burst to pump the fluid out of the reservoir and into the living organism. Retraction of the needle is provided by the remainder of energy of the second energy source.
[0063] The following
[0064] Referring now to
[0065] Referring now to
[0066] Referring now to
[0067] Referring now to
[0068] Referring now to
[0069] Note that dimension x (shown in
[0070] Referring now to
[0071] Referring now to
[0072] Note that the needle 452, optionally passes through a mandrel 702 that deforms the needle so as to prevent it from being reused. In one embodiment, the needle is deformed so as to be bowed, thus ensuring that buckling of the needle because it is no longer straight prevents it from passing through the mandrel once again.
[0073] Referring now to
[0074] By placing and affixing or integrating into one housing one or more devices shown in
[0078] Referring now to
[0079] Note that all mobile elements of the mechanism 100 subject to relative sliding or frictional forces may have a coating applied to their surfaces where appropriate to ensure low friction.
[0080] The fluid for injection is typically a fluid selected from a group of fluids consisting of peptides, proteins, hormones including insulin, calcitonin, calcitonin gene regulating protein, atrial natriuretic protein, colony stimulating factor, betaseron, erythropoietin (EPO), interferons such as .alpha., .beta. or .gamma. interferon, somatropin, somatotropin, somastostatin, insulin-like growth factor (somatomedins), luteinizing hormone releasing hormone (LHRH), tissue plasminogen activator (TPA), growth hormone releasing hormone (GHRH), oxytocin, estradiol, growth hormones, leuprolide acetate, factor VIII, interleukins such as interleukin-2, and analogues or antagonists thereof, such as IL-Ira; analgesics such as fentanyl, sufentanil, butorphanol, buprenorphine, levorphanol, morphine, hydromorphone, hydrocodone, oxymorphone, methadone, lidocaine, bupivacaine, diclofenac, naproxen, paverin, and analogues thereof; anti-migraine agents such as sumatriptan, ergot alkaloids, and analogues thereof; anti-coagulant agents such as heparin, hirudin, and analogues thereof; anti-emetic agents such as scopolamine, ondansetron, domperidone, metoclopramide, and analogues thereof; cardiovascular agents, anti-hypertensive agents and vasodilators such as diltiazem, clonidine, nifedipine, verapamil, isosorbide-5-monotritate, organic nitrates, agents used in treatment of heart disorders, and analogues thereof; sedatives such as benzodiazepines, phenothiazines, and analogues thereof; chelating agents such as defroxanune, and analogues thereof; anti-diuretic agents such as desmopressin, vasopressin, and analogues thereof; anti-anginal agents such as fluorouracil, bleomycin, and analogues thereof; anti-neoplastics such as fluorouracil, bleomycin, and analogues thereof; prostaglandins and analogues thereof, and chemotherapy agents such as vincristine, and analogues thereof, treatments for attention deficit disorder, methylphenidate, fluvoxamine, bisoprolol, tacrolimus, sacrolimus and cyclosporin, vitamins suspended in a liquid carrier, antivenoms, syrums, medications, antibodies, Actemra (tocilizumab), Adcretris (brentuximab vedotin), Arzerra (ofatumumab), Avastin (bevacizumab), Benlysta (belimumab), Cimzia (certolizumab pegol), Erbitux (cetuximab), Herceptin (trastuzumab), Humira (adalimumab), Ilaris (canakinumab), Lucentis (ranibizumab), Mylotarg (gemtuzumab ozogamicin), Perjeta (pertuzumab), Prolia (denosumab), Remicade (infliximab), Simponi (golimumab), Soliris (eculizumab), Stelara (ustekinumab), Tysabri (natalizumab), Vectibix (panitumumab). Xgeva (denosumab), Xolair (omalizumab), Yervoy (ipilimumab), and Zevalin (ibritumomab tiuxetan).
[0081] In an advantage, the invention provides an easy to use, user friendly device that allows any person, even the patients themselves, to perform an injection of a fluid, of particular interest, a COVID-19 vaccine, without the intervention of medical personnel, thereby reducing the burden on world healthcare systems.
[0082] It is another object of the invention to provide a user friendly device that allows a patient to inject themselves without requiring him to make an aggressive gesture like stabbing himself.
[0083] In an advantage, the invention provides a device that can step up to the challenge of new molecular therapeutic innovations such as high viscosity fluids whose characteristics otherwise limit administration options.
[0084] In an advantage, the invention provides a device that can simultaneously inject several smaller doses of fluid into a living organism instead of one larger dose, generating less local tissue damage and therefore reducing the pain of the injection for the patient.
[0085] In an advantage, the invention provides a device with and extended product life cycle.
[0086] In an advantage, the invention provides a device that retracts the needle to prevent inadvertent harm that might be caused by an exposed needle.
[0087] In an advantage, the invention provides the option of injecting at an angle as the needle passes through a mandrel.
[0088] In an advantage, the invention helps prevent unsanitary or perhaps inadvertent reuse of the device, thus providing a safer means of injecting a fluid.
[0089] The invention may be summarized as follows:
1. A fluid dispensing device 1 adapted for intramuscular and/or subcutaneous injection into a living organism, the device having an energy storage arrangement 352, 552 enclosed in a housing 2, the energy storage arrangement providing energy in at least two bursts, the first burst being that which is necessary to pierce the skin of the living organism and insert at least one needle 454 to the injection site, the second burst being that which is necessary to press the fluid out of the at least one reservoir 602 and into the living organism, and, optionally, to retract the at least one needle out of the living organism.
2. The device of feature set 1, wherein the first burst is provided by a first energy source 352 and the second burst is provided by a second energy source 552.
3. The device of any of the above feature sets, wherein the energy storage devices 352, 552 are springs.
4. The device of any of the above feature sets, wherein the at least one needle 452 has first and second ends which are adapted to pierce respective surfaces while translating together in a direction such that when used, the direction of movement of the first end of the at least one needle is parallel to a patient's skin and the direction of movement of the second end of the at least one needle is substantially non orthogonal to the patient's skin.
5. The device of any of the above feature sets, wherein the at least one needle passes through a mandrel which diverts the direction of translation of the at least one needle from one orientation, typically parallel, with respect to the patient's skin to a non-orthogonal angle with respect to the patient's skin.
6. The device of the above feature set wherein the mandrel 702 is adapted to deform the needle 452 as it passes therethrough.
7. The device of the above feature set, wherein the mandel 702 is adapted to deform the needle beyond the needle's elastic limit thereby preventing re-use of the device.
8. The device of any of the above feature sets, wherein at least one thin, impermeable membrane 704 is adhesively attached to the housing 2 so as to cover and seal an at least one opening 706 in the device through which the at least one needle pierces and extends upon actuation for injection.
9. A method of operation of the device 1 includes the following steps: [0090] a. in case the device 1 is attached to a second device 1 as a pair, detaching the devices 1 to enable use one device at a time; [0091] b. removing a cover 4 unless a thin membrane 704, which the at least one needle 454 can pierce, is used to seal the device, in which case no cover is required; [0092] c. applying the device body 2 with pressure against the skin of the living organism; [0093] d. optionally increasing the pressure applied against the skin of the living organism until it is sufficient so that the optional detector 12 releases the push button 14 allowing manual triggering in the next step or alternatively, the detector 12 automatically actuating the trigger mechanism 200, in which latter case, skip to step f; [0094] e. pushing the push button 14, thereby actuating the trigger mechanism 200 which in turn releases the at least one insertion subassembly 300; [0095] f. pushing an at least one needle subassembly 400 using the insertion subassembly 300 until the needle injecting end 454 is inserted into the living organism at the injection depth, and the needle extraction end 456 has pierced an at least one septum 604 of the at least one reservoir 602; [0096] h. upon reaching this position, locking the insertion subassembly 300 to the main structure 102; [0097] i. locking the at least one needle subassembly 400, which is still attached to the at least one insertion subassembly 300, in place, while, at the same time, releasing the dispensing assembly 500, pushing the fluid reservoir subassembly 600 against the needle subassembly 400 [0098] j. displacing the at least one septum 604 towards the bottom of the at least one fluid reservoir 602, acting as a piston and dispensing the fluid 606 through the needle extraction end 456, through the at least one needle 452, through the at least one needle injection end 454 into the living organism; and [0099] k. removing the device from the living organism.
10. The method of feature set 9, wherein just prior to removal in step k, when the dispensing subassembly 500 has emptied the at least one reservoir, the method includes the additional step of releasing the at least one needle subassembly 400 from the at least one insertion subassembly 300, which is then pushed back to its start position, thereby retracting the at least one needle 452 until the needle injection end 454 is fully retracted within the main structure 102 thereby preventing harm that might be caused by an exposed needle.
11. The method of operation of feature set 1, wherein the locking in step h is accomplished using a latch system (334).
12. The device of any of the above feature sets, wherein at least a portion (754) of the interior channel of the needle (452) conducting the fluid has a diameter different from that of another portion (756) of the interior channel of the needle.
13. The device of any of the above feature sets, wherein at least two needles within one housing are used simultaneously to conduct the fluid into the living organism.
[0100] Further, the invention should be considered as comprising all possible combinations of every feature described in the instant specification, appended feature sets, and/or drawing figures which may be considered new, inventive and industrially applicable.
[0101] It should be appreciated that the particular implementations shown and herein described are representative of the invention and its best mode and are not intended to limit the scope of the present invention in any way.
[0102] As will be appreciated by skilled artisans, the present invention may be embodied as a system, a device, or a method.
[0103] Moreover, the system contemplates the use, sale and/or distribution of any goods, services or information having similar functionality described herein.
[0104] The specification and figures should be considered in an illustrative manner, rather than a restrictive one and all modifications described herein are intended to be included within the scope of the invention claimed. Accordingly, the scope of the invention should be determined by the appended claims (as they currently exist or as later amended or added, and their legal equivalents) rather than by merely the examples described above. Steps recited in any method or process claims, unless otherwise expressly stated, may be executed in any order and are not limited to the specific order presented in any claim. Further, the elements and/or components recited in apparatus claims may be assembled or otherwise functionally configured in a variety of permutations to produce substantially the same result as the present invention. Consequently, the invention should not be interpreted as being limited to the specific configuration recited in the claims.
[0105] Benefits, other advantages and solutions mentioned herein are not to be construed as critical, required or essential features or components of any or all the claims.
[0106] As used herein, the terms “comprises”, “comprising”, or variations thereof, are intended to refer to a non-exclusive listing of elements, such that any apparatus, process, method, article, or composition of the invention that comprises a list of elements, that does not include only those elements recited. Unless otherwise explicitly stated, the use of the term “consisting” or “consisting of” or “consisting essentially of” is not intended to limit the scope of the invention to the enumerated elements named thereafter, unless otherwise indicated. Other combinations and/or modifications of the above-described elements, materials or structures used in the practice of the present invention may be varied or adapted by the skilled artisan to other designs without departing from the general principles of the invention.
[0107] The patents and articles mentioned above are hereby incorporated by reference herein, unless otherwise noted, to the extent that the same are not inconsistent with this disclosure.
[0108] Other characteristics and modes of execution of the invention are described in the appended claims.
[0109] Further, the invention should be considered as comprising all possible combinations of every feature described in the instant specification, appended claims, and/or drawing figures which may be considered new, inventive and industrially applicable.
[0110] Additional features and functionality of the invention are described in the claims appended hereto. Such claims are hereby incorporated in their entirety by reference thereto in this specification and should be considered as part of the application as filed.
[0111] Multiple variations and modifications are possible in the embodiments of the invention described here. Although certain illustrative embodiments of the invention have been shown and described here, a wide range of changes, modifications, and substitutions is contemplated in the foregoing disclosure. While the above description contains many specific details, these should not be construed as limitations on the scope of the invention, but rather exemplify one or another preferred embodiment thereof. In some instances, some features of the present invention may be employed without a corresponding use of the other features. Accordingly, it is appropriate that the foregoing description be construed broadly and understood as being illustrative only, the spirit and scope of the invention being limited only by the claims which ultimately issue in this application.
[0112] Addendum
[0113] Following elements are disclosed in
[0120] Following elements are disclosed in