Dose Feedback Mechanisms and Assemblies for User Feedback
20220134027 · 2022-05-05
Inventors
- Xian-Ming Zeng (Coral Springs, FL, US)
- Imran Shaikh (Coral Springs, FL, US)
- Abhishek Gupta (Weston, FL, US)
Cpc classification
A61M15/009
HUMAN NECESSITIES
International classification
Abstract
The present disclosure relates to a medicament dispenser for dispensing medicament. The dispenser may be for use in dispensing medicament in a liquid, pressurized aerosol, pre-filled container and in any medicament dispenser where dose related feedback is required. Mechanisms and assemblies provide dose related feedback to the user of the medicament dispenser and the physical interfaces and attributes associated with providing such feedback. The present disclosure also relates to dose feedback assemblies that can be adapted to various form factors, various individual components and elements of the container-closure system, and/or various target user interfaces. The dispenser is suited for dispensing propellant based pressurized inhalation aerosols for oral and/or nasal delivery; aqueous or non-aqueous systems for oral and/or nasal delivery; liquid dispensers for nasal delivery, multi-dose pre-filled syringes or pens; or dispensers for intra-muscular or subcutaneous delivery and powders for pulmonary administration and tablets, capsules, pellets or agglomerates for oral administration. The dispenser may dispense a propellant based pressurized inhalation aerosol comprising one or more active pharmaceutical ingredient(s) (API) and optionally, one or more propellant, cosolvent, solubilizer, emulsifier, surfactant, salt, acid and micronized or non-micronized pharmaceutically acceptable carrier(s) and/or excipient(s), wherein the dispensing process includes a press and breathe type or breath actuated or other multi-step operation medicament dispensers.
Claims
1. A dose indicator assembly comprising: a disc mount; one or more linear racks having teeth; a central pinion configured to convert rectilinear motion of the one or more linear racks to rotary motion; and a dose indicating means comprising plurality of dose indicator wheels arranged in a concentric and co-planar configuration.
2. The dose indicator assembly according to claim 1, wherein the dose indicating means provides a count ranging from numbers ‘0’ to ‘999’.
3. The dose indicator assembly according to claim 2 wherein the numbers ‘0’ to ‘999’ are displayed in a vertical, horizontal orientation.
4. The dose indicator assembly according to claim 1, wherein one or more dose indicator wheels comprises a units wheel, a tens wheel and a hundreds wheel.
5. The dose indicator assembly according to claim 1, wherein the dose indicator assembly further comprises: a units wheel seat, a pinion seat, a tens wheel drive gear stud, a hundreds wheel drive gear stud and a locking pin mount.
6. The dose indicator assembly according to claim 4, wherein the units wheel is rotated by the central pinion.
7. The dose indicator assembly according to claim 6, wherein the tens wheel is rotated by the units wheel via the tens wheel drive gear.
8. The dose indicator assembly according to claim 7, wherein the tens wheel rotates the hundreds wheel via the hundreds wheel drive gear.
9. The dose indicator assembly according to claim 8, wherein the unit wheel rotates each time the central pinion rotates and the tens wheel rotate once on every tenth rotation of units wheel.
10. The dose indicator assembly according to claim 9, wherein the hundreds wheel rotates once on every tenth rotation of the tens wheel.
11. The dose indicator assembly according to claim 1, further comprises operation lock-out mechanism.
Description
BRIEF DESCRIPTION OF DRAWINGS
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DETAILED DESCRIPTION
[0082] The present disclosure provides for mechanisms and assemblies for providing dose related feedback to the user of the medicament dispenser and the physical interfaces and attributes associated with providing such feedback.
[0083] A medicament dispensers, as disclosed herein, have a variety of structural configurations and can be used for dispensing liquids, powders, tablets, capsules, pellets or pucks, or mixtures thereof for nasal, pulmonary or oral administration. In particular, the medicament dispensers can be used to dispense a liquid comprising one or more active pharmaceutical ingredient(s) (API) and optionally, one or more pharmaceutically acceptable carrier(s) and/or excipient(s). The dispenser may dispense a propellant based pressurized inhalation aerosol comprising one or more active pharmaceutical ingredient(s) (API) and optionally, one or more propellant, cosolvent, solubilizer, emulsifier, surfactant, salt, acid, and micronized or non-micronized pharmaceutically acceptable carrier(s) and/or excipient(s), wherein the dispensing process includes a press-and-breathe type, breath-actuated, or other multi-step operation medicament dispensers. Further, the present disclosure relates to dispensing powdered medicament wherein the dispensing process includes a press-and-breathe type or breath-actuated or other multi-step operation medicament dispensers.
[0084] One or more active pharmaceutical ingredient(s) (APIs) that can be used can be selected from analgesics, e.g., codeine, dihydromorphine, ergotamine, fentanyl or morphine; anginal preparations, e.g., diltiazem; antiallergics, e.g., cromoglycate (e.g. as the sodium salt), ketotifen or nedocromil (e.g. as the sodium salt); antiinfectives e.g., cephalosporins, penicillins, streptomycin, sulphonamides, tetracyclines and pentamidine; antihistamines, e.g., methapyrilene; anti-inflammatories, e.g., beclomethasone (e.g. as the dipropionate ester), fluticasone (e.g. as the propionate ester), flunisolide, budesonide, rofleponide, mometasone e.g. as the furoate ester), ciclesonide, triamcinolone (e.g. as the acetonide) or 6a,9a-difluoro-1 ip-hydroxy-16a-methyl-3-oxo-17a.-propionyloxy-androsta-1,4-diene-17P-carbothioic acid S-(2-oxo-tetrahydro-furan-3-yl) ester; antitussives, e.g., noscapine; bronchodilators, e.g., albuterol (e.g. as free base or sulphate), salmeterol (e.g. as xinafoate), ephedrine, adrenaline, fenoterol (e.g. as hydrobromide), formoterol (e.g. as fumarate), isoprenaline, metaproterenol, phenylephrine, phenylpropanolamine, pirbuterol (e.g. as acetate), reproterol (e.g. as hydrochloride), rimiterol, terbutaline (e.g. as sulphate), isoetharine, tulobuterol or 4-hydroxy-7-[2-[[2-[[3-(2-phenylethoxy)propyl] sulfonyl]ethyl]amino]ethyl-2(3H)-benzothiazolone; adenosine 2a agonists, e.g. 2R,3R,4S,5R)-2-[6-Amino-2-(1 S-hydroxymethyl-2-phenyl-ethylamino)-purin-9-yl]-5-(2-ethyl-2H-tetrazol-5-yl)-tetrahydro-furan-3,4-diol (e.g. as maleate); a4 integrin inhibitors e.g. (2S)-3-[4-({[4-(aminocarbonyl)-1-piperidinyl] carbonyl}oxy)phenyl]-2-[((2S-)-4-methyl-2-{[2-(2 methylphenoxy)acetyl]amino}pentanoyl)amino]propanoic acid (e.g. as free acid or potassium salt), diuretics, e.g., amiloride; anticholinergics, e.g., ipratropium (e.g. as bromide), tiotropium, atropine or oxitropium; hormones, e.g., cortisone, hydrocortisone or prednisolone; xanthines, e.g., aminophylline, choline theophyllinate, lysine theophyllinate or theophylline; therapeutic proteins and peptides, e.g., insulin or glucagon; vaccines, diagnostics, and gene therapies. It will be clear to a person skilled in the art that, where appropriate, the medicaments may be used in the form of salts, (e.g., as alkali metal or amine salts or as acid addition salts) or as esters (e.g., lower alkyl esters) or as solvates (e.g., hydrates) to optimize the activity and/or stability of the medicament
[0085] The term “dose feedback mechanism” includes the mechanism by which the dose related (e.g., number remaining, number consumed, and/or life-cycle of the product) visual feedback (e.g., read-out) is provided to the user.
[0086] In some embodiments, the dose feedback mechanism includes the actuator, the dose indicator assembly, the balancer, and the window.
[0087] An actuator houses a dose indicator assembly, the canister, bottle or medicament carrier (such as reel of blisters) containing the formulation, the balancer and the window. The actuator may contains of one or more linear rack guides that allow for the linear rack of the dose indicator assembly to move in a rectilinear motion during the operation/actuation of the medicament dispenser. The actuator may have pins to locate the one or more wheels of the dose counter assembly and the balancer.
[0088] The rectilinear motion means a straight-line motion. A body is said to experience rectilinear motion if any two particles of the body travel the same distance along two parallel straight lines with uniform velocity. The rectilinear motion may constitute reciprocal motion.
[0089] In some embodiments, the dose feedback mechanism includes the dose indicator assembly having a disc mount, one or more linear racks having teeth, one or more pinions and/or a dose indicating means for providing a dose related visual feedback to the user of the medicament dispenser.
[0090] The disc mount holds and locates all the components of the dose indicator assembly except linear rack and spring. The disc mount comprises one or more of the units wheel seat, the pinion seat, the tens wheel drive gear stud, the hundreds wheel drive gear stud, locking pin mount. The disc mount enables the positioning of the dose indicator assembly within the body of the actuator. The units wheel seat and the pinion seat provide for a frictionless rotation of the units wheel and the central pinion respectively. The tens wheel drive gear stud and the hundreds wheel drive gear stud locate the tens wheel drive gear and the hundreds wheel drive gear respectively. The locking pin mount that engages with the locking pin hundreds wheel to prevent the motion of the hundreds wheel and thereby preventing any further motion of the units wheel and tens wheel.
[0091] A “linear rack” includes a linear gear bar and has teeth for engagement. A linear rack has an arrangement to attach a spring to assist the return movement of the linear rack after actuation/operation.
[0092] A “pinion” includes a circular gear and may have teeth and/or radially placed driving studs. The pinion may have ratchets. The ratchets may be present on the circumference (e.g., circumferentially placed) or along the radius (e.g., radially placed) of the pinion.
[0093] In general a linear rack and pinion are a pair of gears which convert rectilinear motion into rotational motion and vice versa.
[0094] The term “ratchet” includes a type of gear or arrangements of teeth in such way that it allows continuous linear or rotary motion in only one direction while preventing motion in the opposite direction.
[0095] A dose indicating means includes dose indicator wheel(s) or disk(s). As used herein the terms wheels or disks can be used interchangeably.
[0096] A dose indicating means which includes dose indicator wheels including one to three dose indicator wheels. The dose indicator wheels each representing the units digits, the tens digits and/or the hundreds digits. Each dose indicator wheel is imprinted, etched, pasted or embossed to provide visual information in the form of digits. The dose indicator wheels are arranged in a concentric, planar and co-axial (e.g. same axis of rotation) or non-concentric and non-planar orientation or concentric, co-planar and co-axial. The wheels may be in an overlapping or non-overlapping configuration for providing a count ranging from numbers ‘0’ to ‘999’ which are displayed synchronously, collectively and simultaneously with single or multiple components of the dose indicating means wherein the numbers ‘0’ to ‘999’ are displayed in a vertical, horizontal orientation. The dose indicator wheels may have one or more pins, studs, gears and/or ratchets.
[0097] The primary packaging in case of MDI refers to a bottle, canister or actuator, and its components such as mouth piece cover.
[0098] The balancer transfer distributes and equalizes the force of primary packaging on the linear racks. The balancer resides on top of the linear rack of the dose indicator assembly. The rectilinear or rotational motion of the primary packaging material (e.g. canister, bottle or cover) is transferred to the dose indicator assembly via the balancer. The balancer can have different shapes such as disc type, half-moon and/or bar type. The balancer may have one or more slot(s) for linear racks. The balancer may have one or more slot(s) for actuator pins. During the course of actuation/operation the actuator pins for balancer moves within the balancer slots preventing the rocking and/or shaking of the balancer.
[0099] In some embodiments, the dose feedback mechanism include the dose indicator assembly includes: a disc mount, one or more linear racks having teeth, one or more pinions, and/or a dose indicating means which include dose indicator wheels comprising one or more dose indicator wheels for providing a dose-related visual feedback to the user of the medicament dispenser.
[0100] In some embodiments, the dose feedback mechanism include of the dose indicator assembly includes: a disc mount, one or more linear racks having teeth, central pinion, and/or a dose indicating means which include dose indicator wheels comprising of one or more dose indicator wheels for providing a dose related visual feedback to the user of the medicament dispenser. The central pinion and dose indicator wheels are concentric.
[0101] In some embodiments, the dose feedback mechanism include the dose indicator assembly includes: a disc mount includes the units wheel seat, the central pinion seat, the tens wheel drive gear stud, the hundreds wheel drive gear stud and/or locking pin mount, one or more linear racks having teeth, one or more pinions, and/or a dose indicating means which includes dose indicator wheels comprising of one or more dose indicator wheels each representing the units digits, the tens digits and/or the hundreds digits for providing a dose related visual feedback to the user of the medicament dispenser.
[0102] In some embodiments, the dose feedback mechanism include the dose indicator assembly includes: a disc mount includes the units wheel seat; the central pinion seat; the tens wheel drive gear stud; the hundreds wheel drive gear stud and/or locking pin mount, one or more linear racks having teeth, central pinion, and/or a dose indicating means which include dose indicator wheels comprising of one or more dose indicator wheels each representing the units digits, the tens digits and/or the hundreds digits for providing a dose related visual feedback to the user of the medicament dispenser. The central pinion and dose indicator wheels are concentric.
[0103] In some embodiments, the dose feedback mechanism include of the dose indicator assembly includes: a disc mount including the units wheel seat; the pinion seat; the tens wheel drive gear stud; the hundreds wheel drive gear stud and/or locking pin mount, one or more linear racks having teeth, central pinion having ratchets, and/or a dose indicating means which include dose indicator wheels comprising of one or more dose indicator wheels each representing the units digits, the tens digits and/or the hundreds digits for providing a dose related visual feedback to the user of the medicament dispenser. The central pinion and dose indicator wheels are concentric. The linear rack prevents an inadvertent miss in the transfer and distribution of motion of the primary packaging within the dose feedback mechanism and prevent a false higher remaining dose count within the medicament dispenser.
[0104] In some embodiments, the dose feedback mechanism include the dose indicator assembly includes: a disc mount includes the units wheel seat, the pinion seat; the tens wheel drive gear stud, the hundreds wheel drive gear stud; and/or locking pin mount, a linear rack having teeth, a central pinion having ratchets, and/or a dose indicating means which includes dose indicator wheels comprising of one or more dose indicator wheels each representing the units digits, the tens digits and/or the hundreds digits for providing a dose related visual feedback to the user of the medicament dispenser. The central pinion and dose indicator wheels are coaxial. The linear rack prevents an inadvertent miss in the transfer and distribution of motion of the primary packaging within the dose feedback mechanism and prevent a false higher remaining dose count within the medicament dispenser.
[0105] In some embodiments when the primary packaging e.g. canister or bottle are depressed to actuate/operate the medicament dispenser the motion is transferred to the linear rack which moves it in downward direction, simultaneously and synchronously. The motion of the linear rack is transferred to the central pinion allowing it to rotate. The central pinion has circumferential ratchets that drive the units wheel. The rotation of the units wheel leads to rotation the tens wheel via the tens wheel drive gear which further rotates the hundreds wheel via hundreds wheel drive gear. The spring assists in the return movement of the linear rack after actuation/operation. The circumferential ratchets of the central pinion prevent the reverse rotation of the wheels during the return movement of the linear rack. The mechanism of actuation leads to change in the number of doses (increment or decrement) and provides dose related feedback (number remaining, number consumed and/or life-cycle of the product) to the user of the medicament dispenser.
[0106] When the primary packaging (e.g. cover of dry powder inhaler) is opened to actuate/operate the medicament dispenser the motion is transferred to the linear rack which moves it in downward direction, simultaneously and synchronously. The motion of the linear rack is transferred to the central pinion allowing it to rotate. The central pinion has circumferential ratchets that drive the units wheel. The rotation of the units wheel leads to rotation the tens wheel via the tens wheel drive gear which further rotates the hundreds wheel via hundreds wheel drive gear. The spring assist in the return movement of the linear rack after actuation/operation. The circumferential ratchets of the central pinion prevent the reverse rotation of the wheels during the return movement of the linear rack. The mechanism of actuation leads to a change in the number of doses (increment or decrement) and provides dose related feedback (e.g. number remaining, number consumed and/or life-cycle of the product) to the user of the medicament dispenser.
[0107] In some embodiments, the dose feedback mechanism include the dose indicator assembly includes: the a disc mount, one or more linear racks having teeth, a central pinion configured to convert rectilinear motion of the one or more linear racks to rotary motion, and a dose indicating means for providing a dose related visual feedback to the user of the medicament dispenser, the dose indicating means comprising a plurality of dose indicator wheels, the plurality of dose indicator wheels arranged in a concentric and co-planar configuration.
[0108] The presence of linear rack prevents an inadvertent miss in the transfer and distribution of motion of the primary packaging within the dose feedback mechanism and prevents a false higher remaining dose count within the medicament dispenser.
[0109] The presence of one or more linear rack allows for an efficient and robust transfer and distribution of motion from the actuation/operation of the medicament dispenser to and within the dose indicator mechanism and allow for relative serial reduction in the unit count of doses remaining in the medicament dispenser.
[0110] In some embodiment, the dose feedback mechanism includes: the actuator, the dose indicator assembly include disc mount; one or more linear racks having teeth; central pinion and/or a dose indicating means which include dose indicator wheels comprising of one or more dose indicator wheels for providing a dose related visual feedback to the user of the medicament dispenser, the balancer, and/or the window for displaying the change in the number of doses (increment or decrement) and provides dose related feedback (e.g. number remaining, number consumed and/or life-cycle of the product) to the user of the medicament dispenser.
[0111] In some embodiment, the dose feedback mechanism includes: the actuator having units wheel locator pin, the dose indicator assembly include a mount which further includes the units wheel seat; the pinion seat; the tens wheel drive gear stud; the hundreds wheel drive gear stud and/or locking pin mount, a linear rack having teeth, a central pinion having ratchets, and/or a dose indicating means which further includes dose indicator wheels comprising of one or more dose indicator wheels each representing the units digits, the tens digits and/or the hundreds digits for providing a dose related visual feedback to the user of the medicament dispenser, the balancer, and/or the window for displaying the change in the number of doses (increment or decrement) and provides dose related feedback (e.g. number remaining, number consumed and/or life-cycle of the product) to the user of the medicament dispenser.
[0112] It is intended that the scope of the present disclosure should not be limited by any particular embodiment described herein. While various embodiments have been described above, it should be noted that they have been presented by way of example only, and not limitation. Numerous changes to the disclosed embodiments can be made in accordance with the disclosure herein without departing from the spirit or scope of the invention.
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[0116] In some embodiments, the dose indicator assembly 57 can also be adapted as a stand-alone cartridge/cassette for insertion into the molded body of the actuator 36 for the ease of manufacturing operation.
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[0123] The spring 59 (not shown) compresses when the canister 56 or bottle 65 is depressed either by the press-and breathe operation of the user or the activation of the breath triggered actuation mechanism, both resulting in downward rectilinear motion of the canister 56 or bottle 65 and remains in the state of compression as long as the canister 56 or bottle 65 is depressed. When the canister 56 or bottle 65 is not depressed and returns back to its original state, the spring 59 (not shown) uncompresses and moves the linear rack 2 vertically to its original state. The central pinions 73 rotate both clockwise and counter-clockwise due to the to-and-fro motion of the linear rack 2. When the linear rack 2 moves in a downward motion, simultaneously and synchronously, the central pinion 73 moves in a clock-wise motion. When the linear rack 2 moves in an upward motion, simultaneously and synchronously, the central pinion 73 moves in a counter-clockwise motion. The units wheel 6 is driven by the ratchets 79 on the central pinion 73. The ratchets 79 on the central pinion 73 drive the units wheel drive gear 80 unidirectionally preventing reverse rotation thereby incrementing the units wheel 6. The incrementing gears units wheel 81 comes in contact with the tens wheel drive gear 75 after every 10 actuations/operations or after one complete rotation of the units wheel 6. The tens wheel drive gear 75 is always in contact with the tens wheel inner gears 82 (see
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[0127] In some embodiments, the units digits are on a front face of the units wheel opposite the units wheel drive gear 80, not the peripheral edge of the units wheel.
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[0129] In some embodiments the tens digits are on a front face of the tens wheel, not the peripheral edge of the tens wheel.
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