IP Library Granted Patent US 8,950,394
Granted Patent B2
US 8,950,394 · App. 13/004,662 · Granted Feb 10, 2015

Preservative-free single dose inhaler systems

Inventors: John S. Patton (San Francisco, CA); Ryan S. Patton (San Francisco, CA); Mei-Chang Kuo (Palo Alto, CA); Yehuda Ivri (Newport Beach, CA)
Assignee: Dance Biopharm Inc.
A61M15/0065A61M15/0085A61K38/28A61K9/0073A61M11/02A61M2016/0021A61M2016/0039A61M2202/0468
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Quick Facts
Patent No.
US 8,950,394
App. No.
13/004,662
Granted
Feb 10, 2015
Kind
B2
Abstract

An aerosolization system includes a squeezable container having a resilient container body. The container is configured to deliver a unit dosage of a liquid when squeezed a single time. The system also includes an aerosolizer that is constructed of a housing defining a mouthpiece, and an aerosol generator disposed in the housing. The aerosol generator includes a vibratable membrane having a front face and a rear face, and a vibratable element used to vibrate the membrane. Further, the housing includes an opening that is adapted to receive a unit dosage of the liquid from the container. The opening provides a liquid path to the rear face of the vibratable membrane.

Claims (36)

1. An aerosolization system, comprising:

a container comprising a container body, the container being configured to deliver a unit dosage of a liquid when actuated a single time; and

an aerosolizer comprising:

a housing defining a mouthpiece; and

an aerosol generator disposed entirely within the housing, wherein the aerosol generator comprises a vibratable membrane having a front face and a rear face, and a vibratable element used to vibrate the membrane;

wherein the housing includes an opening configured to receive a unit dosage of the liquid from the container while the container is generally external to the housing so that the container can be grasped by a human hand to manually actuate the container a single time while the container is outside the housing, wherein the opening provides a liquid path configured to drain the entire unit dosage onto the rear face of the vibratable membrane where the unit dosage is stored on the rear face until the vibratable element is energized to aerosolize the entire unit dosage stored on the rear face.

2. An aerosolization system as in claim 1 , wherein the container comprises a bottle containing a volume of the liquid, and wherein the bottle is configured to dispense a discrete droplet of the liquid of a certain volume when the bottle is squeezed.

3. An aerosolization system as in claim 1 , wherein the opening comprises a circular hole, and wherein the liquid path is defined by a sloped well region formed by the housing.

4. An aerosolization system as in claim 3 , wherein the well region has a diameter of about 10 mm to about 15 mm.

5. An aerosolization system as in claim 1 , wherein the container body has a proximal end, a distal end, and a nozzle positioned at the distal end, wherein the container further comprises a tip seal and a spring that biases the tip seal in a normally closed position, wherein actuation of the container creates a sufficient pressure to move the tip seal and to deliver a unit dosage of the liquid from the nozzle, and wherein after dispensing, the tip seal closes to prevent liquids from moving back into the container.

6. An aerosolization system as in claim 1 , wherein the vibratable membrane is dome shaped and includes a plurality of apertures, and wherein the vibratable element comprises an annular piezoelectric element that circumscribes the apertures.

7. An aerosolization system as in claim 1 , wherein the unit dosage of liquid is delivered as a single drop from the container.

8. An aerosolization system as in claim 7 , wherein the single drop has a volume that is smaller than 200 microliters.

9. An aerosolization system, comprising:

a container comprising a container body, the container being configured to deliver a unit dosage of a liquid when actuated a single time; and

an aerosolizer comprising:

a housing defining a mouthpiece; and

an aerosol generator disposed entirely within the housing, wherein the aerosol generator comprises a vibratable membrane having a front face and a rear face, and a vibratable element used to vibrate the membrane;

wherein the housing includes a sloped well region that drains into an opening that is adapted to receive a unit dosage of the liquid from the container while the container is generally external to the housing so that the container can be grasped by a human hand to manually actuate the container a single time while the container is outside the housing, wherein the opening provides a liquid path configured to drain the entire unit dosage onto the rear face of the vibratable membrane upon dispensing the unit dosage onto the well region, the entire unit dosage being stored on the rear face until the vibratable element is energized to aerosolize the entire unit dosage stored on the rear face.

10. An aerosolization system as in claim 9 , wherein the container comprises a bottle containing a volume of the liquid, and wherein the bottle is configured to dispense a discrete droplet of the liquid of a certain volume when the bottle is actuated.

11. An aerosolization system as in claim 9 , wherein the opening comprises a circular hole, and wherein the sloped well region is formed by the housing.

12. An aerosolization system as in claim 9 , wherein the well region has a diameter of about 10 mm to about 15 mm.

13. An aerosolization system as in claim 9 , wherein the container body has a proximal end, a distal end, and a nozzle positioned at the distal end, wherein the container further comprises a tip seal and a spring that biases the tip seal in a normally closed position, wherein actuation of the container creates a sufficient pressure to move the tip seal and to deliver a unit dosage of the liquid from the nozzle, and wherein after dispensing, the tip seal closes to prevent liquids from moving back into the container.

14. An aerosolization system as in claim 9 , wherein the vibratable membrane is dome shaped and includes a plurality of apertures, and wherein the vibratable element comprises an annular piezoelectric element that circumscribes the apertures.

15. An aerosolization system as in claim 9 , wherein the unit dosage of liquid is delivered as a single drop from the container.

16. An aerosolization system as in claim 15 , wherein the single drop has a volume that is smaller than 200 microliters.

17. An aerosolization system, comprising: a container comprising a container body, the container being configured to deliver a unit dosage of a liquid when actuated a single time, wherein the container body has a proximal end, a distal end, and a nozzle positioned at the distal end, wherein the container further comprises a tip seal and a spring that biases the tip seal in a normally closed position, wherein actuation of the container creates a sufficient pressure to move the tip seal and to deliver a unit dosage of the liquid from the nozzle, and wherein after dispensing, the tip seal closes to prevent liquids from moving back into the container; and

an aerosolizer comprising:

a housing defining a mouthpiece; and

an aerosol generator disposed entirely within the housing, wherein the aerosol generator comprises a vibratable membrane having a front face and a rear face, and a vibratable element used to vibrate the membrane;

wherein the housing includes an opening that is adapted to receive a unit dosage of the liquid from the container, wherein the opening provides a liquid path configured to drain the entire unit dosage onto the rear face of the vibratable membrane while the container is generally external to the housing so that the container can be grasped by a human hand to manually actuate the container a single time while the container is outside the housing, the entire unit dosage being stored on the rear face until the vibratable element is energized to aerosolize the entire unit dosage stored on the rear face.

18. An aerosolization system as in claim 17 , wherein the opening comprises a circular hole, and wherein a sloped well region is formed by the housing.

19. An aerosolization system as in claim 18 , wherein the well region has a diameter of about 10 mm to about 15 mm.

20. An aerosolization system as in claim 17 , wherein the vibratable membrane is dome shaped and includes a plurality of apertures, and wherein the vibratable element comprises an annular piezoelectric element that circumscribes the apertures.

21. An aerosolization system as in claim 17 , wherein the unit dosage of liquid is delivered as a single drop from the container.

22. An aerosolization system as in claim 21 , wherein the single drop has a volume that is smaller than 200 microliters.

Assignments (6)
CHANGE OF NAME Recorded Feb 25, 2020
From: DANCE BIOPHARM INC.
To: AERAMI THERAPEUTICS, INC.
Reel/Frame 052019/0288 →
RELEASE OF SECURITY INTEREST Recorded Nov 3, 2016
From: HERCULES TECHNOLOGY III, LP
To: DANCE BIOPHARM HOLDINGS, INC.; DANCE BIOPHARM INC.
Reel/Frame 040215/0128 →
SECURITY INTEREST Recorded Nov 3, 2016
From: DANCE BIOPHARM HOLDINGS, INC.; DANCE BIOPHARM, INC.
To: GPB DEBT HOLDINGS II, LLC, AS AGENT FOR THE FOLLOWING:; DOMINION CAPITAL LLC
Reel/Frame 040215/0239 →
SECURITY INTEREST Recorded Aug 31, 2016
From: DANCE BIOPHARM, INC.; DANCE BIOPHARM HOLDINGS, INC.
To: HERCULES TECHNOLOGY III, L.P.
Reel/Frame 039603/0582 →
CHANGE OF NAME Recorded Jun 4, 2014
From: DANCE PHARMACEUTICALS, INC.
To: DANCE BIOPHARM INC.
Reel/Frame 033085/0617 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 24, 2011
From: PATTON, JOHN S.; PATTON, RYAN S.; KUO, MEI-CHANG; IVRI, YEHUDA
To: DANCE PHARMACEUTICALS INC.
Reel/Frame 026017/0070 →
Continuity (2)
Provisional Application 61335769 · Jan 12, 2010
Related Publication 20110168172A1 · Jul 14, 2011