IP Library Granted Patent US 11,285,285
Granted Patent B2
US 11,285,285 · App. 16/098,805 · Granted Mar 29, 2022

Systems and methods comprising a droplet delivery device and a breathing assist device for therapeutic treatment

Inventors: Louis Thomas Germinario (Kingsport, TN); John H. Hebrank (Durham, NC); Charles Eric Hunter (Boone, NC); Thomas P. Stern (Huntersville, NC); Jack C. Hunter (Boone, NC)
Assignee: Pneuma Respiratory, Inc.
A61M16/024A61M11/003A61M11/005A61M15/0021A61M15/0085A61M15/025A61M16/0051A61M16/0066A61M16/021A61M16/107A61M16/108A61M16/142G16H50/20A61M15/00A61M16/022A61M16/10A61M16/1075A61M2016/0018A61M2016/0021A61M2016/0027A61M2016/0039A61M2205/0294A61M2205/33A61M2205/3306A61M2205/3327A61M2205/3331A61M2205/3553A61M2205/3569A61M2205/3584A61M2205/3592A61M2205/502A61M2205/584A61M2205/587A61M2205/7536A61M2206/11
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Quick Facts
Patent No.
US 11,285,285
App. No.
16/098,805
Granted
Mar 29, 2022
Kind
B2
Abstract

A droplet delivery device and related methods for delivering precise and repeatable dosages to a subject for pulmonary use is disclosed. The droplet delivery device includes a housing, a reservoir, and ejector mechanism, and at least one differential pressure sensor. The droplet delivery device is automatically breath actuated by the user when the differential pressure sensor senses a predetermined pressure change within housing. The droplet delivery device is then actuated to generate a stream of droplets having an average ejected droplet diameter within the respirable size range, e.g, less than about 5 μm, so as to target the pulmonary system of the user.

Claims (31)

1. A drug delivery system for administering a therapeutic agent to a subject in need thereof as an ejected stream of droplets delivered via a piezoelectric actuated droplet delivery device to the pulmonary system of the subject to treat a disease disorder or condition, the system comprising:

the piezoelectric actuated droplet delivery device; and

a breathing assist device;

wherein the piezoelectric actuated droplet delivery device comprises:

a housing comprising a mouthpiece located at an airflow exit of the housing, and an airflow inlet flow element positioned at an airflow entrance of the housing;

a reservoir disposed within or in fluid communication with the housing for receiving a volume of fluid including the therapeutic agent;

an ejector mechanism in fluid communication with the reservoir, the ejector mechanism comprising a piezoelectric actuator and an aperture plate, the aperture plate having a plurality of openings formed through its thickness and the piezoelectric actuator operable to oscillate the aperture plate at a frequency to thereby generate the ejected stream of droplets;

at least one differential pressure sensor positioned within the housing;

the at least one differential pressure sensor configured to activate the ejector mechanism upon sensing a pre-determined pressure change within the housing to thereby generate the ejected stream of droplets;

the ejector mechanism configured to generate the ejected stream of droplets wherein at least about 70% of the droplets have an average ejected droplet diameter of less than about 5 microns, such that at least about 70% of the mass of the ejected stream of droplets is delivered to the pulmonary system of the subject during use so as to treat the disease, disorder, or condition;

the housing, airflow inlet flow element, and mouthpiece configured to facilitate non-turbulent airflow across an exit side of the aperture plate and to provide sufficient non-turbulent airflow through the device during use.

2. The drug delivery system of claim 1 , wherein the breathing assist device is a mechanical ventilator or a continuous positive airway pressure (CPAP) machine.

3. The drug delivery system of claim 1 , wherein the piezoelectric actuated droplet delivery device is positioned in-line with an airflow tube of the breathing assist device to provide delivery of the ejected stream of droplets into an airflow of the breathing assist device.

4. The drug delivery system of claim 1 , wherein the aperture plate of the piezoelectric actuated droplet delivery device comprises a domed shape.

5. The drug delivery system of claim 1 , wherein the ejector mechanism is orientated with reference to the housing such that the ejected stream of droplets is directed into and through the housing at an approximate 90 degree change of trajectory prior to expulsion from the housing.

6. The droplet delivery system of claim 1 , wherein the reservoir is removably coupled with the housing.

7. The drug delivery system of claim 1 , wherein the reservoir is coupled to the ejector mechanism to form a combination reservoir/ejector mechanism module, and the combination reservoir/ejector mechanism module is removably coupled with the housing.

8. The drug delivery system of claim 1 , further comprising a wireless communication module.

9. The drug delivery system of claim 1 , wherein the piezoelectric actuated droplet delivery device further comprises one or more sensors selected from an infra-red transmitter, a photodetector, an additional pressure sensor, and combinations thereof.

10. The drug delivery system of claim 1 , wherein the breathing assist device is a mechanical ventilator, the therapeutic agent is an antibiotic, and the disease, disorder or condition is ventilator-assisted pneumonia (VAP).

11. The drug delivery system of claim 10 , wherein the piezoelectric actuated droplet delivery device is activated during an inspiration cycle of the mechanical ventilator.

12. The drug delivery system of claim 1 , wherein the breathing assist device is a CPAP machine.

13. The drug delivery system of claim 12 , further comprising a cardiac monitoring module configured to monitor and detect cardiac events, wherein the cardiac monitoring module is in communication with a controller.

14. The drug delivery system of claim 13 , wherein the therapeutic agent is a cardiac medication, and the disease, disorder or condition is a cardiac condition.

15. The drug delivery system of claim 14 , wherein the piezoelectric actuated droplet delivery device is activated during an inspiration cycle of the subject when the cardiac monitoring module detects a cardiac event.

16. A method for treating a disease, condition or disorder using a drug delivery system of claim 1 , the method comprising:

(a) positioning the piezoelectric actuated droplet delivery device in-line with an airflow tube of the breathing assist device;

(b) generating the ejected stream of droplets via the piezoelectric actuated droplet delivery device, wherein at least about 70% of the ejected stream of droplets have an average ejected droplet diameter of less than about 5 μm; and

(c) providing the ejected stream of droplets into an airflow of the breathing assist device so as to deliver the ejected stream of droplets to the pulmonary system of the subject such that at least about 70% of the mass of the ejected stream of droplets is delivered to the pulmonary system of the subject during use.

17. The method of claim 16 , wherein the breathing assist device is a mechanical ventilator or a continuous positive airway pressure (CPAP) machine.

18. The method of claim 16 , wherein the disease condition or disorder is selected from VAP and cardiac events.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 12, 2019
From: GERMINARIO, LOUIS THOMAS; HEBRANK, JOHN H.; HUNTER, CHARLES ERIC; STERN, THOMAS P.; HUNTER, JACK C.
To: PNEUMA RESPIRATORY, INC.
Reel/Frame 050030/0806 →
Continuity (11)
Provisional Application 62331328 · May 3, 2016
Provisional Application 62332352 · May 5, 2016
Provisional Application 62334076 · May 10, 2016
Provisional Application 62354437 · Jun 24, 2016
Provisional Application 62399091 · Sep 23, 2016
Provisional Application 62416026 · Nov 1, 2016
Provisional Application 62422932 · Nov 16, 2016
Provisional Application 62428696 · Dec 1, 2016
Provisional Application 62448796 · Jan 20, 2017
Provisional Application 62471929 · Mar 15, 2017
Related Publication 20190125987A1 · May 2, 2019
Cited By (11)
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