IP Library Granted Patent US 11,413,440
Granted Patent B2
US 11,413,440 · App. 16/457,125 · Granted Aug 16, 2022

Three-dimensional microfluidics devices for the delivery of actives

Inventors: Marc Alary (Skillman, NJ); Bharat Patel (Skillman, NJ); Peyton Hopson (Jacksonville, FL); Jan-Joo Liu (Skillman, NJ); Vipul Davé (Hillsborough, NJ)
Assignee: Johnson & Johnson Consumer Inc.
A61M37/0015A61K9/0021A61K31/135A61K31/167A61K31/192A61K31/485A61K31/4965B33Y80/00A61M2037/003A61M2037/0023A61M2037/0053A61M2205/3327A61M2205/3379
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Quick Facts
Patent No.
US 11,413,440
App. No.
16/457,125
Granted
Aug 16, 2022
Kind
B2
Abstract

A transdermal delivery device includes a film having first and second outwardly facing major surfaces; at least one liquid reservoir contained within the film; at least one microfluidic channel having a transverse dimension between about 100 nm and 0.5 mm disposed within the film and in fluid communication with the at least one liquid reservoir; and at least one outlet port associated with at least one microneedle operatively connected to the first outwardly facing major surface of the film in fluid communication with the at least one microfluidic channel.

Claims (56)

1. A transdermal delivery device for long duration delivery of at least two active formulations comprising:

(a) a film having first and second outwardly facing major surfaces;

(b) a first active formulation subsystem comprising:

(i) at least one first active formulation liquid reservoir containing a first active formulation disposed within the film;

(ii) at least one first active formulation microfluidic channel having a major transverse dimension between about 100 nm and 0.5 mm disposed within the film and in fluid communication with the at least one first active formulation liquid reservoir;

(iii) at least one first active formulation outlet port operatively connected to the first outwardly facing major surface of the film in fluid communication with the at least one first active formulation microfluidic channel; and

(iv) at least one first active formulation microneedle in fluid communication with the at least one first active formulation outlet port; and

(c) a second active formulation subsystem comprising:

(i) at least one second active formulation liquid reservoir containing a second active formulation disposed within the film;

(ii) at least one second active formulation microfluidic channel having a major transverse dimension between about 100 nm and 0.5 mm disposed within the film and in fluid communication with the at least one second active formulation liquid reservoir;

(iii) at least one second active formulation outlet port operatively connected to the first outwardly facing major surface of the film in fluid communication with the at least one second active formulation microfluidic channel; and

(iv) at least one second active formulation microneedle in fluid communication with the at least one second active formulation outlet port; and

(d) an array of outlet ports comprising at least one first set of outlet ports being operatively connected to the first outwardly facing major surface of the film in fluid communication with the at least one first microfluidic channel and at least one second set of outlet ports being operatively connected to the first outwardly facing major surface of the film in fluid communication with the at least one second microfluidic channel, wherein at least one outlet port of the first set of outlet ports is disposed among the second set of outlet ports.

2. The transdermal delivery device of claim 1 , further comprising a sensor.

3. The transdermal delivery device of claim 2 , wherein the sensor detects an amount of a liquid delivered over time.

4. The transdermal delivery device of claim 1 , wherein the first active formulation comprises a solution of Phenylephrine HCl or a pharmaceutically equivalent Phenylephrine compound in a pharmaceutically acceptable solvent.

5. The transdermal delivery device of claim 4 , comprising a total amount of Phenylephrine HCl or a pharmaceutically equivalent Phenylephrine compound of between about 160 mg and about 200 mg.

6. The transdermal delivery device of claim 1 , wherein the second active formulation comprises a solution of Dextromethorphan Hydrobromide Hydrate or a pharmaceutically equivalent Dextromethorphan compound in a pharmaceutically acceptable solvent.

7. The transdermal delivery device of claim 6 , comprising a total amount of Dextromethorphan Hydrobromide Hydrate or a pharmaceutically equivalent Dextromethorphan compound of between about 90 mg and about 120 mg.

8. The transdermal delivery device of claim 1 , further comprising:

(e) a third active formulation subsystem comprising:

(i) at least one third active formulation liquid reservoir containing a third active formulation disposed within the film;

(ii) at least one third active formulation microfluidic channel having a major transverse dimension between about 100 nm and 0.5 mm disposed within the film and in fluid communication with the at least one third active formulation liquid reservoir;

(iii) at least one third active formulation outlet port operatively connected to the first outwardly facing major surface of the film in fluid communication with the at least one third active formulation microfluidic channel; and

(iv) at least one third active formulation microneedle in fluid communication with the at least one third active formulation outlet port.

9. The transdermal delivery device of claim 8 , wherein the third active formulation comprises a solution of Pseudoephedrine HCl or a pharmaceutically equivalent Pseudoephedrine compound in a pharmaceutically acceptable solvent.

10. The transdermal delivery device of claim 9 , comprising a total amount of Pseudoephedrine HCl or a pharmaceutically equivalent Pseudoephedrine compound of between about 1500 mg and about 1700 mg.

11. A method of producing delivery devices comprising the steps of:

(a) forming a transdermal delivery device via additive manufacturing, the transdermal delivery device comprising:

(i) a film having first and second outwardly facing major surfaces and a sensor;

(ii) a first active formulation subsystem comprising:

(A) at least one first active formulation liquid reservoir disposed within the film and having an inlet port;

(B) at least one first active formulation microfluidic channel having a major transverse dimension between about 100 nm and 0.5 mm disposed within the film and in fluid communication with the at least one first active formulation liquid reservoir;

(C) at least one first active formulation outlet port operatively connected to the first outwardly facing major surface of the film in fluid communication with the at least one first active formulation microfluidic channel;

(D) at least one first active formulation microneedle in fluid communication with the at least one first active formulation outlet port; and

(iii) a second active formulation subsystem comprising:

(A) at least one second active formulation liquid reservoir disposed within the film and having an inlet port;

(B) at least one second active formulation microfluidic channel having a major transverse dimension between about 100 nm and 0.5 mm disposed within the film and in fluid communication with the at least one second active formulation liquid reservoir;

(C) at least one second active formulation outlet port operatively connected to the first outwardly facing major surface of the film in fluid communication with the at least one second active formulation microfluidic channel; and

(D) at least one second active formulation microneedle in fluid communication with the at least one second active formulation outlet port; and

(iv) an array of outlet ports comprising at least one first set of outlet ports being operatively connected to the first outwardly facing major surface of the film in fluid communication with the at least one first microfluidic channel and at least one second set of outlet ports being operatively connected to the first outwardly facing major surface of the film in fluid communication with the at least one second microfluidic channel, wherein at least one outlet port of the first set of outlet ports is disposed among the second set of outlet ports; and

(b) filling the at least one first active formulation liquid reservoir with a liquid comprising a first benefit agent through the first active formulation inlet port; and

(c) filling the at least one second active formulation liquid reservoir with a liquid comprising a second benefit agent through the second active formulation inlet port; and

(d) closing the active formulation inlet ports.

12. The method of claim 11 , further comprising sensing an amount of liquid delivered over time.

13. The method of claim 11 , wherein the first benefit agent comprises solution of Phenylephrine HCl or a pharmaceutically equivalent Phenylephrine compound in a pharmaceutically acceptable solvent.

14. The method of claim 11 , wherein the second benefit agent comprises solution of Dextromethorphan Hydrobromide Hydrate or a pharmaceutically equivalent Dextromethorphan compound in a pharmaceutically acceptable solvent.

15. The method of claim 11 , wherein the transdermal delivery device further comprises:

(v) a third active formulation subsystem comprising:

(A) at least one third active formulation liquid reservoir disposed within the film and having an inlet port;

(B) at least one third active formulation microfluidic channel having a major transverse dimension between about 100 nm and 0.5 mm disposed within the film and in fluid communication with the at least one third active formulation liquid reservoir;

(C) at least one third active formulation outlet port operatively connected to the first outwardly facing major surface of the film in fluid communication with the at least one third active formulation microfluidic channel; and

(D) at least one third active formulation microneedle in fluid communication with the at least one third active formulation outlet port;

and wherein the process further includes:

(e) filling the at least one third active formulation liquid reservoir with a liquid comprising a third benefit agent through the third active formulation inlet port.

16. The method of claim 15 , wherein the third benefit agent comprises solution of Pseudoephedrine HCl or a pharmaceutically equivalent Pseudoephedrine compound in a pharmaceutically acceptable solvent.

Assignments (9)
CHANGE OF NAME Recorded Oct 28, 2024
From: JOHNSON & JOHNSON CONSUMER INC.
To: KENVUE BRANDS LLC
Reel/Frame 069267/0143 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 19, 2023
From: JOHNSON & JOHNSON CONSUMER INC.
To: JOHNSON & JOHNSON CONSUMER INC.
Reel/Frame 062438/0372 →
CERTIFICATE OF CONVERSION Recorded Jan 19, 2023
From: JOHNSON & JOHNSON CONSUMER INC.
To: JOHNSON & JOHNSON CONSUMER INC.
Reel/Frame 062438/0521 →
MERGER AND CHANGE OF NAME Recorded Jan 27, 2022
From: CHENANGO TWO LLC; CURRAHEE HOLDING COMPANY INC.
To: JOHNSON & JOHNSON CONSUMER INC.
Reel/Frame 058888/0210 →
MERGER Recorded Jan 27, 2022
From: CHENANGO ZERO LLC
To: CHENANGO TWO LLC
Reel/Frame 058888/0133 →
MERGER Recorded Jan 27, 2022
From: JOHNSON & JOHNSON CONSUMER INC.
To: CHENANGO ZERO LLC
Reel/Frame 059618/0521 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 18, 2020
From: ALARY, MARC; PATEL, BHARAT; HOPSON, PEYTON; LIU, JAN-JOO
To: JOHNSON & JOHNSON CONSUMER INC.
Reel/Frame 051551/0538 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 18, 2019
From: DAVE`, VIPUL
To: JOHNSON & JOHNSON CONSUMER INC.
Reel/Frame 051035/0397 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 6, 2019
From: ALARY, MARC; HOPSON, PEYTON; LIU, JAN-JOO; PATEL, BHARAT
To: JOHNSON & JOHNSON CONSUMER INC.
Reel/Frame 049970/0273 →
Continuity (2)
Provisional Application 62691699 · Jun 29, 2018
Related Publication 20200001065A1 · Jan 2, 2020