IP Library Granted Patent US 10,070,820
Granted Patent B2
US 10,070,820 · App. 14/265,234 · Granted Sep 11, 2018

Transdermal microneedle continuous monitoring system

Inventor: Juang-Tang Huang (Taipei, TW)
Assignee: Micro Nipple Technology Co., Ltd.
A61B5/685A61B5/05A61B5/150022A61B5/150282A61B5/150984A61B5/6849A61B5/14514A61B5/14532A61B5/6833A61B2562/046A61B2562/125
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Quick Facts
Patent No.
US 10,070,820
App. No.
14/265,234
Granted
Sep 11, 2018
Kind
B2
Abstract

Transdermal microneedles continuous monitoring system is provided. The continuous system monitoring includes a substrate, a microneedle unit, a signal processing unit and a power supply unit. The microneedle unit at least comprises a first microneedle set used as a working electrode and a second microneedle set used as a reference electrode, the first and second microneedle sets arranging on the substrate. Each microneedle set comprises at least a microneedle. The first microneedle set comprises at least a sheet having a through hole on which a barbule forms at the edge. One of the sheets provides the through hole from which the barbules at the edge of the other sheets go through, and the barbules are disposed separately.

Claims (16)

1. A transdermal microneedles continuous monitoring system, comprising:

a substrate;

a microneedle unit comprising at least a first microneedle set used as a working electrode and a second microneedle set used as a reference electrode, each of the microneedle sets comprising at least a microneedle, the first microneedle set comprising at least two sheets, each of the sheets having a through hole defined thereon and a barbule arranged at the peripheral of the through hole, the through hole on one sheet allowing the corresponding barbules of an other sheet to pass and the barbules being disposed separately;

a signal processing unit arranged on the substrate and electrically connecting to the first microneedle set and the second microneedle set; and

a power supply unit providing working power to the transdermal microneedles continuous monitoring system,

wherein the at least two sheets comprise a first sheet and a second sheet stacked with the first sheet, the first sheet having at least one first through hole defined thereon, and a first barbule at the peripheral of the first through hole, the second sheet having at least one second through hole defined thereon and a second barbule at the peripheral of the second through hole, wherein the second barbule penetrates the first through hole to juxtapose the first barbule at a corresponding location.

2. The transdermal microneedles continuous monitoring system in claim 1 , wherein each of the barbule of the first microneedle set comprises a tip and a base, wherein tips of the barbules are not at the same altitudes after the sheets are stacked and the through hole of one sheet are penetrated by the barbules of other sheets.

3. The transdermal microneedles continuous monitoring system in claim 1 , wherein each of the barbule of the first microneedle set comprises a tip and a base, wherein the tips of the barbules are at the same altitudes after the sheets are stacked and the through hole of one sheet are penetrated by the barbules of other sheets.

4. The transdermal microneedles continuous monitoring system in claim 1 , wherein the microneedles of first microneedle set and the second microneedle set are formed by punching or etching.

5. The transdermal microneedles continuous monitoring system in claim 1 , wherein each the barbules has sensing polymer coated on inner surface thereof.

6. The transdermal microneedles continuous monitoring system in claim 1 , wherein each the barbules has anti-irritation medicine coated on outer surface thereof.

7. The transdermal microneedles continuous monitoring system in claim 1 , further comprising a test strip arranged between the first microneedle set and the substrate, the test strip comprises a conductive layer and a plurality of test areas on the conductive layer, the test areas are coated with sensing polymer and aligned with the through holes of the first microneedle set.

8. The transdermal microneedles continuous monitoring system in claim 5 , further comprising a protection layer on the sensing polymer.

9. The transdermal microneedles continuous monitoring system in claim 6 , further comprising a protection layer on the anti-irritation medicine.

10. The transdermal microneedles continuous monitoring system in claim 1 , wherein the material of the barbules is selected from the group consisting of stainless steel, nickel, nickel alloy, titanium, titanium alloy, carbon nanotube, and silicon, the surface of the barbules is coated with biologically compatible metal.

11. The transdermal microneedles continuous monitoring system in claim 1 , wherein the material of the barbules is resin, the surface of the barbules is coated with biologically compatible metal.

Assignments (2)
MERGER AND CHANGE OF NAME Recorded Nov 9, 2022
From: MICRO NIPPLE TECHNOLOGY CO., LTD; RICHHEALTH TECHNOLOGY CORPORATION
To: RICHHEALTH TECHNOLOGY CORPORATION
Reel/Frame 061705/0727 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 29, 2014
From: HUANG, JUANG-TANG
To: MICRO NIPPLE TECHNOLOGY CO., LTD.
Reel/Frame 032783/0414 →
Priority Claims (1)
TW 103103314 A · Jan 28, 2014 · national
Continuity (1)
Related Publication 20150208984A1 · Jul 30, 2015
Cited By (8)
US 1,076,079 US 1,086,030 US 12,303,260 US 12,375,690 US 12,446,801 US 12,489,892 US 12,543,976 US 12,714,334