DEVICE AND METHOD FOR USER-ACTUATED MIXING OF DRY REAGENT WITH LIQUID
20190269362 ยท 2019-09-05
Inventors
- Shari Howard (Santa Barbara, CA, US)
- Evan Strenk (Santa Barbara, CA, US)
- Bob Lansdorp (Vancouver, CA)
- Michael Williams (Santa Barbara, CA, US)
Cpc classification
A61B5/1486
HUMAN NECESSITIES
International classification
Abstract
A device for a user-actuated mixing mechanism includes a cartridge with a dry reagent compartment, a liquid reservoir, and a fluidic barrier. The fluidic barrier is capable of separating the dry reagent compartment from the liquid reservoir. The dry reagent compartment may contain at least one lyophilized enzyme and the liquid reservoir may contain at least one liquid reagent. The liquid reservoir is capable of receiving a target analyte from secretions of a test subject using the device. When the fluidic barrier is removed from the cartridge, the dry reagent compartment is in contact with the liquid reservoir such that the lyophilized enzyme is capable of reacting with the target analyte from the test subject.
Claims
1. A transdermal analyte sensing device comprising: a cartridge, said cartridge having a first and a second compartment, wherein each said compartment stores at least one first component and at least one second component separately; a user-actuated mixing mechanism, for combining said at least first component and said at least second component.
2. The device of claim 1, wherein said at least one first component further contains a dry reagent.
3. The device of claim 2, wherein said dry reagent is lyophilized enzyme.
4. The device of claim 3, wherein said lyophilized enzyme is alcohol oxidase.
5. The device of claim 1, wherein said at least one second component further comprises a liquid reagent.
6. The device of claim 1, wherein said user-actuated mixing mechanism further comprises at least one fluidic barrier, said at least one fluidic barrier capable of separating said first compartment from said second compartment.
7. The device of claim 1, wherein said cartridge has a snap feature capable of keeping said first compartment in contact with said second compartment.
8. The device of claim 7, wherein said cartridge is clamshell shaped.
9. The device of claim 1, wherein said first compartment further contains an electrochemical sensor.
10. The device of claim 9, wherein said electrochemical sensor is Prussian Blue.
11. A transdermal analyte sensing device, comprising a cartridge having a dry reagent compartment, a liquid reservoir, and at least one fluidic barrier, said fluidic barrier capable of separating said dry reagent compartment from said liquid reservoir; said dry reagent compartment has at least one lyophilized enzyme and said liquid reservoir has at least one liquid reagent; said liquid reservoir capable of receiving a target analyte from secretions of a subject; wherein when said at least one fluidic barrier is removed from said cartridge, said dry reagent compartment is in contact with said liquid reservoir such that said at least one lyophilized enzyme is capable of reacting with said target analyte.
12. The transdermal analyte sensing device of claim 11, wherein said at least one lyophilized enzyme is alcohol oxidase.
13. The transdermal analyte sensing device of claim 11, wherein said at least one liquid reagent is agarose hydrogel.
14. The transdermal analyte sensing device of claim 11, wherein said target analyte is ethanol.
15. The transdermal analyte sensing device of claim 11 further comprising a snap feature, said snap feature capable of keeping said dry reagent compartment sealed with said liquid reservoir.
16. The transdermal analyte sensing device of claim 11, wherein said dry reagent compartment further comprises an electrochemical sensor, said electrochemical sensor capable of reacting with said lyophilized enzyme and said target analyte.
17. The transdermal analyte sensing device of claim 16, wherein said electrochemical sensor is Prussian Blue.
18. A method for actuating a mixing mechanism, said method comprising: removing at least one fluidic barrier from a clamshell-shaped cartridge; connecting a dry reagent compartment with a liquid reservoir when said at least one fluidic barrier is removed; wherein at least one lyophilized enzyme in said dry reagent compartment is mixed with at least one liquid reagent in said liquid reservoir.
19. The method of claim 18, wherein the mixture of said at least one lyophilized enzyme and said at least one liquid reagent in said cartridge is capable of reacting with a target analyte from secretions of a subject.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF EMBODIMENTS
[0023] The invention will be described more fully hereinafter with reference to the accompanying drawings, in which embodiments of the invention are shown. This invention may, however, be embodied in many different forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete, and to fully convey the scope of the invention to those skilled in the art.
[0024] As shown in
[0025] In an embodiment, the cartridge 1 has a hinge mechanism 107 connecting the liquid reservoir 20 and the dry reagent compartment 10 that enables the two components to be combined into one compartment when they are in contact with each other. The hinge mechanism 107 facilitates the alignment of the two halves 101, 102 after a fluidic barrier 105 is removed, and further helps eliminate air bubbles on the surface of an electrochemical sensor 121 (not shown in
[0026] As further shown in the exploded view of
[0027] The liquid reservoir 20 can include hydrogel such as poly-ethylene-glycol, agarose, or other substances known to those skilled in the art for use in transdermal analyte sensors. In an embodiment, there is an air gap (not shown) inside the liquid reservoir 20 that improves the response time of the electrochemical sensor 121, and reduces pressure fluctuations caused by the user's skin and motion from use of the cartridge 1.
[0028] Referring now to
[0029] In a preferred embodiment, the cartridge 1 has a snap feature 103 that holds the liquid reservoir 20 onto the dry reagent compartment 10, as shown in
[0030] Referring again to
[0031] As shown in
[0032] An example of the use of an embodiment invention is as follows. The dry reagent compartment 10 is enclosed in the transdermal analyte sensing device 2. Once the user removes the fluidic barrier 105, the clamshell-shaped cartridge 1 is closed. The closure of the cartridge 1 causes the first half 102 and the second half 101 of the cartridge 1 to come into contact with each other. In this example, the cartridge 1 is intended for use in transdermal analyte sensing devices 2. To transdermally measure target analyte (i.e. alcohol) of the test subject, the cartridge 1 is engaged with the wristband 129 so that the target analyte can diffuse from secretions of the user, such as sweat or insensible perspiration, into the liquid reservoir 20, and further hydrate and mix with the dry reagent (not shown) inside the cartridge 1.
[0033] In a preferred embodiment, the transdermal analyte sensing device 2 includes electrical connections 18 attached to the electrochemical sensor 121 in the dry reagent compartment 10. Hydrated reagents in the cartridge 1 can then be measured by the electrochemical sensor 121 to detect alcohol level of the test subject. For example, hydrated alcohol oxidase can be used for the detection of ethanol diffused from secretions of the test subject in the cartridge 1.
[0034] While illustrative embodiments of the invention have been described in detail above, it is to be understood that the appended claims are intended to be construed to include variations of the present invention.