IP Library › Granted Patent US 11,454,625
Granted Patent B1
US 11,454,625 · App. 17/500,126 · Granted Sep 27, 2022

Rapid testing mechanism and method for respiratory viral pathogens

Inventors: Brandon Heeger (Avon, IN); Ajay Lajmi (Pensacola, FL)
G01N33/497A61B5/082C08B37/0075G01N33/56983
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Quick Facts
Patent No.
US 11,454,625
App. No.
17/500,126
Granted
Sep 27, 2022
Kind
B1
Abstract

A rapid testing mechanism for respiratory viral pathogens includes a filter material positioned to capture exhaled breath particles from a respiratory tract. A portion of the filter material is impregnated with a pathogen binding adsorptive reagent. When the exhaled breath particles pass through the filter material the following occurs: when the binding adsorptive reagent reacts, a positive test for respiratory viral pathogens is indicated by the filter material; and when pathogen binding adsorptive reagent does not react, a negative test for respiratory viral pathogens is indicated by the filter material.

Claims (30)

1. A rapid testing mechanism for respiratory viral pathogens, including:

a filter material positioned to capture exhaled breath particles from a respiratory tract;

wherein at least a portion of the filter material is impregnated with a heparin sepharose pathogen binding adsorptive reagent;

wherein, when the exhaled breath particles pass through the filter material, the following occur:

when the binding adsorptive reagent reacts, a positive test for respiratory viral pathogens is indicated by the filter material; and

when the pathogen binding adsorptive reagent does not react, a negative test for respiratory viral pathogens is indicated by the filter material.

2. The rapid testing mechanism of claim 1 , wherein the filter material is

impregnated with greater than 0.2 mL of the pathogen binding adsorptive reagent.

3. The rapid testing mechanism of claim 1 , wherein the filter material includes multiple layers.

4. The rapid testing mechanism of claim 1 , including a porous sealed packet containing the pathogen binding adsorptive reagent.

5. The testing mechanism of claim 4 , wherein the porous sealed packet is

positioned between two layers of multiple layers of the filter material.

6. The testing mechanism of claim 1 , wherein the respiratory viral pathogens include ribonucleic acid viruses.

7. The testing medium of claim 1 , wherein the filter material is a face mask covering a nose and mouth of a wearer.

8. The testing medium of claim 1 , wherein a heparin-based porous absorptive beads are combined with glycerine.

9. The testing medium of claim 1 , wherein a housing structure for the filter may be packaged in porous polymeric membrane polyethylene.

10. A method of testing for respiratory viral pathogens, including steps of:

impregnating at least a portion of a filter material with a heparin sepharose pathogen binding adsorptive reagent;

capturing exhaled breath particles from a respiratory tract with the filter material;

indicating, by the filter material, a positive test for respiratory viral pathogens when the pathogen binding adsorptive reagent reacts; and

indicating, by the filter material, a negative test for respiratory viral pathogens when the pathogen binding adsorptive reagent does not react.

11. The method of claim 10 , further including:

impregnating the filter material with greater than 0.2 mL of the pathogen binding adsorptive reagent.

12. The method of claim 10 , further including:

providing the filter material with multiple layers.

13. The method of claim 10 , further including:

containing the pathogen binding adsorptive reagent within a porous sealed packet.

14. The method of claim 10 , wherein the respiratory viral pathogens include ribonucleic acid viruses.

15. The method of claim 10 , further including:

providing a face mask including the impregnated filter material covering a nose and mouth of a wearer.

Continuity (2)
Continuation 17224076 · Apr 6, 2021
Provisional Application 63016335 · Apr 28, 2020