IP Library Granted Patent US 10,426,857
Granted Patent B2
US 10,426,857 · App. 15/259,357 · Granted Oct 1, 2019

Systems, devices, and methods including implantable devices with anti-microbial properties

Inventors: Edward S. Boyden (Chestnut Hill, MA); Roy P. Diaz (Seattle, WA); Roderick A. Hyde (Redmond, WA); Jordin T. Kare (San Jose, CA); Elizabeth A. Sweeney (Seattle, WA); Lowell L. Wood (Bellevue, WA)
Assignee: Gearbox, LLC
A61L2/24A61L2/0011A61L2/08A61L2/14A61L2/232A61L2/26A61L17/145A61L27/28A61L27/306A61L27/54A61L29/00A61L29/08A61L29/16A61L31/024A61L31/026A61L31/08A61L31/14A61L31/16A61M25/0045A61M27/006B82Y5/00B82Y30/00A61L2202/14A61L2300/10A61L2300/108A61L2300/404A61L2300/606B82Y40/00
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,426,857
App. No.
15/259,357
Granted
Oct 1, 2019
Kind
B2
Abstract

Systems, devices, methods, and compositions are described for providing an actively controllable implant configured to, for example, monitor, treat, or prevent microbial growth or adherence to the implant.

Claims (39)

1. An insertable device, comprising:

a body structure having an outer surface and an inner surface defining one or more fluid-flow passageways;

circuitry configured to detect one or more microorganisms present proximate at least one of the outer surface, the inner surface, or the one or more fluid-flow passageways; and

one or more actively controllable anti-microbial regions included on at least one of the outer surface or the inner surface, or embedded in the body structure, at least one of the one or more actively controllable anti-microbial regions having a wettability switchable feature configured to actuate between a first anti-microbial state and a second anti-microbial state responsive to detection of at least one microorganism by the circuitry.

2. The insertable device of claim 1 , wherein the wettability switchable feature is reversibly switchable between the first anti-microbial state and the second anti-microbial state.

3. The insertable device of claim 1 , wherein the wettability switchable feature includes a surface having a chemical switch having at least one of a surface chemistry or a surface charge configured to actuate between the first anti-microbial state and the second anti-microbial state responsive to detection of at least one microorganism by the circuitry.

4. The insertable device of claim 1 , wherein the wettability switchable feature includes a surface having a layer of material configured to actuate between a first conformation and a second conformation responsive to detection of at least one microorganism by the circuitry.

5. The insertable device of claim 1 , wherein the wettability switchable feature includes a membrane with a plurality of hydrophobic microposts.

6. The insertable device of claim 1 , wherein the circuitry configured to detect one or more microorganisms present proximate the body structure includes at least one of a plasmon sensor, a pH sensor, a temperature sensor, piezoelectric sensor, an electrostrictive sensor, a magnetostrictive sensor, an impedance sensor, a biochemical sensor, an optical sensor, or an electronic sensor.

7. The insertable device of claim 1 , wherein the circuitry configured to detect one or more microorganisms present proximate the body structure includes a sensor having at least one of an antibody binding molecule or an oligonucleotide aptamer binding molecule, the at least one of an antibody binding molecule or an oligonucleotide aptamer binding molecule configured to exhibit Forster or fluorescence resonance energy transfer in response to binding one or more microorganisms.

8. The insertable device of claim 1 , wherein the circuitry configured to detect one or more microorganisms present proximate the body structure includes a sensor having at least one binding agent configured to bind a component of a microorganism.

9. The insertable device of claim 1 , wherein at least one actively controllable anti-microbial region of the one or more actively controllable anti-microbial regions includes at least one of silver, copper, zirconium, diamond, rubidium, platinum, gold, nickel, lead, cobalt, potassium, zinc, bismuth, tin, cadmium, chromium, aluminum, calcium, mercury, thallium, gallium, strontium, barium, lithium, magnesium, oxides, hydroxides, or salts thereof.

10. The insertable device of claim 1 , wherein at least one actively controllable anti-microbial region of the one or more actively controllable anti-microbial regions includes an electro-active polymer.

11. The insertable device of claim 1 , further including: at least one power source coupled to at least one actively controllable anti-microbial region of the one or more actively controllable anti-microbial regions.

12. The insertable device of claim 1 , further including: circuitry configured to cyclically activate the wettability switchable feature between the first anti-microbial state and the second anti-microbial state responsive to detection of at least one microorganism by the circuitry.

13. The insertable device of claim 1 , wherein the one or more actively controllable anti-microbial regions include a plurality of actively controllable anti-microbial regions.

14. The insertable device of claim 13 , further including: a switch configured to concurrently actuate two or more actively controllable anti-microbial regions of the plurality of actively controllable anti-microbial regions between the first anti-microbial state and the second anti-microbial state responsive to detection of at least one microorganism proximate each of the two or more actively controllable anti-microbial regions by the circuitry.

15. The insertable device of claim 13 , further including: a switch configured to sequentially actuate two or more actively controllable anti-microbial regions of the plurality of actively controllable anti-microbial regions between the first anti-microbial state and the second anti-microbial state responsive to detection of at least one microorganism proximate each of the two or more actively controllable anti-microbial regions by the circuitry.

16. An insertable device, comprising:

a body structure having an outer surface and an inner surface defining one or more fluid-flow passageways;

circuitry configured to detect one or more microorganisms present proximate at least one of the outer surface, the inner surface, or the one or more fluid-flow passageways; and

one or more actively controllable anti-microbial regions included on at least one of the outer surface or the inner surface, or embedded in the body structure, at least one of the one or more actively controllable anti-microbial regions having a structure configured to actuate between a first anti-microbial state and a second anti-microbial state responsive to detection of at least one microorganism by the circuitry, wherein the structure includes at least a first nanostructure and a second nanostructure, the structure configured to at least one of extend or contract at least one of the first nanostructure or the second nanostructure responsive to detection of at least one microorganism by the circuitry, to increase a spacing between the first nanostructure and the second nanostructure responsive to detection of at least one microorganism by the circuitry, or to decrease a spacing between the first nanostructure and the second nanostructure responsive to detection of at least one microorganism by the circuitry.

17. An insertable device, comprising:

a body structure having an outer surface and an inner surface defining one or more fluid-flow passageways;

one or more actively controllable anti-microbial regions included on at least one of the outer surface or the inner surface, or embedded in the body structure, at least one of the one or more actively controllable anti-microbial regions having a wettability switchable feature configured to actuate between a first anti-microbial state and a second anti-microbial state; and

circuitry configured to actuate the wettability switchable feature responsive to detection of at least one microorganism proximate at least one of the outer surface, the inner surface, or the one or more fluid-flow passageways.

18. The insertable device of claim 17 , wherein the wettability switchable feature is reversibly switchable between the first anti-microbial state and the second anti-microbial state.

19. The insertable device of claim 18 , wherein the wettability switchable feature includes a surface having a chemical switch having at least one of a surface chemistry or a surface charge configured to actuate between the first anti-microbial state and the second anti-microbial state responsive to detection of at least one microorganism by the circuitry.

20. The insertable device of claim 18 , wherein the wettability switchable feature includes a surface having a layer of material configured to actuate between a first conformation and a second conformation responsive to detection of at least one microorganism by the circuitry.

21. The insertable device of claim 17 , wherein the wettability switchable feature includes a membrane with a plurality of hydrophobic microposts.

22. The insertable device of claim 17 , wherein the wettability switchable feature is configured to actuate between a first wettability state and a second wettability state responsive to at least one of ultraviolet energy or an applied potential.

23. The insertable device of claim 17 , wherein at least one actively controllable anti-microbial region of the one or more actively controllable anti-microbial regions includes at least one of silver, copper, zirconium, diamond, rubidium, platinum, gold, nickel, lead, cobalt, potassium, zinc, bismuth, tin, cadmium, chromium, aluminum, calcium, mercury, thallium, gallium, strontium, barium, lithium, magnesium, oxides, hydroxides, or salts thereof.

24. The insertable device of claim 17 , wherein at least one actively controllable anti-microbial region of the one or more actively controllable anti-microbial regions includes an electro-active polymer.

25. The insertable device of claim 17 , further including: at least one power source coupled to at least one actively controllable anti-microbial region of the one or more actively controllable anti-microbial regions.

26. The insertable device of claim 17 , further including: circuitry configured to cyclically activate the wettability switchable feature between the first anti-microbial state and the second anti-microbial state responsive to detection of at least one microorganism by the circuitry.

27. The insertable device of claim 17 , wherein the one or more actively controllable anti-microbial regions include a plurality of actively controllable anti-microbial regions.

28. The insertable device of claim 27 , further including: a switch configured to concurrently actuate two or more actively controllable anti-microbial regions of the plurality of actively controllable anti-microbial regions between the first anti-microbial state and the second anti-microbial state responsive to detection of at least one microorganism proximate each of the two or more actively controllable anti-microbial regions by the circuitry.

29. The insertable device of claim 27 , further including: a switch configured to sequentially actuate two or more actively controllable anti-microbial regions of the plurality of actively controllable anti-microbial regions between the first anti-microbial state and the second anti-microbial state responsive to detection of at least one microorganism proximate each of the two or more actively controllable anti-microbial regions by the circuitry.

30. The insertable device of claim 17 , wherein the wettability switchable feature includes at least a first nanostructure and a second nanostructure, the wettability switchable feature configured to at least one of extend or contract at least one of the first nanostructure or the second nanostructure responsive to detection of at least one microorganism by the circuitry, to increase a spacing between the first nanostructure and the second nanostructure responsive to detection of at least one microorganism by the circuitry, or to decrease a spacing between the first nanostructure and the second nanostructure responsive to detection of at least one microorganism by the circuitry.

Continuity (44)
Continuation 12931926 · Feb 14, 2011
Continuation In Part 12931924 · Feb 14, 2011
Continuation In Part 12931920 · Feb 14, 2011
Continuation In Part 12931925 · Feb 14, 2011
Continuation In Part 12931927 · Feb 14, 2011
Continuation In Part 12931921 · Feb 14, 2011
Continuation In Part 12931929 · Feb 14, 2011
Continuation In Part 12931930 · Feb 14, 2011
Continuation In Part 12931922 · Feb 14, 2011
Continuation In Part 12931928 · Feb 14, 2011
Continuation In Part 12931931 · Feb 14, 2011
Continuation In Part 12931923 · Feb 14, 2011
Continuation In Part 12927288 · Nov 10, 2010
Continuation In Part 12927285 · Nov 10, 2010
Continuation In Part 12927287 · Nov 10, 2010
Continuation In Part 12927296 · Nov 10, 2010
Continuation In Part 12927291 · Nov 10, 2010
Continuation In Part 12927295 · Nov 10, 2010
Continuation In Part 12927294 · Nov 10, 2010
Continuation In Part 12927290 · Nov 10, 2010
Continuation In Part 12927284 · Nov 10, 2010
Continuation In Part 12927297 · Nov 10, 2010
Continuation In Part 12800793 · May 21, 2010
Continuation In Part 12800791 · May 21, 2010
Continuation In Part 12800790 · May 21, 2010
Continuation In Part 12800792 · May 21, 2010
Continuation In Part 12800779 · May 21, 2010
Continuation In Part 12800766 · May 21, 2010
Continuation In Part 12800781 · May 21, 2010
Continuation In Part 12800778 · May 21, 2010
Continuation In Part 12800786 · May 21, 2010
Continuation In Part 12800780 · May 21, 2010
Continuation In Part 12800774 · May 21, 2010
Continuation In Part 12800798 · May 21, 2010
Continuation In Part 12660156 · Feb 19, 2010
Continuation In Part 12592976 · Dec 3, 2009
Continuation In Part 12380553 · Feb 27, 2009
Continuation In Part 12315884 · Dec 4, 2008
Continuation In Part 12315880 · Dec 4, 2008
Continuation In Part 12315882 · Dec 4, 2008
Continuation In Part 12315885 · Dec 4, 2008
Continuation In Part 12315881 · Dec 4, 2008
Continuation In Part 12315883 · Dec 4, 2008
Related Publication 20170007733A1 · Jan 12, 2017
Cited By (3)
US 12,540,915 US 12,557,989 US 12,644,858