IP Library Granted Patent US 11,266,335
Granted Patent B2
US 11,266,335 · App. 17/019,110 · Granted Mar 8, 2022

Medical device inserters and processes of inserting and using medical devices

Inventors: Manuel Luis Donnay (San Francisco, CA); Tuan Nguyen (Dublin, CA); Louis G. Pace (San Carlos, CA); Peter G. Robinson (Alamo, CA)
Assignee: ABBOTT DIABETES CARE INC.
A61B5/150022A61B5/1411A61B5/14503A61B5/14532A61B5/14542A61B5/14546A61B5/157A61B5/1513A61B5/1519A61B5/15087A61B5/15107A61B5/15113A61B5/15117A61B5/15186A61B5/15194A61B5/150259A61B5/150282A61B5/150396A61B5/150419A61B5/150427A61B5/150511A61B5/6848A61B5/6865A61B17/34A61B17/3468A61M5/158A61B5/00A61B5/0002A61B5/01A61B5/15016A61B5/150732A61B2017/00384A61B2560/063A61M2005/1585
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Quick Facts
Patent No.
US 11,266,335
App. No.
17/019,110
Granted
Mar 8, 2022
Kind
B2
Abstract

An apparatus for insertion of a medical device in the skin of a subject is provided, as well as methods of inserting medical devices. Embodiments include removing a substantially cylindrical cap from an inserter to expose a substantially cylindrical sleeve, removing a cover from a substantially cylindrical container holding sensor components, and fitting the sensor components into the inserter.

Claims (42)

1. A glucose monitoring assembly, the assembly comprising:

(1) an inserter comprising

a sharp configured to insert a portion of a glucose sensor into a subject; and

(2) an on body electronics unit, comprising:

an on body electronics unit housing comprising a plurality of recesses disposed on a periphery of the on body electronics unit housing, wherein the plurality of recesses comprises a first recess in a spaced relation to a second recess, and wherein the plurality of recesses is detachably engaged with the inserter;

the glucose sensor; and

on body electronics coupled with the glucose sensor, wherein the on body electronics is disposed within the on body electronics unit housing, and wherein the on body electronics includes a processor, memory, a power supply, and wireless communication circuitry configured to wirelessly communicate data indicative of a glucose level,

wherein the inserter is configured to advance the on body electronics unit and the sharp from a proximal position entirely within the inserter to a distal position, and

wherein the inserter is further configured to retract the sharp from the distal position to a retracted position entirely within the inserter.

2. The glucose monitoring assembly of claim 1 , wherein the inserter further comprises a plurality of gripping arms.

3. The glucose monitoring assembly of claim 2 , wherein each gripping arm of the plurality of gripping arms is configured to be engaged with a corresponding recess of the plurality of recesses of the on body electronics unit housing when the on body electronics unit is in the proximal position, and

wherein the each gripping arm of the plurality of gripping arms is further configured to be disengaged from the corresponding recess of the plurality of recesses when the on body electronics unit is in the distal position.

4. The glucose monitoring assembly of claim 2 , wherein each gripping arm of the plurality of gripping arms is biased in a radially outward direction.

5. The glucose monitoring assembly of claim 2 , wherein the inserter further comprises a plurality of interior surfaces, wherein each interior surface of the plurality of interior surfaces is configured to hold a corresponding gripping arm of the plurality of gripping arms against a corresponding recess of the plurality of recesses of the on body electronics unit housing when the on body electronics unit is in the proximal position.

6. The glucose monitoring assembly of claim 5 , wherein the inserter is further configured such that the each interior surface of the plurality of interior surfaces is not in contact with the corresponding gripping arm of the plurality of gripping arms when the on body electronics unit is in the distal position.

7. The glucose monitoring assembly of claim 6 , wherein the corresponding gripping arm of the plurality of gripping arms is configured to deflect in a radially outward direction when the each interior surface of the plurality of interior surfaces is not in contact with the corresponding gripping arm of the plurality of gripping arms.

8. The glucose monitoring assembly of claim 2 , wherein each gripping arm of the plurality of gripping arms comprises an engagement boss configured to engage with a corresponding recess of the plurality of recesses of the on body electronics unit housing when the on body electronics unit is in the proximal position.

9. The glucose monitoring assembly of claim 8 , wherein the engagement boss is disposed on a tip portion of the gripping arm.

10. The glucose monitoring assembly of claim 8 , wherein the engagement boss comprises a conical shape.

11. The glucose monitoring assembly of claim 1 , wherein each recess of the plurality of recesses comprises a concave portion.

12. The glucose monitoring assembly of claim 1 , wherein each recess of the plurality of recesses is disposed on a side wall of the on body electronics unit housing.

13. The glucose monitoring assembly of claim 1 , wherein the inserter further comprises a driver disposed in the inserter, wherein the driver is configured to apply a force that retracts the sharp after the sharp reaches the distal position.

14. The glucose monitoring assembly of claim 1 , further comprising a cap removably attached to a distal portion of the inserter.

15. The glucose monitoring assembly of claim 1 ,

wherein the inserter further comprises an inserter housing and a sheath and wherein the inserter housing is configured to move in a downward direction towards a skin surface relative to the sheath in response to an application of force on the inserter housing, and

wherein the sheath is configured to remain stationary relative to the skin surface in response to the application of force on the inserter housing.

16. The glucose monitoring assembly of claim 1 , wherein the on body electronics unit further comprises a sensor hub,

wherein the glucose sensor comprises a distal sensor portion and a proximal sensor portion,

wherein the distal sensor portion is configured to sense the glucose level of the subject,

wherein the proximal sensor portion is engaged with the sensor hub, and

wherein the distal sensor portion is substantially orthogonal to the proximal sensor portion.

17. The glucose monitoring assembly of claim 1 , wherein the on body electronics comprises an aperture, and wherein the sharp extends through the aperture of the on body electronics.

18. The glucose monitoring assembly of claim 17 , wherein the aperture of the on body electronics is a first aperture, wherein the on body electronics unit housing further comprises a top surface and a bottom surface, wherein the top surface comprises a second aperture, wherein the bottom surface comprises a third aperture, and wherein the sharp extends through the first aperture, the second aperture, and the third aperture when the on body electronics unit is in the proximal position.

19. The glucose monitoring assembly of claim 1 , wherein the inserter further comprises a distal end configured to be placed on a skin surface of the subject before advancement of the on body electronics unit and the sharp.

20. The glucose monitoring assembly of claim 19 , wherein the distal end of the inserter defines a plane, and wherein a bottom surface of the on body electronics unit housing is parallel to the plane when the on body electronics unit and the sharp are in the proximal position.

21. The glucose monitoring assembly of claim 1 , wherein at least a portion of the on body electronics is in a low power state when the on body electronics unit is in the proximal position.

22. The glucose monitoring assembly of claim 1 , further comprising an adhesive portion configured to secure the on body electronics unit housing to a skin surface of the subject.

23. The glucose monitoring assembly of claim 1 , wherein at least a portion of the on body electronics is in a no power state when the on body electronics unit is in the proximal position.

24. The glucose monitoring assembly of claim 1 , wherein at least a portion of the on body electronics is in an inactive mode when the on body electronics unit is in the proximal position.

25. The glucose monitoring assembly of claim 1 , wherein the on body electronics unit and the sharp are configured to advance in a linear direction when advancing from the proximal position within the inserter to the distal position.

26. The glucose monitoring assembly of claim 1 , wherein a distance between the on body electronics unit housing when the on body electronics unit is in the proximal position and the on body electronics unit housing when the on body electronics unit is in the distal position is greater than a maximum height of the on body electronics unit housing.

27. The glucose monitoring assembly of claim 1 , wherein the sharp is further configured to pierce a skin surface of the subject at an angle substantially perpendicular to the skin surface of the subject.

Assignments (2)
CORRECTIVE ASSIGNMENT TO CORRECT THE FIRST CONVEYING PARTY NAME AND EXECUTION DATE PREVIOUSLY RECORDED AT REEL: 53858 FRAME: 315. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Sep 28, 2020
From: DONNAY, MANUEL LUIS; NGUYEN, TUAN; PACE, LOUIS G.; ROBINSON, PETER G.
To: ABBOTT DIABETES CARE INC.
Reel/Frame 054250/0179 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 23, 2020
From: CURRY, SAMUEL MASON; NGUYEN, TUAN; PACE, LOUIS G.; ROBINSON, PETER G.
To: ABBOTT DIABETES CARE INC.
Reel/Frame 053858/0315 →
Continuity (8)
Continuation 16002847 · Jun 7, 2018
Continuation 13436768 · Mar 30, 2012
Continuation 13071461 · Mar 24, 2011
Provisional Application 61411262 · Nov 8, 2010
Provisional Application 61361374 · Jul 2, 2010
Provisional Application 61345562 · May 17, 2010
Provisional Application 61317243 · Mar 24, 2010
Related Publication 20210007651A1 · Jan 14, 2021
Cited By (27)
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