IP Library Granted Patent US 11,166,743
Granted Patent B2
US 11,166,743 · App. 16/090,034 · Granted Nov 9, 2021

Devices and methods for cosmetic skin resurfacing

Inventors: Douglas Levinson (Sherborn, MA); Alec Ginggen (Medford, MA); Kristian DiMatteo (Waltham, MA); Robert Brik (Boston, MA); Jose Lizardi (Boston, MA); Nicholas Anderson (Boston, MA); Oivind Brockmeier (Boston, MA)
Assignee: Cytrellis Biosystems, Inc.
A61B17/3417A61B17/205A61B17/32053A61B2017/00761A61B2017/00792A61B2017/320064A61B2017/3454A61B2217/005
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Quick Facts
Patent No.
US 11,166,743
App. No.
16/090,034
Granted
Nov 9, 2021
Kind
B2
Abstract

Disclosed herein are apparatuses, kits, and methods for treating skin, such as skin tightening, e.g., reducing skin laxity, for treating conditions that would benefit from tissue area or volume reduction, skin restoration, skin tightening, skin lifting, and/or skin repositioning, and/or for generally improving skin function or appearance. Such apparatuses, kits, and methods include one or more hollow needles each having at least one prong and a mechanism for removing skin tissue portion(s) from the hollow needle(s).

Claims (36)

1. A needle assembly comprising:

a hollow needle having a lumen,

a z-actuator to displace the hollow needle from an uppermost position along a longitudinal axis of the hollow needle to extend (i) into the dermal layer, (ii) through the entire dermal layer to the junction of the dermal layer and the subcutaneous fat layer, or (iii) into the subcutaneous fat layer,

a tissue removal tool within the lumen to facilitate removal of portions of the skin tissue from the hollow needle, wherein the hollow needle comprises at least a first prong provided at a distal end of the hollow needle, and

an aspiration tube coupled to a low pressure source, wherein the aspiration tube has an opening that is disposed adjacent to the distal end of the hollow needle when the hollow needle is in the uppermost position, thereby aspirating the portions of the skin tissue into the aspiration tube when vacuum from the low pressure source is applied to the distal end of the hollow needle,

wherein the portions of the skin tissue are aspirated into the aspiration tube distally through only the distal end of the hollow needle.

2. The needle assembly of claim 1 , wherein the hollow needle further comprises a second prong.

3. The needle assembly of claim 1 , wherein an angle (a) between a lateral side of the first prong and the longitudinal axis of the hollow needle is at least about 20 degrees.

4. The needle assembly of claim 1 , wherein an angle (a) between a lateral side of the first prong and the longitudinal axis of the hollow needle is less than about 20 degrees.

5. The needle assembly of claim 2 , wherein an angle (a) between a lateral side of the second prong and the longitudinal axis of the hollow needle is at least about 20 degrees.

6. The needle assembly of claim 2 , wherein an angle (a) between a lateral side of the second prong and the longitudinal axis of the hollow needle is less than about 20 degrees.

7. The needle assembly of claim 1 , wherein the needle assembly is detachably attached to an x- and/or y-actuator.

8. The needle assembly of claim 1 , wherein the tissue removal tool is controllably translatable along the longitudinal axis of the hollow needle.

9. The needle assembly of claim 1 , wherein the tissue removal tool is a piston.

10. The needle assembly of claim 9 , wherein the piston comprises a round tip at a distal end of the piston.

11. The needle assembly of claim 1 , wherein the portions of the skin tissue removed by the tissue removal tool from the lumen of the hollow needle are substantially intact tissue portions.

12. The needle assembly of claim 1 , wherein the aspiration tube is coupled to a trap, wherein the low pressure source provides suction or vacuum at the distal end of the hollow needle of between about −8 mmHg and about −16 mmHg.

13. The needle assembly of claim 12 , wherein the low pressure source is a vacuum pump.

14. The needle assembly of claim 1 , comprising a low-pressure conduit coupled to the hollow needle, wherein the low-pressure conduit is connected to the low pressure source to generate suction in the hollow needle.

15. The needle assembly of claim 14 , wherein the low pressure source is a vacuum pump.

16. The needle assembly of claim 1 , comprising a spacer.

17. The needle assembly of claim 16 , wherein the spacer is attached to a cover, wherein the spacer is positioned between the cover and the skin tissue, and wherein the spacer is configured to control the depth of insertion of the hollow needle.

18. The needle assembly of claim 1 , wherein an angle (α) between a lateral side of at least one of the first prong and the second prong, and the longitudinal axis of the hollow needle is 10 degrees.

19. A needle assembly comprising:

a hollow needle having a lumen,

a z-actuator to displace the hollow needle from an uppermost position along a longitudinal axis of the hollow needle to extend (i) into the dermal layer, (ii) through the entire dermal layer to the junction of the dermal layer and the subcutaneous fat layer, or (iii) into the subcutaneous fat layer,

a tissue removal tool within the lumen to facilitate removal of cored portions of the skin tissue from the hollow needle, wherein the hollow needle comprises at least a first prong provided at a distal end of the hollow needle, and

an aspiration tube coupled to a low pressure source and a trap, wherein the aspiration tube has an opening that is disposed in proximity to the distal end of the hollow needle when the hollow needle is in the uppermost position such that when the low pressure source provides suction or vacuum at the distal end of the hollow needle of between about −8 mmHg and about −16 mmHg, cored tissue is removed from the distal end of the hollow needle,

wherein the opening is disposed closer to the distal end of the hollow needle than the proximal end of the hollow needle.

20. A needle assembly comprising:

a hollow needle having a lumen,

a z-actuator to displace the hollow needle from an uppermost position along a longitudinal axis of the hollow needle to extend (i) into the dermal layer, (ii) through the entire dermal layer to the junction of the dermal layer and the subcutaneous fat layer, or (iii) into the subcutaneous fat layer,

a tissue removal tool within the lumen to facilitate removal of portions of the skin tissue from the hollow needle, wherein the hollow needle comprises at least a first prong provided at a distal end of the hollow needle, and

an aspiration tube coupled to a low pressure source, wherein the aspiration tube has an opening that is disposed adjacent to the distal end of the hollow needle when the hollow needle is in the uppermost position, thereby aspirating the portions of the skin tissue into the aspiration tube when vacuum from the low pressure source is applied to the distal end of the hollow needle,

wherein the aspiration tube runs alongside the hollow needle, and

wherein the opening is disposed immediately adjacent the distal end of the hollow needle.

Assignments (2)
INTELLECTUAL PROPERTY SECURITY AGREEMENT Recorded Jan 10, 2024
From: CYTRELLIS BIOSYSTEMS, INC.
To: D1 CAPITAL PARTNERS, L.P.
Reel/Frame 066259/0117 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 9, 2018
From: LEVINSON, DOUGLAS; GINGGEN, ALEC; DIMATTEO, KRISTIAN; BRIK, ROBERT; LIZARDI, JOSE; ANDERSON, NICK; BROCKMEIER, OIVIND
To: CYTRELLIS BIOSYSTEMS, INC.
Reel/Frame 047101/0681 →
Continuity (2)
Provisional Application 62314748 · Mar 29, 2016
Related Publication 20190099199A1 · Apr 4, 2019
Cited By (3)
US 12,256,957 US 12,702,595 US 12,728,248