IP Library Granted Patent US 10,342,966
Granted Patent B2
US 10,342,966 · App. 14/708,778 · Granted Jul 9, 2019

Devices for targeted delivery of therapeutic implants

Inventors: Gautam N. Shetty (Pikesville, MD); Aaron M. Weir (York Haven, PA); Christian P. Brandt (York, PA); Lou Castagna (Middletown, PA); Tod H. Brenner (Pequea, PA)
Assignee: UNL Holdings LLC
A61M37/0069A61M5/32A61M5/3232A61M5/3234A61M2005/3131A61M2005/323A61M2005/3236F04C2270/041Y10T29/49826
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Quick Facts
Patent No.
US 10,342,966
App. No.
14/708,778
Granted
Jul 9, 2019
Kind
B2
Abstract

A barrel adapter mountable to a syringe barrel includes a barrel tip, a needle assembly, a stylet assembly slidably disposed within a needle lumen of the needle assembly, and a plug within the lumen of the needle. An implant delivery syringe includes a barrel, a plunger assembly, and the barrel adapter. The syringe may include a needle retraction mechanism having a biasing member and an actuable locking arrangement. When the actuable locking arrangement is actuated, the biasing member causes the needle to axially translate over the stylet during retraction to dislodge the plug and cause delivery of an implant to a target location. The plug may be a biodegradable polymer plug such as a water-soluble polymer, PLGA, and/or CARP. The stylet may be retracted following delivery. Methods of assembling implant delivery syringes with drug implants are also provided.

Claims (19)

1. A barrel adapter for a delivery syringe having a barrel and a plunger assembly adapted to move within the barrel, the adapter comprising:

a barrel tip adapted to be sealingly engaged with a distal end of the barrel,

a needle assembly including a needle and a needle hub through which the needle extends, the needle having a lumen, the needle assembly being disposed at least partially within the barrel tip, the needle adapted to move from an injection position in which the needle extends from a distal end of the barrel tip to a retracted position,

a stylet assembly including a stylet and a stylet disc, the stylet being axially slidable and at least partially disposed within the needle lumen, the stylet being proximally disposed and spaced from a distal tip of the needle when the needle is in the injection position,

a drug implant within the lumen of the needle;

a plug within the lumen of the needle located distally of the drug implant, and

a needle retraction mechanism, the needle retraction mechanism including a biasing member and an actuable locking arrangement, the locking arrangement being disposed to maintain the biasing member in an energized position when the locking arrangement is locked and to release the biasing member when actuated, the biasing member being disposed to provide relative motion of the needle and stylet from the injection position to the retracted position when the biasing member is released from the energized position, the barrel tip configured to sealingly engage an inner perimeter of the barrel to mount the needle assembly, the stylet assembly, and the needle retraction mechanism within the barrel through a distal end of the barrel.

2. The barrel adapter of claim 1 , wherein the plug is a biodegradable polymer plug from the group consisting of water-soluble polymers, PLGA, CAHP, and combinations thereof.

3. The barrel adapter of claim 1 further comprising a stylet retraction mechanism.

4. An automatically retractable implant delivery syringe comprising;

a barrel having a distal end and a proximal end,

a plunger assembly adapted to move within the barrel,

a barrel tip sealingly engaged with a distal end of the barrel,

a needle assembly including a needle and a needle hub through which the needle extends, the needle having a lumen, the needle assembly being disposed at least partially within the barrel tip, the needle adapted to move from an injection position in which the needle extends from a distal end of the barrel tip to a retracted position,

a stylet assembly including a stylet and a stylet disc, the stylet being axially slidable and at least partially disposed within the needle lumen and is proximally disposed spaced from a distal tip of the needle when the needle is in the injection position,

a drug implant within the lumen of the needle;

a plug within the lumen of the needle located distally of the drug implant, and

a needle retraction mechanism, the needle retraction mechanism including a biasing member and an actuable locking arrangement, the locking arrangement being disposed to maintain the biasing member in an energized position when the locking arrangement is locked and to release the biasing member when actuated, the biasing member being disposed to provide relative motion of the needle and stylet from the injection position to the retracted position when the biasing member is released from the energized position, the barrel tip configured to sealingly engage an inner perimeter of the barrel to mount the needle assembly, the stylet assembly, and the needle retraction mechanism within the barrel through a distal end of the barrel.

5. The syringe of claim 4 wherein the plug is a biodegradeable polymer plug from the group consisting of water-soluble polymers, PLGA, CARP, and combinations thereof.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 9, 2025
From: UNL HOLDINGS LLC
To: AMGEN INC.
Reel/Frame 073057/0641 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 4, 2017
From: UNILIFE CORPORATION; UNILIFE MEDICAL SOLUTIONS, INC.; UNITRACT SYRINGE PTY LTD ACN 101 059 723; UNILIFE MEDICAL SOLUTIONS PTY LIMITED ACN 008 071 403
To: UNL HOLDINGS LLC
Reel/Frame 044117/0961 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 22, 2017
From: SHETTY, GAUTAM N.; WEIR, AARON M.; BRANDT, CHRISTIAN P.; CASTAGNA, LOU; BRENNER, TOD H.
To: UNITRACT SYRINGE PTY LTD
Reel/Frame 043663/0237 →
Continuity (7)
Division 13775155 · Feb 23, 2013
Provisional Application 61602277 · Feb 23, 2012
Provisional Application 61639898 · Apr 28, 2012
Provisional Application 61667010 · Jul 2, 2012
Provisional Application 61677186 · Jul 30, 2012
Provisional Application 61767369 · Feb 21, 2013
Related Publication 20150238745A1 · Aug 27, 2015