IP Library › Granted Patent US 10,744,308
Granted Patent B2
US 10,744,308 · App. 15/765,723 · Granted Aug 18, 2020

Low-profile ventriculoamniotic shunt for fetal aqueductal stenosis

Inventors: Yanfei Chen (Pittsburgh, PA); Young Jae Chun (Pittsburgh, PA); Stephen Emery (Pittsburgh, PA); Xinzhu Gu (Jefferson Hills, PA); William Wagner (Gibsonia, PA); Stephanie Greene (Glenshaw, PA)
Assignee: UNIVERSITY OF PITTSBURGH—OF THE COMMONWEALTH SYSTEM OF HIGHER EDUCATION
A61M27/006A61M25/00A61M27/00A61M39/24A61B5/031A61B5/055A61B5/4362A61L31/128A61M2205/0266A61M2207/00
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Quick Facts
Patent No.
US 10,744,308
App. No.
15/765,723
Granted
Aug 18, 2020
Kind
B2
Abstract

The invention relates to an in-utero ventriculoamniotic shunting device that includes a shunt tube ( 26 ) composed of polymer composite and having metallic wire embedded therein, one or more anchors ( 30 ) composed of superelastic wire, e.g., thermal shape-set nitinol structures, that are mechanically attached to an exterior surface of the shunt tube ( 26 ), and a one-way passive valve ( 32 ) composed of a thin polymer membrane. The anchors ( 30 ) are effective to prevent migration and dislodgement of the shunting device following its deployment, and the valve ( 32 ) is effective to prevent the backflow of amniotic fluid ( 23 ).

Claims (48)

1. An in-utero ventriculoamniotic shunting device, comprising:

a shunt tube ( 26 ), comprising:

an exterior surface;

a first end;

an opposite second end;

a length;

an inner diameter;

an outer diameter;

a composite that forms the inner diameter and the outer diameter, the composite comprising:

one or more polymer layers; and

metallic wire embedded in the one or more polymer layers;

one or more anchors ( 28 ) mechanically attached to the exterior surface of the shunt tube ( 26 ), the one or more anchors ( 28 ) comprising:

nitinol wire configured in a shape that extends outwardly from the exterior surface of the shunt tube ( 26 ) to prevent migration of the shunting device; and

a mechanism ( 30 ) to connect the nitinol wire to the exterior surface of the shunt tube ( 26 ); and

a one-way passive valve ( 32 ), comprising:

a membrane cover mechanically connected to a portion of a perimeter of the opposite second end of the shunt tube ( 26 ) in a hinge-like configuration.

2. The device of claim 1 , wherein the length of the shunt tube ( 26 ) is from about 2 to about 10 cm.

3. The device of claim 1 , wherein the inner diameter of the shunt tube ( 26 ) is from about 0.5 to about 1.5 mm.

4. The device of claim 1 , wherein the outer diameter of the shunt tube ( 26 ) is from about 1.0 to about 3.0 mm.

5. The device of claim 1 , wherein the nitinol wire is configured in the shape of a coil ( 5 ) having a plurality of spirals formed on the exterior surface and wrapped around the outer diameter of the shunt tube ( 26 ).

6. The device of claim 1 , wherein the nitinol wire is configured in the shape of two curves ( 10 ) extending outwardly from the exterior surface of the shunt tube ( 26 ).

7. The device of claim 1 , wherein the one or more anchors ( 30 ) is mechanically attached to the outside surface of the shunt tube at a position approximately mid-point on the length of the tube.

8. The device of claim 1 , wherein the one or more anchors ( 30 ) has a length of about 1 to about 4 cm.

9. The device of claim 1 , wherein the valve ( 32 ) comprises a thin polymeric membrane.

10. The device of claim 9 , wherein the valve ( 32 ) comprises poly(ester urethane) urea.

11. The device of claim 10 , wherein the poly(ester urethane) urea is fabricated by electrospinning.

12. A method of ventriculoamniotic shunting for fetal isolated aqueductal stenosis, comprising:

prenatally detecting and diagnosing aqueductal stenosis in a fetus;

forming a shunting device, comprising:

obtaining a shunt tube ( 26 ), comprising:

an exterior surface;

a first end having an opening;

an opposite second end having an opening;

a length;

an inner diameter;

an outer diameter;

a composite that forms the inner diameter and the outer diameter, the composite comprising:

one or more polymer layers; and

metallic wire embedded in the one or more polymer layers;

mechanically attaching one or more anchors ( 28 ) to the exterior surface of the shunt tube ( 26 ), comprising:

fabricating nitinol wire;

thermally configuring the nitinol wire in a shape that extends outwardly from the exterior surface of the shunt tube ( 26 ) for preventing migration of the shunting device; and

employing a mechanism ( 30 ) for connecting the nitinol wire to the exterior surface of the shunt tube ( 26 ); and

mechanically attaching a membrane cover ( 32 ) to a portion of a perimeter of the opposite second end of the shunt tube ( 26 ) in a hinge-like configuration;

introducing the shunting device in-utero through a skull ( 22 ) and into a brain ( 24 ) of the fetus, such that the first end of the shunt tube ( 26 ) is positioned in the skull ( 22 ) and the opposite second end of the shunt tube ( 26 ) is positioned in an amniotic sac ( 23 ) outside of the skull ( 22 );

allowing cerebrospinal fluid in the brain ( 24 ) to flow into the first end and through the shunt tube ( 26 );

pushing outward the membrane cover ( 32 ) by the flow of cerebrospinal fluid through the shunt tube ( 26 ); and

discharging the cerebrospinal fluid through the opposite second end of the tube ( 26 ) into the amniotic sac ( 23 ).

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 9, 2019
From: CHEN, YANFEI; CHUN, YOUNGJAE; EMERY, STEPHEN; GU, XINZHU; WAGNER, WILLIAM; GREENE, STEPHANIE
To: UNIVERSITY OF PITTSBURGH-OF THE COMMONWEALTH SYSTEM OF HIGHER EDUCATION
Reel/Frame 050007/0747 →
Continuity (2)
Provisional Application 62241281 · Oct 14, 2015
Related Publication 20180296810A1 · Oct 18, 2018