IP Library Patent Application 11541988
Patent Application
App. No. 11/541,988

Supple tissue dressing assemblies, systems, and methods formed from softened hydrophilic polymer sponge structures such as chitosan

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Quick Facts
Patent No.
US None
App. No.
11/541,988
Abstract

Supple tissue dressing assemblies are formed from hydrophilic polymer sponge structures, such as chitosan. The supple tissue dressing assemblies are characterized by suppleness or multi-dimensional flexibility. The assemblies can be flexed, bent, folded, twisted, and even rolled upon itself before and during use, without creasing, cracking, fracturing, otherwise compromising the integrity and mechanical and/or therapeutic characteristics of the assemblies.

Claims (44)

1 . A supple sponge structure adapted for placement in contact with animal tissue comprising a biocompatible hydrophilic polymer form, the form having been softened by a mechanical softening device comprising a plurality of spaced apart upper and lower rolling surfaces defining between them an undulating path sized and arranged to knead the form along an axis.

2 . A supple sponge structure according to claim 1 , wherein the form has, after softening, a resistance to flexure expressed as a dry Gurley stiffness value (in units of milligrams) of not greater than about 5000.

3 . A supple sponge structure according to claim 1 , wherein the form has, after softening, a dry Gurley stiffness value (in units of milligrams) of not greater than about 2000.

4 . A supple sponge structure according to claim 3 , wherein the form has, after softening, a dry suppleness-to strength ratio of not greater than about 210, the dry suppleness-to-strength ratio comprising a ratio between the dry Gurley stiffness value (in units of milligrams) and tensile strength (in units of Newtons).

5 . A supple sponge structure according to claim 1 , wherein the form has, after softening, a dry Gurley stiffness value (in units of milligrams) of not greater than about 1000.

6 . A supple sponge structure according to claim 5 , wherein the form has, after softening, a dry suppleness-to strength ratio of not greater than about 210, the dry suppleness-to-strength ratio comprising a ratio between the Gurley stiffness value (in units of milligrams) and tensile strength (in units of Newtons).

7 . A supple sponge structure according to claim 1 , wherein the form has an initial sponge density that is increased to a densified sponge density by application of mechanical pressure.

8 . A supple sponge structure according to claim 7 , wherein the densified sponge density comprises about 0.1 g/cm 3 to about 0.5 g/cm 3 .

9 . A supple sponge structure according to claim 8 , wherein the densified sponge density comprises about 0.2 g/cm 3 .

10 . A supple sponge structure according to claim 7 , wherein the form has, after softening, a dry stiffness-to-strength ratio of not greater than about 50,000, the dry suppleness-to-density ratio comprising a ratio between a Gurley stiffness value (in units of milligrams) and the densified sponge density (in units of g/cm 3 ).

11 . A supple sponge structure according to claim 10 , wherein the dry suppleness-to-density ratio is not greater than about 20,000.

12 . A supple sponge structure according to claim 10 , wherein the dry suppleness-to-density ratio is not greater than about 10,000.

13 . A supple sponge structure according to claim 1 , wherein the form, after softening, has a sponge thickness of not greater than about 8 mm.

14 . A supple sponge structure according to claim 1 , wherein the form has an initial sponge thickness of not greater than about 8 mm that is increased to a densified sponge thickness of about 0.1 g/cm 3 to about 0.5 g/cm 3 by application of mechanical pressure.

15 . A supple sponge structure according to claim 1 , wherein the biocompatible hydrophilic polymer solution comprises a chitosan material.

16 . A supple sponge structure according to claim 1 , wherein the form is softened by a second softening device along a second axis.

17 . A method comprising

providing a supple sponge structure as defined in claim 1 , and

placing the supple sponge structure in contact with animal tissue.

18 . A method according to claim 17

wherein placing the supple sponge structure in contact with animal tissue includes stuffing the supple sponge structure into a wound tract.

19 . A method of making the supple sponge structure as defined in claim 1 comprising

providing a biocompatible hydrophilic polymer solution,

phase separating the hydrophilic polymer solution into the form by freezing from a room temperature to a freezing temperature at an overall cooling rate that is less than about 0.5° C./min, and drying the form.

20 . A method of making a supple sponge structure comprising

providing a biocompatible hydrophilic polymer solution,

phase separating the hydrophilic polymer solution into a form,

drying the form, and

softening the form by passage through a mechanical softening device comprising a plurality of spaced apart upper and lower rolling surfaces defining between them an undulating path sized and arranged to knead the form along an axis.

21 . A method according to claim 20

wherein phase separating includes freezing from a room temperature to a freezing temperature at an overall cooling rate that is less than about 0.5° C./min.

22 . A method according to claim 20

further including softening the form along a second axis different than the first defined axis.

23 . A supple sponge structure adapted for placement in contact with animal tissue comprising a biocompatible hydrophilic polymer form, the form having been softened by a mechanical softening device comprising a plurality of spaced apart upper and lower rolling surfaces defining between them an undulating path sized and arranged to knead the form along an axis, the form being characterized by a suppleness that allows rolling the initial form upon itself without fracture into a roll form having a diameter less than either the width or the length.

24 . A supple sponge structure according to claim 23 , wherein the form has thickness of between 0.25 mm and about 4 mm.

25 . A supple sponge structure according to claim 23 , wherein the form has a thickness of about 0.9 mm.

26 . A method comprising

providing a supple sponge structure as defined in claim 23 , and

placing the supple sponge structure in contact with animal tissue.

27 . A method according to claim 26

wherein placing the supple sponge structure in contact with animal tissue includes stuffing the supple sponge structure into a wound tract.

28 . A method of treating an infection site involving Staphylococcus aureus bacteria and/or methicillin resistant Staphylococcus aureus bacteria comprising

providing a sponge structure comprising chitosan material,

placing the sponge structure on the infection site.

Assignments (2)
NOTICE OF GRANT OF SECURITY INTEREST Recorded Feb 25, 2008
From: HEMCON MEDICAL TECHNOLOGIES, INC.
To: BANK OF AMERICA, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 020553/0614 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 21, 2006
From: HOPMAN, LANCE DAVID; PEPPER, CLINTON BOYD; MIHALACHE, DRAGOS HORIA; RADOVAN, MICHAEL S.; MCCARTHY, SIMON J.
To: HEMCON MEDICAL TECHNOLOGIES, INC.
Reel/Frame 018735/0437 →