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