DEGRADABLE HAEMOSTAT COMPOSITION
20170258959 · 2017-09-14
Inventors
Cpc classification
C08B37/003
CHEMISTRY; METALLURGY
A61P7/04
HUMAN NECESSITIES
A61L15/64
HUMAN NECESSITIES
C08L5/08
CHEMISTRY; METALLURGY
C08L5/08
CHEMISTRY; METALLURGY
International classification
A61L24/00
HUMAN NECESSITIES
Abstract
In one aspect, the present invention includes a haemostat composition that includes a chitosan, chitosan salt or chitosan derivative, and a physiologically acceptable acid selected from the group consisting of lactic acid, formic acid, acetic acid, ascorbic acid, halogen acetic acids, propanoic acid, propenoic acid, acrylic acid, glyoxylic acid, pyruvic acid or a hydroxy propionic/butanoic acid, and combinations of any two or more thereof; or one or more acids selected from hydrochloric acid and sulphuric acid. The haemostat composition is able to safely gradually and fully degrade in a human or animal body within about 30 days and so can be utilised by physicians to stem a flow of blood and promote healing both after as well as during surgical procedures.
Claims
1. A haemostat composition comprising: a chitosan, chitosan salt or chitosan derivative; and a physiologically acceptable acid selected from the group consisting of lactic acid, formic acid, acetic acid, ascorbic acid, halogen acetic acids, propanoic acid, propenoic acid, acrylic acid, glyoxylic acid, pyruvic acid or a hydroxy propionic/butanoic acid, and combinations of any two or more thereof; or one or more acids selected from hydrochloric acid and sulphuric acid; wherein the haemostat composition is in a non-fibrous form, and is able to fully degrade in a human or animal body within about 30 days.
2. A haemostat composition according to claim 1, wherein the haemostat composition is in the form of granules, powder, a sheet, a foam, a freeze dried foam, a compressed foam, a film, a perforated film, beads, a gel, hydrogel sheets and amorphous hydrogel, or a laminate, or a combination of any two or more thereof.
3. A haemostat composition according to claim 1, wherein the haemostat composition is still present in the human or animal body after about 24 hours.
4. A haemostat composition according to claim 3, wherein complete degradation of the haemostat composition occurs after more than about 4 days but less than about 30 days.
5. A haemostat composition according to claim 4, wherein complete degradation of the haemostat composition occurs after more than about 7 days but less than about 30 days.
6. (canceled)
7. A haemostat composition according to claim 1, wherein the physiologically acceptable acid is present in an amount of between about 20% and about 70% by weight of the haemostat composition.
8. A haemostat composition according to claim 7, wherein the physiologically acceptable acid is present in an amount of between about 30% and about 60% by weight of the haemostat composition.
9. A haemostat composition according to claim 8, wherein the physiologically acceptable acid is present in an amount of between about 35% and about 55% by weight of the haemostat composition.
10-12. (canceled)
13. A haemostat composition according to claim 1, wherein the carboxylic acid is selected from lactic acids, acetic acids, and combinations thereof.
14. A haemostat composition according to claim 13, wherein the carboxylic acid is lactic acid.
15. (canceled)
16. A haemostat composition according to claim 1, wherein the haemostat composition comprises a chitosan salt.
17. A haemostat composition according to claim 16, wherein the chitosan salt comprises one or more salts selected from chitosan acetate, chitosan lactate, chitosan succinate, chitosan malate, chitosan acrylate, chitosan formate, chitosan ascorbate, chitosan fluoroacetate, chitosan chloroacetate, chitosan propanoate, chitosan glyoxylate, chitosan pyruvate, chitosan sulphate, or chitosan chloride.
18. A haemostat composition according to claim 17, wherein the chitosan salt comprises chitosan lactate.
19. A haemostat composition according to claim 1, wherein the haemostat composition comprises a chitosan salt, the physiologically acceptable acid is a carboxylic acid and is present in an amount of between about 45-60% by weight of the haemostat composition, and the haemostat composition is in the form of granules or powder.
20. A haemostat composition according to claim 1, wherein the haemostat composition is made without subjecting the composition to any heat treatment after the composition has been dried.
21. A haemostat composition according to claim 1, wherein the molecular weight of the chitosan used for the preparation of the haemostat composition is less than about 500,000.
22. A haemostat composition according to claim 1, wherein the viscosity of the chitosan used for the preparation of the haemostat composition is from about 40 to about 200 cps when measured at 20° C.
23. A haemostat composition according to claim 1, wherein the haemostat composition is sterilized.
24. A haemostat composition according to claim 1, further comprising one or more components selected from pharmaceutical agents; wetting agents; colouring agents; processing aids; bulking agents; absorbent polymers; antimicrobial agents; growth factors; cytokines; agents which absorb agents which delay healing; calcium; vitamin K; fibrinogen; thrombin; factor VII; factor VIII; clays; oxidised regenerated cellulose; gelatine; and/or collagen.
25. A method of manufacturing a haemostat composition according to claim 1.
26. A method according to claim 25, comprising coating the chitosan, chitosan salt or chitosan derivative with a physiologically acceptable acid.
27. A method according to claim 25, further comprising the step of washing the chitosan, chitosan salt or chitosan derivative to reduce the presence of endotoxins prior to the coating step, the washing comprising contacting the chitosan, chitosan salt or chitosan derivative with an alkali solution to form a mixture, and then leaving the mixture for a period of time before drying it.
28. A method of absorbing fluid discharged from a physiological target site, or of stemming a flow of a fluid discharged from a physiological target site, comprising applying to the physiological target site a haemostat composition according to claim 1.
29. Use of a haemostat composition according to claim 1 in absorbing fluid discharged from a physiological target, or in stemming a flow of a fluid discharged from a physiological target site.
30. A method according to claim 27, wherein the haemostat composition comprises a chitosan, chitosan salt or chitosan derivative, wherein the haemostat composition is in a non-fibrous form, and is able to fully degrade in a human or animal body within about 30 days; and wherein the haemostat composition is retained within a human or animal body after a medical procedure.
31. (canceled)
Description
EXAMPLES
Method
[0066] The total absorbency of the haemostat composition of the invention is determined using simulated wound fluid, serum and lysozyme solution. This is undertaken by determining the maximum absorbency of the materials by slowly adding fluid to the materials until no more can be absorbed. The amount of fluid
[0067] absorbed is calculated from the wet weight minus the dry weight.
[0068] Using the total absorbency volume for the material to be tested, this volume of lysozyme solution, simulated wound fluid or serum is decanted into a clean sealable beaker.
[0069] The haemostat composition is added into the solution (the solution volume being greater than the maximum absorbency of the haemostat composition), ensuring that the weight of product is not greater than the absorbency potential for the volume of fluid within the beaker.
[0070] The haemostat composition and solution are sealed and incubated at 37° C. (i.e. body temperature) for up to 30 days.
[0071] At each time point the solution is visually assessed to determine whether and to what degree the haemostat composition has degraded.
[0072] It is to be noted that at maximum absorbency at day 1, the degradation time is quicker than if the same volume of solution is applied gradually over a 5 day period.
[0073] The haemostat composition is considered to have completely degraded if the viscosity of the lysozyme solution, simulated wound fluid or serum falls below 10 cps as measured at 20° C. on a Brookfield viscometer, measured by setting the viscometer to spindle 62 and setting the spindle speed to 60 rpm, or if the fluid in the beaker becomes optically clear with no particles or insoluble matter visible to the human eye.
[0074] The degradation data after 1 day and 5 days is provided in Tables 1 and 2.
TABLE-US-00001 TABLE 1 Test Data at maximum absorbency at day 1 Testing/Examples Days to full degradation Sample SWF Lysozyme soln Hemcon gauze >30 days >30 days CG 1600 chitosan >30 days >30 days Carboxymethylated chitosan >30 days >30 days Chitosan/Viscose/Acid blend >30 days >30 days Celox (chitosan salt) >30 days >30 days Celox gauze >30 days >30 days Chitosan granules with 20% >30 days >30 days Acid Chitosan granules with 55% 1 day 1 day Acid
TABLE-US-00002 TABLE 2 Test Data at maximum absorbency at day 5 (gradually added fluid over 5 days) Testing/Examples Days to full degradation Sample SWF Lysozyme soln Hemcon gauze >30 days >30 days CG 1600 chitosan >30 days >30 days Carboxymethylated chitosan >30 days >30 days Chitosan/Viscose/Acid blend >30 days >30 days Celox (chitosan salt) >30 days >30 days Celox gauze >30 days >30 days Chitosan granules with 20% >30 days >30 days Acid Chitosan granules with 55% 5 day 5 day Acid
[0075] It can therefore be seen that the haemostat compositions according to the invention degrade effectively over a desired period of between 1 and 30 days in conditions designed to replicate those that would be encountered in the human or animal body, and would be able to safely remain in the human or animal body post-surgery to aid in reducing and preventing incidences of re-bleeding and promoting healing, before completely degrading and being excreted from the body naturally.
[0076] It is of course to be understood that the present invention is not intended to be restricted to the foregoing examples which are described by way of example only.