Superabsorbent materials and methods of making the same
View Patent ↗Provided are superabsorbent materials composed of agar, and one or more water-soluble natural polysaccharides, and dietary compositions containing such superabsorbent materials. The disclosed superabsorbent materials have various food and therapeutic applications and can be used as loading vehicles for nutrients and therapeutic agents. Also provided are methods for preparing such superabsorbent materials.
1. A method of preparing a superabsorbent material that comprises two or more water-soluble natural polysaccharides, comprising:
Combining the two or more water-soluble natural polysaccharides with water to form a mixture;
heating the mixture until the two or more polysaccharides are completely dissolved;
cooling the mixture to form a gel;
freezing the gel to obtain a frozen gel;
thawing the frozen gel to obtain a thawed gel; and
drying the thawed gel at a temperature of between 50° C. and 60° C. to obtain the superabsorbent material;
wherein the superabsorbent material has a volume expansion ratio of at least 5 in deionized water at 25° C.
2. The method of claim 1 , wherein the heating of the mixture is performed at a temperature of between 80° C. and 100° C.
3. The method of claim 1 , further comprising pulverizing the superabsorbent material to obtain the superabsorbent material in a powder form.
4. A method of preparing a superabsorbent material that comprises two or more water-soluble natural polysaccharides, comprising:
combining the two or more water-soluble natural polysaccharides with water to form a mixture;
heating the mixture until the two or more polysaccharides are completely dissolved;
cooling the mixture to form a gel;
freezing the gel to obtain a frozen gel;
thawing the frozen gel to obtain a thawed gel;
filtering the thawed gel to obtain a filter cake gel; and
drying the filter cake gel to obtain the superabsorbent material;
wherein the superabsorbent material has a volume expansion ratio of at least 5 in deionized water at 25° C.
5. The method of claim 4 , wherein the filter cake gel is dried by air drying, heat drying, freeze-drying, vacuum drying, or a combination thereof.
6. The method of claim 1 , wherein the two or more water-soluble natural polysaccharides are selected from the group consisting of agar, konjac gum, carrageenan, locust bean gum, xanthan gum, tamarind seed gum and guar gum carrageenan, alginate, pectin, gellan gum, chitosan, Arabic gum, a soluble starch, and a combination thereof.
7. The method of claim 1 , wherein the two or more water-soluble natural polysaccharides form a porous structure without any chemical cross-linking.
8. The method of claim 1 , wherein the superabsorbent material is capable of expanding in volume in less than 2 hours, and maintaining a well-defined shape for at least 24 hours, under a neutral pH condition or a human gastric pH condition, and at room temperature or at human body temperature.
9. The method of claim 1 , wherein the superabsorbent material has an absorption ratio of at least 10 or up to 200 in deionized water at 25° C.
10. The method of claim 1 , wherein the superabsorbent material has a volume expansion ratio of at least 5 or up to 100 in artificial gastric juice at 37° C.
11. The method of claim 1 , further comprising formulating the superabsorbent material into a dietary composition.
12. The method of claim 1 , wherein the superabsorbent material has an absorption ratio of at least 5 or up to 100 in artificial gastric juice at 37° C.
13. The method of claim 1 , wherein the superabsorbent material comprises agar and one or more water-soluble natural polysaccharides.
14. A method of preparing a superabsorbent material that comprises agar, carrageenan, and konjac gum, comprising:
combining agar, carrageenan, and konjac gum with water to form a mixture;
heating the mixture until the agar, carrageenan, and konjac gum are completely dissolved;
cooling the mixture to form a gel;
freezing the gel to obtain a frozen gel;
thawing the frozen gel to obtain a thawed gel; and
drying the thawed gel to obtain the superabsorbent material;
wherein the superabsorbent material has a volume expansion ratio of at least 5 in deionized water at 25° C.; and
wherein the superabsorbent material comprises at least 10% by weight of agar or at least 20% by weight of carrageenan; or wherein the superabsorbent material comprises agar, carrageenan, and konjac gum at a weight ratio of 10:1:1, 1:1:1, 1:1:2, 1:2:1, 2:1:1, or 2:5:5.
15. The method of claim 14 , wherein the superabsorbent material comprises at least 10% by weight of agar.
16. The method of claim 14 , wherein the superabsorbent material comprises at least 20% by weight of carrageenan.
17. The method of claim 14 , wherein the superabsorbent material comprises agar, carrageenan, and konjac gum at a weight ratio of 10:1:1, 1:1:1, 1:1:2, 1:2:1, 2:1:1, or 2:5:5.
18. The method of claim 14 , wherein the superabsorbent material comprises agar, carrageenan, and konjac gum at a weight ratio of 1:1:1, 1:1:2, or 1:2:1.
19. The method of claim 1 , wherein the superabsorbent material has an absorption ratio of at least 20 and up to 200 in deionized water at 25° C.
20. The method of claim 1 , wherein the superabsorbent material has an absorption ratio of at least 50 and up to 200 in deionized water at 25° C.
21. The method of claim 1 , wherein the superabsorbent material has an absorption ratio of at least 100 and up to 200 in deionized water at 25° C.