Preparation of Stabilized Catalase Enzymes with a Surfactant
There is provided a method of producing a stabilized microcrystalline cellulose powder containing catalase enzyme. In the method, cellulose is thoroughly mixed with phosphate borate and catalase, rinsed with water and a surfactant added. The stabilized powder may be mixed with various skin solutions (lotions, ointments and the like). The catalase enzyme can catalyze the reaction of peroxide to oxygen.
1 - 3 . (canceled)
4 . A microcrystalline cellulose substrate adsorbed with a catalase enzyme and further comprising a surfactant, wherein the catalase enzyme exhibits a decreased loss in catalase activity compared to a catalase enzyme not adsorbed on the microcrystalline cellulose substrate with the surfactant, wherein the catalase enzyme adsorbed on the microcrystalline cellulose substrate with the surfactant has an activity at 25° C. between 500 IU/g and 1,000,000 IU/g, wherein the catalase enzyme adsorbed on the microcrystalline cellulose substrate with the surfactant is stable for up to 12 weeks at 35° C. after thermal cycling at 40° C. for 72 hours and 55° C. for 6 hours.
5 . A skin hydrator lotion comprising lotion and the microcrystalline cellulose substrate of claim 4 .
6 . The microcrystalline cellulose substrate of claim 4 , wherein the catalase enzyme adsorbed on the microcrystalline cellulose substrate has a molecular weight of less than 500,000 Daltons.
7 . The microcrystalline cellulose substrate of claim 4 , wherein the catalase enzyme adsorbed on the microcrystalline cellulose substrate includes manganese atoms.
8 . The microcrystalline cellulose substrate of claim 4 , wherein said catalase enzyme adsorbed on the microcrystalline cellulose substrate is obtained from fungus.
9 . The microcrystalline cellulose substrate of claim 8 , wherein the fungus is Aspergillus niger.
10 . The microcrystalline cellulose substrate of claim 4 , wherein the surfactant comprises Tween 20.
11 . The microcrystalline cellulose substrate of claim 4 , wherein the catalase enzyme adsorbed on the microcrystalline cellulose substrate can decompose from 60% to 95% of hydrogen peroxide after thermal cycling when the ratio of the catalase enzyme to hydrogen peroxide is 1:1.
12 . The microcrystalline cellulose substrate of claim 4 , wherein the microcrystalline cellulose substrate further comprises phosphate and borate.