Phycocyanin protective agent and preparation method thereof, phycocyanin composition and moisturizing lotion
A technology of phycocyanin and protective agent, which is applied in the direction of cosmetics, cosmetic preparations, skin care preparations, etc., can solve the problems of complicated operation steps and difficult phycocyanin dissolution process, so as to reduce precipitation, inhibit bacterial growth, prevent Aggregate effect
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[0044] The present invention also provides a preparation method of a phycocyanin protective agent, comprising the step of mixing glycerin, butanediol, sodium chloride and sodium benzoate.
[0045] The present invention also provides a phycocyanin composition, comprising the phycocyanin protective agent of the present invention and phycocyanin, the weight ratio of the phycocyanin protective agent to phycocyanin is 10-30:0.01, preferably 15 -25:0.01;
[0046] Preferably, the phycocyanin is derived from one or a combination of two or more of Spirulina bonate, Spirulina platensis and A. water blooms.
[0047] The phycocyanin composition of the present invention can be applied in cosmetics. The cosmetics may include water-based cosmetics, emulsion-based cosmetics, and cream-based cosmetics; preferably water-based cosmetics.
[0048] Wherein, the water-based cosmetics include: lotion or cleansing water; the emulsion-based cosmetics include: moisturizing lotion, skin care essence, ...
Embodiment 1
[0067] Dissolve 0.1g of phycocyanin in 1000g of water to form a 100ppm aqueous solution of phycocyanin, and measure its absorbance A 0 . Add 12g glycerol, 9g butanediol, 3g sodium chloride and 0.15g sodium benzoate successively in reactor, wherein, the weight ratio of glycerol, butanediol, sodium chloride and sodium benzoate is 80:60:20:1. Then add the prepared phycocyanin aqueous solution to 150 g to obtain the aqueous solution of phycocyanin composition I. Measure the absorbance A of the aqueous solution of phycocyanin composition I at 620nm (620nm is the characteristic absorption peak of phycocyanin, the same below) 1 , as shown in Table 1 below. Then the aqueous solution of phycocyanin composition I was evenly divided into 3 PET bottles, and placed in the environment of room temperature avoiding light, room temperature light, and 40°C constant temperature and light avoiding respectively, and the aqueous solution of phycocyanin composition I was measured respectively afte...
Embodiment 2
[0071] Dissolve 0.1g of phycocyanin in 1000g of water to form a 100ppm aqueous solution of phycocyanin, and measure its absorbance A 0 . Add 9g glycerol, 12g butanediol, 3g sodium chloride and 0.3g sodium benzoate successively in reactor, wherein, the weight ratio of glycerin, butylene glycol, sodium chloride and sodium benzoate is 30:40:10:1. Then add the prepared phycocyanin aqueous solution to 150 g to obtain the aqueous solution of phycocyanin composition II. Determination of absorbance A at 620nm of aqueous solution of phycocyanin composition II 1 , as shown in Table 1 below. Then the aqueous solution of phycocyanin composition II was evenly divided into 3 PET bottles, and placed in the environment of room temperature avoiding light, room temperature light, and 40°C constant temperature and light avoiding respectively, and the aqueous solution of phycocyanin composition II was measured respectively after 10 days Absorbance A 2 、A 3 、A 4 , as shown in Table 1 below. ...
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Abstract
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