A kind of cosmetic containing fullerene derivative
A fullerene derivative and fullerene technology are applied in the field of cosmetics containing fullerene derivatives to achieve the effects of preventing water loss, moisturizing skin and reducing melanin production
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Publication Date
- 2016-01-20
- Estimated Expiration
- Not applicable · inactive patent
Smart Images
Figure 1 Figure 2 Figure 3
Abstract
Description
technical field
[0001] The invention belongs to the field of cosmetics, in particular to a cosmetic containing fullerene derivatives. Background technique
[0002] With the improvement of people's living standards, the problem of how to delay aging has been paid more and more attention. There are many anti-aging products in the domestic market: facial anti-aging, stem cells, sheep placenta, water cell therapy, etc. However, due to the increasingly intensified hype and deception in the beauty industry, bad competition, various brands, good and bad, major beauty salons, Beauty salons are also trying their best to make quick profits in the short term. At present, there is no anti-aging product that can reassure customers and is really effective in the market.
[0003] Fullerene is an allotrope of carbon. Any substance composed of one element, carbon, existing in a spherical, elliptical, or tubular structure can be called a fullerene. The structure of fullerene is similar to ...
Examples
Embodiment 1
[0022] The following compositions are prepared as a cream:
[0023] Fullerene C 60 0.6%
[0024] Fullerene C 70 0.3%
[0025] Peptide 0.1%
[0026] Vitamin B0.05%
[0027] Vitamin C0.15%
[0028] Vitamin E0.25%
[0029] Macromolecular Sodium Hyaluronate 0.08%
[0030] Medium molecular weight sodium hyaluronate 0.08%
[0031] Small molecule sodium hyaluronate 0.16%
[0032] Collagen 0.05%
[0033] Oat polysaccharide 0.12%
[0034] Hyaluronic Acid 0.05%
[0035] Niacinamide 0.03%
[0036] Glycerin 2%
[0037] 1,3-Propanediol 4%
[0038] Phenylethyl resorcinol 0.4%
[0039] Astaxanthin 0.1%
[0040] The rest is pure water.
Embodiment 2
[0042] Fullerene C 60 0.5%
[0043] Fullerene C 70 0.25%
[0044] Fullerene C 76 0.1%
[0045] Fullerene C 80 0.08%
[0046] Peptide 0.08%
[0047] Vitamin B0.1%
[0048] Vitamin C0.1%
[0049] Vitamin E0.15%
[0050] Macromolecular Sodium Hyaluronate 0.06%
[0051] Medium molecular weight sodium hyaluronate 0.09%
[0052] Small molecule sodium hyaluronate 0.15%
[0053] Collagen 0.04%
[0054] Oat polysaccharide 0.1%
[0055] Hyaluronic Acid 0.07%
[0056] Niacinamide 0.03%
[0057] Glycerin 4%
[0058] 1,3-Propanediol 2%
[0059] Phenylethylresorcinol 0.2%
[0060] Astaxanthin 0.08%
[0061] The rest is pure water.
Embodiment 3
[0063] Fullerene C 60 0.2%
[0064] Fullerene C 70 0.3%
[0065] Fullerene C 76 0.2%
[0066] Fullerene C 80 0.2%
[0067] Peptide 0.1%
[0068] Vitamin B0.15%
[0069] Vitamin C0.18%
[0070] Vitamin E0.2%
[0071] Macromolecular Sodium Hyaluronate 0.08%
[0072] Medium molecular weight sodium hyaluronate 0.08%
[0073] Small molecule sodium hyaluronate 0.16%
[0074] Collagen 0.045%
[0075] Oat polysaccharide 0.15%
[0076] Hyaluronic Acid 0.1%
[0077] Niacinamide 0.05%
[0078] Glycerin 3%
[0079] 1,3-Propanediol 4%
[0080] Phenylethyl resorcinol 0.4%
[0081] Astaxanthin 0.06%
[0082] The rest is pure water.
[0083] The antioxidant activity (AOA) of Example 1 of the present invention and the comparative example (patent 2004800222529 Example 1) was measured. AOA represents the amount of coulombs consumed by titrating 100g of the analyzed substance, as shown in Table 1:
[0084] Table 1
[0085]
[0086] It can be known from the above table 1 tha...