Stabilizing composition containing hydroquinone or derivative thereof
A composition and derivative technology, which is applied in the direction of drug combination, effective ingredients of hydroxyl compounds, medical preparations containing active ingredients, etc., can solve the problems of hydroquinone irritation and instability, reduce toxicity and ensure stability , Increase the effect of storage stability
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Embodiment 1~5 and comparative example 1~6
[0035] Comparison of the degree of discoloration according to the ratio of two antioxidants in the composite composition of hydroquinone and metal oxide (calamine)
[0036] Examples 1-5 and Comparative Examples 1-6 were prepared and evaluated according to the composition shown in Table 1 below.
[0037] [Table 1]
[0038]
[0039] Specifically, it was prepared as follows. According to the ratios in Table 1 above, the hydrophilic solvent and antioxidants 1 and 2 were mixed at room temperature. While stirring at 3000 rpm with a homomixer (homomixer), calamine as a metal oxide was charged and dispersed. When the calamine was sufficiently uniformly dispersed by stirring for 15 minutes, hydroquinone was added and stirred at 3000 rpm for 5 minutes to completely dissolve.
[0040] The degree of discoloration is measured as follows. In order to confirm the storage stability of the composition in Table 1 above, it was stored at 50° C. for 4 weeks. Afterwards, 200 ul of the supe...
Embodiment 6~7 and comparative example 7~10
[0044] Comparison of the degree of discoloration according to the type of antioxidant in the composite composition of hydroquinone and metal oxide (calamine)
[0045] Examples 6-7 and Comparative Examples 7-10 were prepared and evaluated according to the compositions shown in Table 2 below. The preparation method and the discoloration measurement method are the same as those in the above-mentioned Examples 1-5.
[0046] [Table 2]
[0047]
[0048] The results are shown in Table 2 and figure 2 . In Examples 6 and 7, the degree of discoloration showed a low value of 2.1 or less. On the contrary, in Comparative Examples 7 to 10, the degree of discoloration was 16.3 or more, which was high. Therefore, as for the kind of antioxidant, only using the same kind as in Examples 6 and 7 can improve the storage stability of hydroquinone in the composite composition of metal oxide and hydroquinone.
Embodiment 6、8、9 and comparative example 11~15
[0050] Comparison of the degree of discoloration according to the kind of acid (acid) in the composite composition of hydroquinone and metal oxide (calamine)
[0051] Examples 6, 8, and 9 and Comparative Examples 11 to 15 were prepared and evaluated according to the compositions shown in Table 3 below. The preparation method and the discoloration measurement method are the same as those in the above-mentioned Examples 1-5.
[0052] [table 3]
[0053]
[0054] The results are shown in Table 3 and image 3 . As in Examples 6, 8 and 9, when the type of acid used as an antioxidant is a dibasic or tribasic carboxylic acid, the discoloration degree is lower than 2.4. However, when the same other acids as in Comparative Examples 11 to 15 were used, the degree of discoloration was 28.9 or higher, which was high. Therefore, the storage stability of hydroquinone in the composite composition of metal oxide and hydroquinone can be improved only by using dibasic or tribasic carboxyl...
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