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抗氧化剂和硅酸盐对聚维酮中过氧化物的影响。

Effect of antioxidants and silicates on peroxides in povidone.

机构信息

Bristol-Myers Squibb, New Brunswick, New Jersey 08903-0191, USA.

出版信息

J Pharm Sci. 2012 Jan;101(1):127-39. doi: 10.1002/jps.22729. Epub 2011 Aug 23.

Abstract

Reactive peroxides in povidone often lead to degradation of oxidation-labile drugs. To reduce peroxide concentration in povidone, the roles of storage conditions, antioxidants, and silicates were investigated. Povidone alone and its physical mixtures with ascorbic acid, propyl gallate, sodium sulfite, butylated hydroxyanisole (BHA), or butylated hydroxytoluene (BHT) were stored at 25 °C and 40 °C, at 11%, 32%, and 50% relative humidity. In addition, povidone solution in methanol was equilibrated with silicates (silica gel and molecular sieves), followed by solvent evaporation to recover povidone powder. Peroxide concentrations in povidone were measured. The concentration of peroxides in povidone increased under very-low-humidity storage conditions. Among the antioxidants, ascorbic acid, propyl gallate, and sodium sulfite reduced the peroxide concentration in povidone, whereas BHA and BHT did not. Water solubility appeared to determine the effectiveness of antioxidants. Also, some silicates significantly reduced peroxide concentration in povidone without affecting its functionality as a tablet binder. Porosity of silicates was critical to their ability to reduce the peroxide concentration in povidone. A combination of these approaches can reduce the initial peroxide concentration in povidone and minimize peroxide growth under routine storage conditions.

摘要

聚维酮中的反应性过氧化物常常导致氧化敏感药物的降解。为了降低聚维酮中的过氧化物浓度,研究了储存条件、抗氧化剂和硅酸盐的作用。单独的聚维酮及其与抗坏血酸、没食子酸丙酯、亚硫酸钠、丁基羟基茴香醚 (BHA) 或丁基羟基甲苯 (BHT) 的物理混合物在 25°C 和 40°C、11%、32%和 50%相对湿度下储存。此外,聚维酮在甲醇中的溶液与硅酸盐(硅胶和分子筛)平衡,然后蒸发溶剂以回收聚维酮粉末。测量聚维酮中的过氧化物浓度。在非常低湿度的储存条件下,聚维酮中的过氧化物浓度增加。在抗氧化剂中,抗坏血酸、没食子酸丙酯和亚硫酸钠降低了聚维酮中的过氧化物浓度,而 BHA 和 BHT 则没有。水溶性似乎决定了抗氧化剂的有效性。此外,一些硅酸盐可显著降低聚维酮中的过氧化物浓度,而不影响其作为片剂粘合剂的功能。硅酸盐的孔隙率对于其降低聚维酮中过氧化物浓度的能力至关重要。这些方法的组合可以降低聚维酮的初始过氧化物浓度,并在常规储存条件下最小化过氧化物的增长。

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