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Why is glycocholic acid sodium salt better than deoxycholic acid sodium salt for the preparation of mixed micelle injections?

机译:为什么在制备混合胶束注射剂中糖胆酸钠盐比脱氧胆酸钠盐更好?

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摘要

Classical mixed micelle systems make excellent parenteral drug carriers for lipophilic or poorly soluble drugs, but many formulations details are not fully understood and need further study. Thus, we constructed mixed micelle systems with lecithin and either glycocholic acid sodium salt or deoxycholic acid sodium salt in order to investigate the differences between the bile salts. Vitamin K , a lipid‐soluble drug, was encapsulated in the mixed micelles, and the influence of bile salts on the quality and stability of the mixed micelle systems was analyzed. Both bile salts displayed similar profiles, and the amounts of bile salts used in formulating clear solutions did not differ. Mixed micelle systems formed from glycocholic acid sodium were physically stable at low pH levels (5.5), whereas those formed from deoxycholic acid required higher pH (>8.5). High pH levels hurt active pharmaceutical ingredients that are prone to hydrolytic and oxidative degradation. Hence, when mixed micelle systems formed from deoxycholic acid sodium were sterilized, unexpected chemical unstability occurred. Therefore, we conclude that glycocholic acid sodium salt is more suitable than deoxycholic acid sodium salt for the preparation of mixed micelle injections.
机译:经典的混合胶束系统是亲脂性或难溶性药物的出色肠胃外药物载体,但许多制剂的细节尚未完全了解,需要进一步研究。因此,我们研究了卵磷脂与糖胆酸钠盐或脱氧胆酸钠盐混合的胶束体系,以研究胆汁盐之间的差异。将维生素K(一种脂溶性药物)封装在混合胶束中,并分析了胆汁盐对混合胶束系统质量和稳定性的影响。两种胆盐均显示出相似的特征,并且用于配制透明溶液的胆盐的量没有差异。由糖胆酸钠形成的混合胶束体系在低pH值下(5.5)物理稳定,而由脱氧胆酸形成的胶束则需要更高的pH(> 8.5)。高pH值会伤害易于水解和氧化降解的活性药物成分。因此,当对由脱氧胆酸钠形成的混合胶束体系进行灭菌时,会发生意想不到的化学不稳定。因此,我们得出结论,在制备混合胶束注射剂中,糖胆酸钠比脱氧胆酸钠更合适。

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