Lee Jong-Hwa, Kim Hak Hyung, Cho Young Ho, Koo Tae-Sung, Lee Gye Won
DMPK Group, Korea Institute of Toxicology, Daejeon 305-343, Korea.
Pharvis R&D Department, Pharvis Korea Pharm., Ansan 425-100, Korea.
Pharmaceutics. 2018 Jun 29;10(3):78. doi: 10.3390/pharmaceutics10030078.
Raloxifene hydrochloride (RLH) was formulated into a pH-modified supersaturatable self-microemulsifying drug delivery system (S-SMEDDS) to increase drug solubility and dissolution rate. Optimal formulations of pH-modified S-SMEDDSs were developed by incorporating hydroxypropyl-cellulose-L as a precipitation inhibitor and phosphoric acid as a pH modifier (an acidifier). RLH was dissolved to greater extents by all pH-modified S-SMEDDSs compared with non-pH-modified S-SMEDDSs. In particular, phosphoric acid afforded greater drug dissolution than did the other acidifiers tested, perhaps because phosphoric acid better controlled the pH. More than 50% of the RLH was released from the pH-modified S-SMEDDS at pH 2.5 compared with only ~5% of the drug into aqueous buffer (pH 1.2 or 6.8) after dissolution of a conventional tablet. pH-modified S-SMEDDSs with a hydrophilic polymer and phosphoric acid improved the dissolution behavior of a drug exhibiting poor aqueous solubility.
盐酸雷洛昔芬(RLH)被制成pH调节的过饱和自微乳化药物递送系统(S-SMEDDS),以提高药物的溶解度和溶解速率。通过加入羟丙基纤维素-L作为沉淀抑制剂和磷酸作为pH调节剂(酸化剂),开发出了pH调节的S-SMEDDS的最佳配方。与未调节pH的S-SMEDDS相比,所有pH调节的S-SMEDDS都能使RLH有更大程度的溶解。特别是,磷酸比其他测试的酸化剂能使药物有更好的溶解,这可能是因为磷酸能更好地控制pH值。在pH 2.5时,超过50%的RLH从pH调节的S-SMEDDS中释放出来,而传统片剂溶解后在水性缓冲液(pH 1.2或6.8)中只有约5%的药物释放。含有亲水性聚合物和磷酸的pH调节的S-SMEDDS改善了一种水溶性差的药物的溶解行为。