Chi Sang-Cheol, Yeom Dae-Il, Kim Sung-Chul, Park Eun-Seok
Sungkyunkwan University, 300 Chonchon-Dong, Changan-Gu, Suwon, Kyonggi-Do 440-746, Korea.
Arch Pharm Res. 2003 Feb;26(2):173-81. doi: 10.1007/BF02976666.
A polymeric micelle drug delivery system was developed to enhance the solubility of poorly-water soluble drug, biphenyl dimethyl dicarboxylate, DDB. The block copolymers consisting of poly(D,L-lactide) (PLA) as the hydrophobic segment and methoxy poly(ethylene glycol) (mPEG) as the hydrophilic segment were synthesized and characterized by NMR, DSC and MALDI-TOF mass spectroscopy. The size of the polymeric micelles measured by dynamic light scattering showed a narrow monodisperse size distribution with the average diameter less than 50 nm. The MW of mPEG-PLA, 3000 (MW of mPEG, 2 K; MW of PLA, 1 K), and the presence of hydrophilic and hydrophobic segments on the polymeric micelles were confirmed by MALDI-TOF mass spectroscopy and NMR, respectively. Polymeric micelle solutions of DDB were prepared by three different methods, i.e. the matrix method, emulsion method and dialy-sis method. In the matrix method, DDB solubility was reached to 13.29 mg/mL. The mPEG-PLA 2K-1 K micelle system was compared with the poloxamer 407 micelle system for their critical micelle concentration, micelle size, solubilizing capacity, stability in dilution and physical state. DDB loaded-polymeric micelles prepared by the matrix method showed a significantly increased aqueous solubility (>5000 fold over intrinsic solubility) and were found to be superior to the poloxamer 407 micelles as a drug carrier.
为提高难溶性药物联苯双酯(DDB)的溶解度,研发了一种聚合物胶束药物递送系统。合成了以聚(D,L-丙交酯)(PLA)为疏水链段、甲氧基聚(乙二醇)(mPEG)为亲水链段的嵌段共聚物,并通过核磁共振(NMR)、差示扫描量热法(DSC)和基质辅助激光解吸电离飞行时间质谱(MALDI-TOF)对其进行了表征。通过动态光散射测量的聚合物胶束尺寸显示出窄的单分散尺寸分布,平均直径小于50 nm。MALDI-TOF质谱和NMR分别证实了mPEG-PLA(分子量3000,其中mPEG分子量2K,PLA分子量1K)的分子量以及聚合物胶束上亲水和疏水链段的存在。通过三种不同方法制备了DDB的聚合物胶束溶液,即基质法、乳液法和透析法。在基质法中,DDB的溶解度达到了13.29 mg/mL。比较了mPEG-PLA 2K-1K胶束系统和泊洛沙姆407胶束系统的临界胶束浓度、胶束尺寸、增溶能力、稀释稳定性和物理状态。通过基质法制备的载DDB聚合物胶束的水溶性显著增加(比固有溶解度提高了5000倍以上),并且被发现作为药物载体优于泊洛沙姆407胶束。