Faculty of Pharmacy and Drug Applied Research Center, Tabriz University of Medical Sciences, Tabriz, 51664, Iran.
Sahand University of Technology, Tabriz, Iran.
AAPS PharmSciTech. 2022 Mar 1;23(3):80. doi: 10.1208/s12249-022-02223-x.
Generally, supersaturation of weakly basic drug solution in the gastrointestinal tract can be followed by precipitation, and this can compromise the bioavailability of drugs. The purpose of this study was to evaluate the effect of Eudragit® S100 on the pH-induced supersaturation of cinnarizine and to examine the preserving mechanism of cinnarizine supersaturation by Eudragit®. Variables, including pH of media, ionic strength, and degree of supersaturation, were studied to investigate the effects of these parameters on cinnarizine supersaturation in the presence and absence of Eudragit®. The size of the Eudragit® aggregate in solution using dynamic light scattering was determined. The effect of Eudragit® on the transport of cinnarizine through the Caco-2 membrane was also investigated. The particle size study of Eudragit® aggregates showed that the size of these aggregates become large when the pH was lowered. Supersaturation experiments also demonstrated that Eudragit® preserved higher cinnarizine supersaturation with increasing ionic strength of the solution. The phase separation behavior of cinnarizine solution as a function of the degree of the supersaturation could be readily explained by considering the drug amorphous solubility. In vitro permeation studies revealed that the rate of cinnarizine permeation across Caco-2 cells increased in the presence of Eudragit®. According to the obtained results, the aggregation status of Eudragit® and nonspecific hydrophobic cinnarizine-Eudragit® interactions seemed to be essential in determining the effect of Eudragit® on cinnarizine supersaturation.
一般来说,胃肠道中弱碱性药物溶液的过饱和度会导致沉淀,从而降低药物的生物利用度。本研究旨在评估 Eudragit® S100 对肉桂嗪 pH 诱导过饱和度的影响,并研究 Eudragit® 对肉桂嗪过饱和度的保护机制。研究了介质 pH、离子强度和过饱和度等变量,以考察这些参数对肉桂嗪在有无 Eudragit® 存在下过饱和度的影响。采用动态光散射法测定了溶液中 Eudragit® 聚集体的粒径。还研究了 Eudragit® 对肉桂嗪通过 Caco-2 膜转运的影响。Eudragit® 聚集体粒径研究表明,随着 pH 值的降低,这些聚集体的粒径变大。过饱和度实验还表明,随着溶液离子强度的增加,Eudragit® 能更好地保持肉桂嗪的过饱和度。考虑到药物无定形溶解度,可以很容易地解释肉桂嗪溶液的相分离行为与过饱和度的关系。体外渗透研究表明,在 Eudragit® 的存在下,肉桂嗪透过 Caco-2 细胞的速率增加。根据实验结果,Eudragit® 的聚集状态和非特异性疏水肉桂嗪-Eudragit® 相互作用似乎对 Eudragit® 对肉桂嗪过饱和度的影响至关重要。