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首页> 外文期刊>RSC Advances >Solubilization and co-solubilization of carbamazepine and nifedipine in mixed micellar systems: insights from surface tension, electronic absorption, fluorescence and HPLC measurements
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Solubilization and co-solubilization of carbamazepine and nifedipine in mixed micellar systems: insights from surface tension, electronic absorption, fluorescence and HPLC measurements

机译:卡马西平和硝苯地平在混合胶束系统中的增溶和共增溶:从表面张力,电子吸收,荧光和HPLC测量获得的见解

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UV absorption spectral and HPLC study on the solubilization and co-solubilization behavior of antiepileptic drug Carbamazepine (CBZ) and calcium channel blocker Nifedipine (NFD), which are reported to have a synergistic potentiation, was carried out in sodium cholate based binary and ternary mixed micellar systems with non-ionic polysorbate (Tween20, Tween40) and polyoxyethylene (Brij30, Brij35, Brij56 and Brij58) surfactants. The surfactant-surfactant interactions and their effect on the aggregation number, solubility of drugs, solubilization site, surfactant-drug interactions and drug-drug interactions were evaluated and explained. Synergism in mixed micellization increases the aggregation number and decreases the polarity of palisade layer resulting in enhancement of core solubilization of drugs with concomitant decrease in palisade layer solubilization. In the C-12 series, CBZ shows a decrease in solubility upon surfactant mixing, indicating an appreciable solubilization in the palisade layer, whereas in the C-16 series an increase in its solubility was observed. For NFD, a decrease in solubility follows the trend of synergism in mixed micellization, which is more for strongly interacting surfactant systems. During co-solubilization, because CBZ occupies preferentially the palisade layer, its solubility is decreased and the solubilization of NFD, which mainly occurs within the micellar core, is favored. The magnitude of drug-drug interactions increases in mixed micelles and is more for the surfactant systems, showing more synergism in the mixed micelle formation. The mixed micellar media used in the present study, being biocompatible, are expected to be employed as solubilization and drug delivery vehicles for co-administration of these two drugs in vivo.
机译:在据报道具有协同增效作用的抗癫痫药物卡马西平(CBZ)和钙通道阻滞剂硝苯地平(NFD)的增溶和共增溶行为的紫外吸收光谱和HPLC研究是在基于胆酸钠的二元和三元混合溶液中进行的具有非离子型聚山梨酯(Tween20,Tween40)和聚氧乙烯(Brij30,Brij35,Brij56和Brij58)表面活性剂的胶束系统。评价并解释了表面活性剂-表面活性剂的相互作用及其对聚集数,药物溶解度,增溶位点,表面活性剂-药物相互作用和药物-药物相互作用的影响。混合胶束化中的协同作用增加了聚集数并降低了栅栏层的极性,从而导致药物核心溶解度的提高,同时伴随着栅栏层溶解度的降低。在C-12系列中,CBZ在混合表面活性剂后显示溶解度降低,表明在木栅层中有明显的增溶作用,而在C-16系列中,观察到其溶解度增加。对于NFD,溶解度的下降遵循混合胶束化中协同作用的趋势,这对于强相互作用的表面活性剂体系更为明显。在共溶解过程中,由于CBZ优先占据木栅层,因此其溶解度降低,并且主要在胶束核心内发生的NFD溶解更受青睐。在混合的胶束中,药物-药物相互作用的幅度增加,而对于表面活性剂体系则更大,在混合的胶束形成中表现出更多的协同作用。本研究中使用的具有生物相容性的混合胶束介质有望用作增溶和药物输送媒介,以在体内共同施用这两种药物。

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