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Sulfonic Acid Derivative-Modified SBA-15 PHTS and MCM-41 Mesoporous Silicas as Carriers for a New Antiplatelet Drug: Ticagrelor Adsorption and Release Studies

机译:磺酸衍生物改性的SBA-15PHT和MCM-41中孔二氧化硅作为新的抗血小板药物的载体:TicagreloRes吸附和释放研究

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摘要

Three mesoporous, siliceous materials, i.e., SBA-15 (Santa Barbara Amorphous), PHTS (Plugged Hexagonal Templated Silica) and MCM-41 (Mobil Composition of Matter), functionalized with a sulfonic acid derivative, were successfully prepared and applied as the carriers for the poorly water-soluble drug, ticagrelor. The siliceous carriers were characterized using nitrogen sorption analysis, X-ray diffraction (XRD), transmission electron microscopy (TEM) and elemental analysis. The adsorption studies were conducted in acetonitrile. At the highest equilibrium concentrations, the amount of ticagrelor that adsorbed onto the examined silicas was in the range of 83 to 220 mg/g, increasing in the following order: PHTS-(CH ) -SO H < SBA-15-(CH ) -SO H < MCM-41-(CH ) -SO H. The equilibrium adsorption data were analyzed using the Freundlich, Jovanovich, Langmuir, Temkin, Dubinin-Radushkevich, Dubinin-Astakhov and Redlich-Peterson models. In order to find the best-fit isotherm for each model, a nonlinear fitting analysis was carried out. Based on the minimized values of the ARE function, the fit of the isotherms to the experimental points for ticagrelor adsorption onto the modified silicas can be ordered as follows: SBA-15-(CH ) -SO H (Redlich-Peterson > Dubinin-Astakhov > Temkin), PHTS-(CH ) -SO H (Redlich-Peterson > Temkin > Dubinin-Astakhov), MCM-41-(CH ) -SO H (Redlich-Peterson > Dubinin-Astakhov > Langmuir). The values of adsorption energy (above 8 kJ/mol) indicate the chemical nature of ticagrelor adsorption onto propyl-sulfonic acid-modified silicas. The results of release studies indicated that at pH 4.5, modified SBA-15 and MCM-41 carriers accelerate the drug dissolution process, compared to the dissolution rate of free crystalline ticagrelor. Intriguingly, modified PHTS silica provides prolonged drug release kinetics compared to other siliceous adsorbents and to the dissolution rate of crystalline ticagrelor. A Weibull release model was employed to describe the release profiles of ticagrelor from the prepared carriers. The time necessary to dissolve 50% and 90% of ticagrelor from mesoporous adsorbents at pH 4.5 increased in the following order: SBA-15-(CH ) -SO H < MCM-41-(CH ) -SO H < PHTS-(CH ) -SO H.
机译:用磺酸衍生物官能化的三种介孔,硅质材料,IE,SBA-15(Santa Barbara非晶),PHTS(堵塞六边形模板),PHT(堵塞六边形模板晶体化二氧化硅)和MCM-41(MOBIL组合物),并作为载体施用对于较差的水溶性药物,TiCagrelor。使用氮吸附分析,X射线衍射(XRD),透射电子显微镜(TEM)和元素分析表征了硅质载体。吸附研究在乙腈中进行。在最高的平衡浓度下,吸附在所检查的二氧化硅上的TiCagreloR的量在83至220mg / g的范围内,按以下顺序增加:PHTS-(CH)-SO H Dubinin-Astakhov > Temkin),PHTS-(CH)-SO H(Redlich-Peterson> Temkin> Dubinin-Astakhov),MCM-41-(CH)-SO H(雷尔里希 - 彼得森> Dubinin-Astakhov> Langmuir)。吸附能量(8 kJ / mol)的值表明Ticagreles吸附在丙基 - 磺酸改性的二氧化硅上的化学性质。释放研究结果表明,与游离结晶TicagreloR的溶出速率相比,改性的SBA-15和MCM-41载体加速了药物溶解过程。有趣的是,与其他硅质吸附剂相比,改性PHTS二氧化硅提供延长的药物释放动力学和结晶Ticagresor的溶出速率。使用Weibull释放模型来描述来自制备的载体的TiCagreloR的释放谱。溶解50%和90%在pH 4.5的中孔吸附剂中溶解50%和90%Ticagreler的时间按以下顺序增加:SBA-15-(CH)-SO H

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