首页> 外文期刊>International Journal of Pharmaceutics >Alginate-magnesium aluminum silicate films: effect of plasticizers on film properties, drug permeation and drug release from coated tablets.
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Alginate-magnesium aluminum silicate films: effect of plasticizers on film properties, drug permeation and drug release from coated tablets.

机译:海藻酸镁铝硅酸盐薄膜:增塑剂对薄膜性质,药物渗透和从包衣片中释放药物的影响。

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摘要

The effect of hydrophilic plasticizers, namely glycerin and polyethylene glycol 400 (PEG400), on physicochemical properties of sodium alginate-magnesium aluminum silicate (SA-MAS) microcomposite films was characterized and application of the films for controlling drug release from tablets was evaluated as well. The plasticizers could possibly interact with SA or MAS by formation of hydrogen bonding, as revealed using FTIR spectroscopy. PXRD studies presented that glycerin or PEG400 could intercalate into the silicate layers of MAS and higher crystallinity of the films with PEG400 was obtained. This led to a different thermal behavior of the films. Glycerin gave more flexibility of the films than PEG400. Incorporation of plasticizers into the films did not affect water uptake in acid medium, but increasing an erosion of the films because of the leaching of the plasticizers. Water vapor permeability of the films decreased with increasing amount of plasticizers in the range of 10-30% (w/w). Diffusion coefficient (D) of acetaminophen (ACT) across the films in acid medium increased with addition of the plasticizers because the leaching of plasticizers could reduce tortuosity of aqueous pore channels of the films. The tablets coated with plasticized films had a quite smooth surface without defect as shown by SEM. The ACT release profiles from the coated tablets showed a zero-order release kinetic with drug diffusion mechanism across in situ insoluble composite films in acid medium, and coating film swelling and erosion mechanism in pH 6.8 phosphate buffer. Moreover, neither the release rate nor the release pattern of the ACT coated tablets was obviously changed. The findings show that glycerin or PEG400 could improve physicochemical properties of the SA-MAS films and the plasticized films could control the drug release from tablets in gastro-intestinal condition.
机译:表征了亲水性增塑剂甘油和聚乙二醇400(PEG400)对藻酸钠-硅酸铝镁(SA-MAS)微复合膜的理化性质的影响,并评估了该膜在控制片剂中释药的应用。如FTIR光谱所揭示的,增塑剂可能通过形成氢键与SA或MAS相互作用。 PXRD研究表明,甘油或PEG400可以插入到MAS的硅酸盐层中,并获得具有PEG400的薄膜的更高结晶度。这导致了膜的不同热行为。甘油比PEG400赋予薄膜更大的柔韧性。将增塑剂掺入薄膜中不会影响酸性介质中的水分吸收,但会由于增塑剂的浸出而增加薄膜的侵蚀。薄膜的水蒸气渗透性随着增塑剂含量的增加而降低,范围为10%至30%(w / w)。对乙酰氨基酚(ACT)在酸性介质中薄膜上的扩散系数(D)随着增塑剂的添加而增加,因为增塑剂的浸出会降低薄膜的水孔通道的曲折性。如通过SEM所示,用增塑膜包衣的片剂具有相当光滑的表面而没有缺陷。包衣片剂的ACT释放曲线显示了零阶释放动力学,具有跨酸性介质中原位不溶复合膜的药物扩散机制,以及在pH 6.8磷酸盐缓冲液中的包膜溶胀和侵蚀机制。而且,ACT包衣片剂的释放速率和释放方式都没有明显改变。研究结果表明,甘油或PEG400可以改善SA-MAS膜的理化性质,而增塑的膜可以控制胃肠道中片剂的药物释放。

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