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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Incorporation of beads into oral films for buccal and oral delivery of bioactive molecules
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Incorporation of beads into oral films for buccal and oral delivery of bioactive molecules

机译:将珠子掺入口服薄膜,用于颊和口服递送生物活性分子

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摘要

The association of alginate beads and guar-gum films in a single delivery system was idealized to promote a more effective buccal and oral delivery of bioactive molecules. A response surface method (experimental design approach) was performed to obtain optimal formulations of alginate beads to be incorporated into guar gum oral films as combined buccal and oral delivery systems for caffeine delivery. The combined formulation was further characterized regarding physicochemical properties, drug release, cell viability and buccal permeability. Beads average size, determined by dynamic light scattering (DLS), was of 3.37 +/- 6.36 mu m. Film thickness was set to 62 mu m. Scanning electron microscopy micrographs revealed that beads were evenly distributed onto the film matrix and beads size was in accordance to data obtained from DLS analysis. Evaluation of Fourier-transform infrared spectra did not indicate the formation of new covalent bonds between the matrix of guar-gum films, alginate beads and caffeine. In vitro release assays by dialysis membrane allowed understanding that the combination of guar-gum films and alginate beads assure a slower release of caffeine when compared with the delivery profile of free caffeine from alginate beads or guar-gum films alone. MTT assay, performed on human buccal carcinoma TR146 cell line, allowed concluding that neither guar-gum film, alginate beads nor guar-gum film incorporated into alginate beads significantly compromised cell viability after 12 h of exposure. As demonstrated by in vitro permeability assay using TR146 human buccal carcinoma cell lines, combination of guargum films and alginate beads also promoted a slower release and, thus, lower apparent permeability (1.15E-05 +/- 3.50E-06) than for caffeine solution (2.68E-05 +/- 7.30E-06), guar-gum film (3.12E-05 +/- 4.70E-06) or alginate beads (2.01E-05 +/- 3.90E-06). The conjugation of alginate beads within an orodispersible film matrix represents an effective oral/buccal delivery system that induces a controlled release along with an enhanced intimate contact with cell layers that may promote higher in vivo bioavailability of carried drugs.
机译:在单个递送系统中藻酸盐珠和瓜尔胶膜的缔合的结合理想化,以促进更有效的颊和口服递送生物活性分子。进行响应表面方法(实验设计方法)以获得最佳的藻酸盐珠制品,以掺入瓜尔胶口膜中,作为咖啡因递送的组合口腔和口服递送系统。该组合制剂进一步表征了物理化学性质,药物释放,细胞活性和颊渗透性。由动态光散射(DLS)确定的珠子平均尺寸为3.37 +/- 6.36 mu m。薄膜厚度设定为62μm。扫描电子显微镜显微照片显示,珠子均匀地分布到薄膜基质上,珠粒尺寸根据DLS分析获得的数据。傅立叶变换红外光谱的评价并未表明瓜尔胶膜基质,海藻酸珠和咖啡因之间的新共价键的形成。通过透析膜的体外释放测定允许理解瓜尔胶膜和海藻酸盐珠的组合确保咖啡因的较慢释放,与来自海藻酸盐珠或瓜尔胶薄膜的游离咖啡因的递送曲线相比。 MTT测定,对人口腔癌TR146细胞系进行,允许结束术后瓜尔胶膜,藻酸盐珠和瓜尔胶膜掺入藻酸盐珠中的藻酸盐珠粒后12小时后显着损害细胞活力。如使用TR146人口腔癌细胞系的体外渗透性测定所证明的,瓜粒膜和海藻酸盐珠的组合也促进了较慢的释放,从而降低表观渗透率(1.15e-05 +/- 3.50e-06)而不是咖啡因溶液(2.68E-05 +/- 7.30E-06),瓜尔胶膜(3.12E-05 +/- 4.70E-06)或海藻酸盐珠(2.01E-05 +/- 3.90E-06)。藻酸盐珠粒在奥多尔科可致密的膜基质内的缀合代表了一种有效的口腔/颊送送系统,其诱导控制释放以及与可以促进携带药物的体内生物利用度促进更高的细胞层的增强的互连接触。

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