首页> 外文期刊>International Journal of Pharmaceutics >Cyclodextrins and chitosan derivatives in sublingual delivery of low solubility peptides: A study using cyclosporin A, alpha-cyclodextrin and quaternary chitosan N-betainate.
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Cyclodextrins and chitosan derivatives in sublingual delivery of low solubility peptides: A study using cyclosporin A, alpha-cyclodextrin and quaternary chitosan N-betainate.

机译:低溶解度肽的舌下递送中的环糊精和壳聚糖衍生物:使用环孢菌素A,α-环糊精和季铵壳聚糖N-贝酸酯进行的研究。

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摘要

Systemic drug delivery through intraoral membranes may offer a promising administration route for lipophilic peptide drugs. The aim of the present study was to investigate the effect of alpha-cyclodextrin (alpha-CD) and a novel chitosan derivative, chitosan N-betainate (CH), on sublingual absorption of a hydrophobic model peptide cyclosporin A (CsA), and the effect of temperature on the complexation of CsA with alpha-CD. Complexation of CsA with alpha-CD was studied using the phase-solubility method. Sublingual absorption of CsA was studied by administration of solid CsA/alpha-CD complex (with and without CH solution), solid CsA/alpha-CD/CH formulation and solid plain CsA to rabbits. The solubility of CsA in aqueous alpha-CD solution (14%) increased with decreasing temperature; the solubility of CsA at room temperature, +5 and +1 degrees C was 1.2, 12 and 19mg/ml, respectively. The bioavailability of CsA after administration of plain CsA, solid CsA/alpha-CD and solid CsA/alpha-CD/CH (0.6+/-0.5, 1.4+/-0.7 and 1.7+/-0.8%, respectively; mean+/-S.D.) was further increased when solid CsA/alpha-CD was administered together with CH solution (3.2+/-2.2%). The present study shows that decreased temperature can be effectively utilized to produce CsA/alpha-CD complexes. It was also shown that alpha-CD and CH may be advantageous in sublingual delivery of lipophilic peptides, although the absolute bioavailability remains low.
机译:通过口内膜的全身药物递送可以为亲脂性肽药物提供有希望的给药途径。本研究的目的是研究α-环糊精(α-CD)和新型壳聚糖衍生物壳聚糖N-贝酸酯(CH)对疏水性模型肽环孢菌素A(CsA)舌下吸收的影响,以及对CsA与α-CD络合的影响使用相溶解度方法研究了CsA与α-CD的络合物。通过向兔施用固体CsA /α-CD复合物(有或没有CH溶液),固体CsA /α-CD/ CH制剂和固体纯CsA来研究CsA的舌下吸收。 CsA在α-CD水溶液中的溶解度(14%)随着温度的降低而增加。 CsA在室温,+ 5和+1摄氏度下的溶解度分别为1.2、12和19mg / ml。普通CsA,固体CsA /α-CD和固体CsA /α-CD/ CH给药后CsA的生物利用度(分别为0.6 +/- 0.5、1.4 +/- 0.7和1.7 +/- 0.8%;平均值+/-当将固体CsA /α-CD与CH溶液(3.2 +/- 2.2%)一起给药时,SD)进一步增加。本研究表明,降低的温度可以有效地用于生产CsA /α-CD复合物。还显示了α-CD和CH在亲脂性肽的舌下递送中可能是有利的,尽管绝对生物利用度仍然很低。

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