4.7 Article

Synthesis and characterization of thiolated β-cyclodextrin as a novel mucoadhesive excipient for intra-oral drug delivery

期刊

CARBOHYDRATE POLYMERS
卷 132, 期 -, 页码 187-195

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.carbpol.2015.06.073

关键词

Intra-oral drug delivery; beta Cyclodextrin; Thiolated oligomer; Mucoadhesion; Inclusion complex

资金

  1. Higher Education Commission of Pakistan (HEC)
  2. Austrian Agency for International Cooperation in Education and Research (DAD)
  3. FWF (Fonds zur Forderung der wissenschaftlichen Forschung) [ZFP 235150]
  4. Austrian Science Fund (FWF) [P 23515] Funding Source: researchfish

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The objective of the present study was to synthesize and characterize cysteamine conjugated beta-cyclodextrin ( beta-CD-Cys) as a novel mucoadhesive oligomeric excipient for intra-oral drug delivery. beta-CD-Cys conjugates were obtained in a two-step synthetic pathway, whereby, vicinal diol groups of the oligomer were oxidized using increasing concentrations of sodium-per-iodate (NaIO4), prior to the covalent coupling of cysteamine via reductive amination. Quantification of immobilized thiol groups through Ellman's test revealed 561.56+/-81 mu mol/g, 1054.26+/-131 mu mol/g and 1783.92+/-201 mu mol/g of free thiol groups attached to the oligomer backbone depending on the extent of oxidation. beta-CD-Cys conjugates at concentrations of 0.5% (m/v) showed no toxic effects on Caco-2 cells within 72 h. Furthermore, beta-CD-Cys conjugates displayed a 4-fold improved water solubility compared to the parent oligomer. beta-CD-Cys conjugates (beta-CD-Cys561, beta-CD-Cys1054 and beta-CD-Cys1783) showed 2.86-, 15.09- and 49.08-fold improved retention time on porcine intestinal mucosa and 9.66-, 16.43- and 34.51-fold improved on the porcine buccal mucosa, respectively. Formation of inclusion complexes of miconazole nitrate and beta-CD-Cys1054 resulted in 150-fold increased solubility of miconazole nitrate. According to these results, it seems that beta-CD-Cys conjugates might provide a new promising tool for delivery of poorly water soluble therapeutic agents, such as miconazole nitrate for intra-oral delivery. (C) 2015 Elsevier Ltd. All rights reserved.

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