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β-环糊精包合物载尼氯硝唑电纺 Eudragit® L100 纳米纤维用于结肠靶向给药。

Colon targeted delivery of niclosamide from β-cyclodextrin inclusion complex incorporated electrospun Eudragit® L100 nanofibers.

机构信息

Department of Pharmaceutical Technology, Faculty of Pharmacy, Karadeniz Technical University, Trabzon, 61080, Turkey.

Institute of Materials Science & Nanotechnology, UNAM-National Nanotechnology Research Center, Bilkent University, Ankara, 06800, Turkey.

出版信息

Colloids Surf B Biointerfaces. 2021 Jan;197:111391. doi: 10.1016/j.colsurfb.2020.111391. Epub 2020 Oct 24.

Abstract

Electrospun nanofibers incorporated with inclusion complex (IC) of niclosamide (NIC) and hydroxypropyl-beta-cyclodextrin (HPβCD) (NIC-HPβCD-IC) was produced from pH-responsive polymer (Eudragit® L100, EUD), which disintegrates at pH values higher than 6, (EUD-NIC-HPβCD-IC-NF) for targeted delivery of NIC to the colon. Pristine EUD nanofibers (EUD-NF), only NIC loaded (EUD-NIC-NF) and physical mixture of NIC and HPβCD loaded EUD nanofibers (EUD-NIC-HPβCD-NF) were also produced as reference. SEM images revealed the bead-free and uniform morphology of nanofibers. XRD, TGA, and DSC were also performed for both NIC-HPβCD-IC and electrospun nanofibers and it was seen that there are some NIC molecules, which cannot make IC. Dissolution studies were carried out for 240 min at pH 1.2 and pH 7 simulating stomach and colon, respectively. EUD-NIC-NF released almost 53 % of NIC in 120 min, whereas EUD-NIC-HPβCD-NF (15 %) and EUD-NIC-HPβCD-IC-NF (8 %) released at most 15 % of NIC in 120 min. Then, remained NIC in the nanofibers released into the colon for the next 120 min. The slight difference in the release of NIC into stomach from EUD-NIC-HPβCD-NF and EUD-NIC-HPβCD-IC-NF might be due to the uncomplexed NIC molecules in EUD-NIC-HPβCD-IC-NF. More importantly, EUD-NIC-HPβCD-IC-NF was quite effective for preventing the release of NIC in the stomach in contrast to EUD-NIC-NF, which has already released more than half amount of NIC in 120 min. In conclusion, this study might open new areas for developing targeted delivery systems by the combination of nanofibers and CD-ICs for hydrophobic drugs such as NIC.

摘要

将尼氯哒唑(NIC)和羟丙基-β-环糊精(HPβCD)的包合物(IC)掺入到 pH 响应聚合物(Eudragit® L100,EUD)中,制成了可在 pH 值高于 6 时分解的电纺纳米纤维(EUD-NIC-HPβCD-IC-NF),用于将 NIC 靶向递送到结肠。还制备了纯 EUD 纳米纤维(EUD-NF)、仅负载 NIC 的 EUD-NIC-NF 和负载 NIC 和 HPβCD 的物理混合物的 EUD 纳米纤维(EUD-NIC-HPβCD-NF)作为对照。SEM 图像显示纳米纤维无珠且形态均匀。还对 NIC-HPβCD-IC 和电纺纳米纤维进行了 XRD、TGA 和 DSC 分析,结果表明,有一些 NIC 分子不能形成 IC。在 pH 1.2 和 pH 7 下分别模拟胃和结肠进行了 240 分钟的溶解研究。EUD-NIC-NF 在 120 分钟内释放了近 53%的 NIC,而 EUD-NIC-HPβCD-NF(15%)和 EUD-NIC-HPβCD-IC-NF(8%)在 120 分钟内最多释放了 15%的 NIC。然后,纳米纤维中剩余的 NIC 在接下来的 120 分钟内释放到结肠中。EUD-NIC-HPβCD-NF 和 EUD-NIC-HPβCD-IC-NF 在胃中释放 NIC 的差异可能是由于 EUD-NIC-HPβCD-IC-NF 中未络合的 NIC 分子。更重要的是,与已经在 120 分钟内释放了超过一半 NIC 的 EUD-NIC-NF 相比,EUD-NIC-HPβCD-IC-NF 非常有效地阻止了 NIC 在胃中的释放。总之,这项研究可能为通过纳米纤维和 CD-IC 的组合开发针对尼氯哒唑等疏水性药物的靶向递药系统开辟新的领域。

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