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普鲁兰/四环素-环糊精包合物抗菌纳米纤维用于速崩口腔给药。

Antibacterial nanofibers of pullulan/tetracycline-cyclodextrin inclusion complexes for Fast-Disintegrating oral drug delivery.

机构信息

Fiber Science Program, Department of Human Centered Design, College of Human Ecology, Cornell University, Ithaca, NY 14853, United States.

Fiber Science Program, Department of Human Centered Design, College of Human Ecology, Cornell University, Ithaca, NY 14853, United States.

出版信息

J Colloid Interface Sci. 2022 Mar 15;610:321-333. doi: 10.1016/j.jcis.2021.12.013. Epub 2021 Dec 8.

Abstract

Tetracycline is a widely used antibiotic suffering from poor water solubility and low bioavailability. Here, hydroxypropyl-beta-cyclodextrin (HPβCD) was used to form inclusion complexes (IC) of tetracycline with 2:1 M ratio (CD:drug). Then, tetracycline-HPβCD-IC was mixed with pullulan- a non-toxic, water-soluble biopolymer - to form nanofibrous webs via electrospinning. The electrospinning of pullulan/tetracycline-HPβCD-IC was yielded into defect-free nanofibers collected in the form of a self-standing and flexible material with the loading capacity of ∼ 7.7 % (w/w). Pullulan/tetracycline nanofibers was also generated as control sample having the same drug loading. Tetracycline was found in the amorphous state in case of pullulan/tetracycline-HPβCD nanofibers due to inclusion complexation. Through inclusion complexation with HPβCD, enhanced aqueous solubility and faster release profile were provided for pullulan/tetracycline-HPβCD-IC nanofibers compared to pullulan/tetracycline one. Additionally, pullulan/tetracycline-HPβCD-IC nanofibers readily disintegrated when wetted with artificial saliva while pullulan/tetracycline nanofibers were not completely absorbed by the same simulate environment. Electrospun nanofibers showed promising antibacterial activity against both gram-positive and gram-negative bacteria. Briefly, our findings indicated that pullulan/tetracycline-HPβCD-IC nanofibers could be an attractive material as orally fast disintegrating drug delivery system for the desired antibiotic treatment thanks to its promising physicochemical and antibacterial properties.

摘要

四环素是一种广泛使用的抗生素,但存在水溶性差和生物利用度低的问题。在这里,羟丙基-β-环糊精(HPβCD)被用于与四环素以 2:1 的摩尔比(CD:药物)形成包合物(IC)。然后,将四环素-HPβCD-IC 与聚麦芽七糖 - 一种无毒、水溶性生物聚合物 - 混合,通过静电纺丝形成纳米纤维网。聚麦芽七糖/四环素-HPβCD-IC 的静电纺丝产生无缺陷的纳米纤维,以自支撑和柔性材料的形式收集,载药量约为 7.7%(w/w)。也生成了作为对照样品的载药量相同的聚麦芽七糖/四环素纳米纤维。由于包合作用,聚麦芽七糖/四环素-HPβCD 纳米纤维中的四环素呈无定形状态。通过与 HPβCD 形成包合物,与聚麦芽七糖/四环素相比,聚麦芽七糖/四环素-HPβCD-IC 纳米纤维具有更高的水溶解度和更快的释放特性。此外,当用人工唾液润湿时,聚麦芽七糖/四环素-HPβCD-IC 纳米纤维很容易崩解,而聚麦芽七糖/四环素纳米纤维在相同的模拟环境中并未完全被吸收。静电纺纳米纤维对革兰氏阳性菌和革兰氏阴性菌均表现出良好的抗菌活性。总之,我们的研究结果表明,聚麦芽七糖/四环素-HPβCD-IC 纳米纤维由于其有前途的物理化学和抗菌特性,可作为口服快速崩解型药物递送系统,用于理想的抗生素治疗。

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