Department of Chemical Engineering, Texas Tech University, Lubbock, Texas 79409, United States.
ACS Appl Mater Interfaces. 2022 Jun 29;14(25):28663-28670. doi: 10.1021/acsami.2c07976. Epub 2022 Jun 15.
Treatment of gum disease often requires antibiotic treatment. In this study, our objective was to advance the practicality of drug-coated floss as an intra gum pocket drug delivery system. The initial design of this delivery system has been previously reported by us. Here, we advance the concept further through in vitro and in vivo evaluation. A floss piece was dip coated in the middle section with model molecules leaving free ends for holding. Porcine gum tissues were used ex vivo and in vivo to evaluate the coated floss, including effect of coating thickness on delivery efficiency, ability to deliver more than one type of molecule (one hydrophilic and one hydrophobic), mechanical properties using a scratch test, and finally retention of delivered material in vivo in the porcine model. After reaching a certain coating thickness, the delivery efficiency of the coated floss decreased, indicating the presence of an optimal coating thickness. Hydrophobic and hydrophilic molecules were successfully coated and delivered with high efficiency into gum pockets. The scratch test indicated that the coatings were resilient. Lastly, the in vivo analysis showed that the drug coating was delivered into the porcine gum pocket with about 65% efficiency, and the coatings could maintain extended residency within the gum pocket despite the native adverse environment of the oral cavity. Overall, this data shows that drug-coated floss can act as a drug delivery vehicle and has potential to provide a minimally invasive and practical method for the delivery of drugs into the gum pockets.
治疗牙周病通常需要抗生素治疗。在这项研究中,我们的目标是提高药物涂层牙线作为牙龈袋内药物输送系统的实用性。我们之前已经报道过这种输送系统的初步设计。在这里,我们通过体外和体内评估进一步推进了这一概念。牙线的中间部分被蘸涂,留下自由端用于握持。使用离体和体内猪牙龈组织来评估涂层牙线,包括涂层厚度对输送效率的影响、输送不止一种类型分子(一种亲水和一种疏水)的能力、使用划痕试验评估机械性能,以及最后在猪模型中体内输送材料的保留情况。达到一定的涂层厚度后,涂层牙线的输送效率降低,表明存在最佳的涂层厚度。亲水性和疏水性分子都被成功地包裹并以高效率输送到牙龈袋中。划痕试验表明涂层具有弹性。最后,体内分析表明,药物涂层以约 65%的效率输送到猪的牙龈袋中,尽管口腔内的天然环境不利,但涂层可以在牙龈袋内保持较长的停留时间。总的来说,这些数据表明药物涂层牙线可以作为药物输送载体,并有可能为将药物输送到牙龈袋中提供一种微创且实用的方法。