甲硝唑
活性成分
药物输送
生物相容性
壳聚糖
聚乳酸
溶解试验
化学
溶解
材料科学
生物医学工程
纳米技术
聚合物
医学
药理学
抗生素
有机化学
生物化学
生物制药分类系统
作者
Petra Arany,Ildikó Papp,Marianna Zichar,Géza Regdon,Mónika Béres,Melinda Szalóki,Renátó Kovács,Pálma Fehér,Zoltán Ujhelyi,Miklós Vecsernyés,Ildikó Bácskay
出处
期刊:Pharmaceutics
[MDPI AG]
日期:2021-10-16
卷期号:13 (10): 1714-1714
被引量:48
标识
DOI:10.3390/pharmaceutics13101714
摘要
Vaginal drug delivery systems can provide a long-term and constant liberation of the active pharmaceutical ingredient even for months. For our experiment, FDM 3D printing was used to manufacture the vaginal ring samples from thermoplastic polyurethane filament, which enables fast manufacturing of complex, personalized medications. 3D printing can be an excellent alternative instead of industrial manufacturing, which is complicated and time-consuming. In our work, the 3D printed vaginal rings were filled manually with jellified metronidazole or chloramphenicol for the treatment of bacterial vaginosis. The need for manual filling was certified by the thermogravimetric and heatflow assay results. The manufactured samples were analyzed by an Erweka USP type II Dissolution Apparatus, and the dissolution profile can be distinguished based on the applied jellifying agents and the API’s. All samples were considered non-similar based on the pairwise comparison. The biocompatibility properties were determined by prolonged MTT assay on HeLa cells, and the polymer could be considered non-toxic. Based on the microbiological assay on E. coli metronidazole and chitosan containing samples had bactericidal effects while just metronidazole or just chitosan containing samples bacteriostatic effect. None of these samples showed a fungistatic or fungicide effect against C. albicans. Based on our results, we successfully manufactured 3D printed vaginal rings filled with jellified metronidazole.
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