Altun Esra, Yuca Esra, Ekren Nazmi, Kalaskar Deepak M, Ficai Denisa, Dolete Georgiana, Ficai Anton, Gunduz Oguzhan
Centre for Nanotechnology & Biomaterials Research, Department of Metallurgical and Materials Engineering, Faculty of Technology, Goztepe Campus, Marmara University, Istanbul 34722, Turkey.
Department of Molecular Biology and Genetics, Faculty of Arts and Sciences, Davutpasa Campus, Yildiz Technical University, Istanbul 34220, Turkey.
Pharmaceutics. 2021 Apr 23;13(5):613. doi: 10.3390/pharmaceutics13050613.
This study investigates the usage of electrohydrodynamic (EHD)-3D printing for the fabrication of bacterial cellulose (BC)/polycaprolactone (PCL) patches loaded with different antibiotics (amoxicillin (AMX), ampicillin (AMP), and kanamycin (KAN)) for transdermal delivery. The composite patches demonstrated facilitated drug loading and encapsulation efficiency of drugs along with extended drug release profiles. Release curves were also subjected to model fitting, and it was found that drug release was optimally adapted to the Higuchi square root model for each drug. They performed a time-dependent and diffusion-controlled release from the patches and followed Fick's diffusion law by the Korsmeyer-Peppas energy law equation. Moreover, produced patches demonstrated excellent antimicrobial activity against Gram-positive () and Gram-negative () strains, so they could be helpful in the treatment of chronic infectious lesions during wound closures. As different tests have confirmed, various types of antibiotics could be loaded and successfully released regardless of their types from produced BC/PCL patches. This study could breathe life into the production of antibiotic patches for local transdermal applications in wound dressing studies and improve the quality of life of patients.
本研究调查了电流体动力学(EHD)3D打印技术在制备载有不同抗生素(阿莫西林(AMX)、氨苄青霉素(AMP)和卡那霉素(KAN))的细菌纤维素(BC)/聚己内酯(PCL)贴片用于透皮给药方面的应用。复合贴片显示出促进药物负载和药物包封效率,以及延长的药物释放曲线。还对释放曲线进行了模型拟合,发现每种药物的药物释放最符合Higuchi平方根模型。它们从贴片中进行了时间依赖性和扩散控制的释放,并通过Korsmeyer-Peppas能量定律方程遵循菲克扩散定律。此外,制备的贴片对革兰氏阳性菌()和革兰氏阴性菌()菌株表现出优异的抗菌活性,因此在伤口闭合期间对慢性感染性损伤的治疗可能有帮助。正如不同测试所证实的,无论抗生素类型如何,各种类型的抗生素都可以负载并从制备的BC/PCL贴片中成功释放。本研究可为伤口敷料研究中局部透皮应用的抗生素贴片生产注入活力,并提高患者的生活质量。