Jayathilaka E H T Thulshan, Han Jinwook, De Zoysa Mahanama, Whang Ilson
College of Veterinary Medicine and Research Institute of Veterinary Medicine, Chungnam National University, Yuseong-gu, Daejeon 34134, Republic of Korea.
National Marine Biodiversity Institute of Korea (MABIK), 75, Jangsan-ro 101 beon-gil, Janghang-eup, Seocheon 33662, Republic of Korea.
Pharmaceutics. 2024 Sep 25;16(10):1245. doi: 10.3390/pharmaceutics16101245.
This study focused on evaluating the physiochemical characteristics and antibacterial activity of Octoprohibitin-encapsulated CNPs (Octoprohibitin-CNPs) against . Octoprohibitin was encapsulated into CNPs via ionotropic gelation with carboxymethyl chitosan (CMC) and low molecular weight chitosan (CS). Octoprohibitin-CNPs were dispersed in phosphate-buffered saline and the release kinetic profile was determined. Then Octoprohibitin-CNPs were examined using field-emission transmission electron microscopy and physicochemical characterization was performed. Antibacterial activity of Octoprohibitin-CNPs against was evaluated. Biofilm inhibition and eradication assays were performed using the crystal violet (CV) staining-based method for biofilm quantification. : The average diameter, zeta potential, encapsulation efficiency, and loading capacity of Octoprohibitin-CNPs were 244.5 ± 21.97 nm, +48.57 ± 0.38 mV, and 85.7% and 34.2%, respectively. TEM analysis imaging revealed that Octoprohibitin-CNPs are irregularly shaped, with fewer aggregates than CNPs. Octoprohibitin-CNPs exhibited a biphasic release pattern, characterized by an initial rapid phase followed by a sustained release over time, extending up to 93.68 ± 6.48% total release until 96 h. In vitro, Octoprohibitin-CNPs showed lower cytotoxicity compared to Octoprohibitin alone. Time-kill kinetic and bacterial viability reduction assays showed Octoprohibitin-CNPs exhibited slightly higher antibacterial activity against than Octoprohibitin. Octoprohibitin-CNP-treated exhibited higher levels of morphological deviation, increased membrane permeability, and the production of reactive oxygen species, as well as antibiofilm activity with greater biofilm inhibition and eradication than Octoprohibitin. These findings show that Octoprohibitin-CNPs perform better against compared to Octoprohibitin alone.
本研究聚焦于评估包裹奥曲抑素的碳纳米粒子(奥曲抑素-碳纳米粒子)对……的理化特性及抗菌活性。通过羧甲基壳聚糖(CMC)和低分子量壳聚糖(CS)的离子凝胶化作用,将奥曲抑素包裹进碳纳米粒子中。将奥曲抑素-碳纳米粒子分散于磷酸盐缓冲盐水中,并测定其释放动力学曲线。然后使用场发射透射电子显微镜对奥曲抑素-碳纳米粒子进行检测,并进行理化特性表征。评估奥曲抑素-碳纳米粒子对……的抗菌活性。采用基于结晶紫(CV)染色的方法进行生物膜定量,开展生物膜抑制和清除试验。结果表明:奥曲抑素-碳纳米粒子的平均直径、zeta电位、包封率和载药量分别为244.5±21.97纳米、+48.57±0.38毫伏、85.7%和34.2%。透射电镜分析成像显示,奥曲抑素-碳纳米粒子形状不规则,聚集体比碳纳米粒子少。奥曲抑素-碳纳米粒子呈现双相释放模式,其特征为初始快速释放阶段,随后随时间持续释放,直至96小时总释放量高达93.68±6.48%。在体外,与单独的奥曲抑素相比,奥曲抑素-碳纳米粒子显示出较低的细胞毒性。时间-杀菌动力学和细菌活力降低试验表明,奥曲抑素-碳纳米粒子对……的抗菌活性略高于奥曲抑素。经奥曲抑素-碳纳米粒子处理的……表现出更高水平的形态偏差、膜通透性增加、活性氧产生,以及比奥曲抑素更强的生物膜抑制和清除的抗生物膜活性。这些发现表明,与单独的奥曲抑素相比,奥曲抑素-碳纳米粒子对……的效果更好。