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Solid lipid nanoparticles as promising tool for intraocular tobramycin delivery: Pharmacokinetic studies on rabbits

机译:固体脂质纳米颗粒作为用于眼内霉素的有前途的工具:兔的药代动力学研究

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摘要

Eye drops are widely accepted as formulations for targeting the anterior segment notwithstanding their limitations in terms of bioavailability. The unique structure of the eye requires specially-designed formulations able to favor the pharmacokinetic profile of administered drugs, mainly minimizing the influence of ocular barriers. Nanotechnology-based delivery systems lead to significant technological and therapeutical advantages in ophthalmic therapy. The aim of the present study was to determine whether tobramycin as ion-pair incorporated in mucoadhesive Solid Lipid Nanoparticles (SLN) reaches the inner parts of the eye favoring drug activity. After technological characterization of the tobramycin entrapped SLN formulation (Tobra-SLN), a pharmacokinetic study in rabbits after topical instillation and intravenous administration of the formulation has been carried out. In addition, the intracellular activity of Tobra-SLN formulation against phagocytosed Pseudomonas aeruginosa was investigated. The SLN were spherical in shape, and showed a hydrodynamic diameter of about 80 nm, a negative zeta potential (−25.7 mV) with a polydispersity index of 0.15, representative of a colloidal dispersion with high quality, characterized by an unimodal relatively narrow size distribution. As demonstrated by FTIR and DSC, tobramycin ion-pair could be concentrated into lipid inner core of SLN, without interaction with the stearic acid, thus promoting a slow and constant drug release profile in the dissolution medium. Surprisingly, the drug concentration was significantly higher in all ocular tissues after ocular and intravenous administration of Tobra-SLN formulation with respect to reference formulations and only Tobra-SLN allowed the penetration of drug into retina. Furthermore, the use of Tobra-SLN resulted in both higher intraphagocytic antibiotic concentrations in polymorphonuclear granulocytes and greater bactericidal activity against intracellular Pseudomonas aeruginosa, probably due to the ability of Tobra-SLN to penetrate either into phagocytic cells, or alternatively to cross bacterial barrier. The present study broadens the knowledge on the use of SLN as carriers for ocular drug delivery to the posterior chamber and might open new avenues for treatment of ocular infections, representing a strategy to overcome the microbial resistance.
机译:滴眼液被广泛接受作为瞄准前段的配方,尽管它们在生物利用度方面有局限性。眼睛的独特结构需要专门设计的配方,能够利用给药药物的药代动力学曲线,主要是最小化眼屏障的影响。基于纳米技术的递送系统导致眼科治疗中的重要技术和治疗优势。本研究的目的是确定是否掺入粘膜粘附固体脂质纳米粒子(SLN)中的离子对染发剂达到眼睛的内部部位,优先有利于药物活性。在捕获毒素的捕获SLN制剂(TOBRA-SLN)的技术表征之后,已经进行了在局部滴注和静脉内施用制剂后兔的药代动力学研究。此外,研究了对吞噬作用铜咽部配方的细胞内活性进行研究。 SLN的形状为球形,并且显示出约80nm的流体动力直径,负Zeta电位(-25.7mV),多分散指数为0.15,代表具有高质量的胶体分散体,其特征在于单峰相对窄的尺寸分布。如FTIR和DSC所证明的,烟霉素离子对可以浓缩成SLN的脂质内芯,而不与硬脂酸相互作用,从而在溶解介质中促进缓慢和恒定的药物释放曲线。令人惊讶的是,在眼部和静脉内组织后,在眼镜和静脉内组织相对于参考制剂和塔布拉 - SLN允许药物渗透到视网膜中,药物浓度明显高。此外,使用Tobra-SLN导致多核颗粒细胞中的较高的内部细胞抗生素浓度以及针对细胞内的假单胞菌铜绿假单胞菌的更大的杀菌活性,可能是由于塔格拉-SLN渗透到吞噬细胞中的能力,或者可选地交叉细菌屏障。本研究拓宽了使用SLN作为眼镜药物输送到后腔的载体的知识,并且可以打开用于治疗眼部感染的新途径,代表克服微生物抗性的策略。

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