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Oxcarbazepine-loaded polymeric nanoparticles: Development and permeability studies across in vitro models of the blood–brain barrier and human placental trophoblast

机译:奥卡西平负载的聚合物纳米颗粒:跨血脑屏障和人胎盘滋养层的体外模型的开发和渗透性研究

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摘要

Encapsulation of antiepileptic drugs (AEDs) into nano particles may offer promise for treating pregnant women with epilepsy by improving brain delivery and limiting the trans-placental permeability of AEDs to avoid fetal exposure and its consequent undesirable adverse effects. Oxcarbazepine-loaded nano particles were prepared by a modified solvent displacement method from biocompatible polymers (poly(lactic-co-glycolic acid) [PLGA] with or without surfactant and PEGylated PLGA [Resomer RGPd5055]). The physical properties of the developed nano particles were determined with subsequent evaluation of their permeability across in vitro models of the blood–brain barrier (hCMEC/D3 cells) and human placental trophoblast cells (BeWo b30 cells). Oxcarbazepine-loaded nano particles with encapsulation effciency above 69% were prepared with sizes ranging from 140–170 nm, polydispersity indices below 0.3, and zeta potential values below -34 mV. Differential scanning calorimetry and X-ray diffraction studies confirmed the amorphous state of the nano encapsulated drug. The apparent permeability (P) values of the free and nano encapsulated oxcarbazepine were comparable across both cell types, likely due to rapid drug release kinetics. Transport studies using fluorescently-labeled nano particles (loaded with coumarin-6) demonstrated increased permeability of surfactant-coated nano particles. Future developments in enzyme-pro drug therapy and targeted delivery are expected to provide improved options for pregnant patients with epilepsy.
机译:将抗癫痫药(AED)封装到纳米颗粒中,可通过改善脑部递送和限制AED的胎盘通透性以避免胎儿暴露及其随之而来的不良副作用,为治疗癫痫孕妇提供希望。通过改良的溶剂置换法,从生物相容性聚合物(聚乳酸-乙醇酸共聚物[PLGA],含或不含表面活性剂和聚乙二醇化PLGA [Resomer RGPd5055])中制备了载有奥卡西平的纳米颗粒。通过随后评估它们在血脑屏障(hCMEC / D3细胞)和人胎盘滋养层细胞(BeWo b30细胞)体外模型中的渗透性,来确定已开发纳米颗粒的物理性质。制备了封装效率高于69%的奥卡西平负载纳米颗粒,尺寸在140-170 nm之间,多分散指数低于0.3,ζ电势值低于-34 mV。差示扫描量热法和X射线衍射研究证实了纳米囊封药物的非晶态。在两种细胞类型中,游离和纳米封装的奥卡西平的表观渗透率(P)值在两种细胞类型中均相当,这可能是由于药物快速释放动力学所致。使用荧光标记的纳米颗粒(载有香豆素6)的运输研究表明,表面活性剂涂覆的纳米颗粒具有更高的渗透性。酶促药物治疗和靶向递送的未来发展有望为癫痫孕妇提供更好的选择。

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