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转铁蛋白靶向的胞磷胆碱脂质体的辐射防护作用

Radioprotective effect of transferrin targeted citicoline liposomes.

作者信息

Suresh Reddy Jannapally, Venkateswarlu Vobalaboina, Koning Gerben A

机构信息

NDDS Laboratory, University College of Pharmaceutical Sciences, Kakatiya University, Warangal, AP, 506 009, India.

出版信息

J Drug Target. 2006 Jan;14(1):13-9. doi: 10.1080/10611860600613241.

Abstract

The high level of expression of transferrin receptors (Tf-R) on the surface of endothelial cells of the blood-brain-barrier (BBB) had been widely utilized to deliver drugs to the brain. The primary aim of this study was to use transferrin receptor mediated endocytosis as a pathway for the rational development of holo-transferrin coupled liposomes for drug targeting to the brain. Citicoline is a neuroprotective agent used clinically to treat for instance Parkinson disease, stroke, Alzheimer's disease and brain ischemia. Citicoline does not readily cross the BBB because of its strong polar nature. Hence, citicoline was used as a model drug. (Citicoline liposomes have been prepared using dipalmitoylphosphatidylcholine (DPPC) or distearoylphosphatidylcholine (DSPC) by dry lipid film hydration-extrusion method). The effect of the use of liposomes composed of DPPC or DSPC on their citicoline encapsulation efficiency and their stability in vitro were studied. Transferrin was coupled to liposomes by a technique which involves the prevention of scavenging diferric iron atoms of transferrin. The coupling efficiency of transferrin to the liposomes was studied. In vitro evaluation of transferrin-coupled liposomes was performed for their radioprotective effect in radiation treated cell cultures. In this study, OVCAR-3 cells were used as a model cell type over-expressing the Tf-R and human umbilical vein endothelial cells (HUVEC) as BBB endothelial cell model. The average diameter of DPPC and DSPC liposomes were 138 +/- 6.3 and 79.0 +/- 3.2 nm, respectively. The citicoline encapsulation capacity of DPPC and DSPC liposomes was 81.8 +/- 12.8 and 54.9 +/- 0.04 microg/micromol of phospholipid, respectively. Liposomes prepared from DSPC showed relatively better stability than DPPC liposomes at 37 degrees C and in the presence of serum. Hence, DSPC liposomes were used for transferrin coupling and an average of 46-55 molecules of transferrin were present per liposome. Free citicoline has shown radioprotective effect at higher doses tested. Interestingly, encapsulation of citicoline in pegylated liposomes significantly improved the radioprotective effect by 4-fold compared to free citicoline in OVCAR-3 but not in HUVEC. Further, citicoline encapsulation in transferrin-coupled liposomes has significantly improved the radioprotective effect by approximately 8-fold in OVCAR-3 and 2-fold in HUVEC cells with respect to the free drug. This is likely due to the entry of citicoline into cells via transferrin receptor mediated endocytosis. In conclusion, our results suggest that low concentrations of citicoline encapsulated in transferrin-coupled liposomes could offer therapeutic benefit in treating stroke compared to free citicoline.

摘要

血脑屏障(BBB)内皮细胞表面的转铁蛋白受体(Tf-R)高表达已被广泛用于向脑部递送药物。本研究的主要目的是利用转铁蛋白受体介导的内吞作用,作为合理开发全转铁蛋白偶联脂质体用于脑部药物靶向的途径。胞磷胆碱是一种神经保护剂,临床上用于治疗例如帕金森病、中风、阿尔茨海默病和脑缺血。由于其强极性性质,胞磷胆碱不易穿过血脑屏障。因此,胞磷胆碱被用作模型药物。(已通过干脂质膜水化-挤压法使用二棕榈酰磷脂酰胆碱(DPPC)或二硬脂酰磷脂酰胆碱(DSPC)制备了胞磷胆碱脂质体)。研究了由DPPC或DSPC组成的脂质体对其胞磷胆碱包封效率及其体外稳定性的影响。通过一种涉及防止转铁蛋白清除二价铁原子的技术将转铁蛋白偶联到脂质体上。研究了转铁蛋白与脂质体的偶联效率。对转铁蛋白偶联脂质体进行体外评估,以观察其在辐射处理的细胞培养物中的辐射防护作用。在本研究中,OVCAR-3细胞用作过表达Tf-R的模型细胞类型,人脐静脉内皮细胞(HUVEC)用作血脑屏障内皮细胞模型。DPPC和DSPC脂质体的平均直径分别为138±6.3和79.0±3.2nm。DPPC和DSPC脂质体的胞磷胆碱包封能力分别为81.8±12.8和54.9±0.04μg/μmol磷脂。由DSPC制备的脂质体在37℃和有血清存在的情况下显示出比DPPC脂质体相对更好的稳定性。因此,DSPC脂质体用于转铁蛋白偶联,每个脂质体平均存在46-55个转铁蛋白分子。游离胞磷胆碱在测试的较高剂量下显示出辐射防护作用。有趣的是,在OVCAR-3细胞中,与游离胞磷胆碱相比,将胞磷胆碱包封在聚乙二醇化脂质体中可使辐射防护作用显著提高4倍,但在HUVEC细胞中则不然。此外,相对于游离药物,将胞磷胆碱包封在转铁蛋白偶联脂质体中在OVCAR-3细胞中可使辐射防护作用显著提高约8倍,在HUVEC细胞中提高2倍。这可能是由于胞磷胆碱通过转铁蛋白受体介导的内吞作用进入细胞。总之,我们的结果表明,与游离胞磷胆碱相比,包封在转铁蛋白偶联脂质体中的低浓度胞磷胆碱在治疗中风方面可能具有治疗益处。

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