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首页> 外文期刊>Drug delivery. >Trans-nasal zolmitriptan novasomes: in-vitro preparation, optimization and in-vivo evaluation of brain targeting efficiency
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Trans-nasal zolmitriptan novasomes: in-vitro preparation, optimization and in-vivo evaluation of brain targeting efficiency

机译:经鼻佐米曲普坦新星体:脑靶向效率的体外制备,优化和体内评估

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摘要

Migraine attack is a troublesome physiological condition associated with throbbing, intense headache, in one half of the head. Zolmitriptan is a potent second-generation triptan, prescribed for patients with migraine attacks, with or without an aura, and cluster headaches. The absolute bioavailability of zolmitriptan is about 40% for oral administration; due to hepatic first metabolism. Nasal administration would circumvent the pre-systemic metabolism thus increasing the bioavailability of zolmitriptan. In addition, due to the presence of microvilli and high vasculature, the absorption is expected to be faster compared to oral route. However, the bioavailability of nasal administered drugs is particularly restricted by poor membrane penetration. Thus, the aim of this work is to explore the potential of novel nanovesicular fatty acid enriched structures (novasomes) for effective and enhanced nasal delivery of zolmitriptan and investigate their nose to brain targeting potential. Novasomes were prepared using nonionic surfactant, cholesterol in addition to a free fatty acid. A 2(3) full factorial design was adopted to study the influence of the type of surfactant, type of free fatty acid and ratio between the free fatty acid and the surfactant on novasomes properties. The particle size, entrapment efficiency, polydispersity index, zeta potential and % zolmitriptan released after 2h were selected as dependent variables. Novasomes were further optimized using Design Expert (R) software (version 7; Stat-Ease Inc., Minneapolis, MN), and an optimized formulation composed of Span (R) 80:Cholesterol:stearic acid (in the ratio 1:1:1) was selected. This formulation showed zolmitriptan entrapment of 92.94%, particle size of 149.9nm, zeta potential of -55.57mV, and released 48.43% zolmitriptan after 2h. The optimized formulation was further examined using transmission electron microscope, which revealed non-aggregating multi-lamellar nanovesicles with narrow size distribution. DSC, XRD examination of the optimized formulation confirmed that the drug have been homogeneously dispersed throughout the novasomes in an amorphous state. In-vivo bio-distribution studies of Tc-99m radio-labeled intranasal zolmitriptan loaded novasomes were done on mice, the pharmacokinetic parameters were compared with those following administration of intravenous Tc-99m-zolmitriptan solution. Results revealed the great enhancement in zolmitriptan targeting to the brain, with drug targeting potential of about 99% following intranasal administration of novasomes compared with the intravenous drug solution. Zolmitriptan loaded novasomes administered via the nasal route may therefore constitute an advance in the management of acute migraine attacks.
机译:偏头痛发作是与头部一半的抽动,剧烈头痛相关的生理问题。佐米曲普坦是有效的第二代曲坦,适用于偏头痛发作,有或没有先兆,丛集性头痛的患者。佐米曲普坦口服的绝对生物利用度约为40%;由于肝脏首先代谢。鼻腔给药将避免全身前代谢,从而增加佐米曲普坦的生物利用度。另外,由于微绒毛和高脉管系统的存在,预计与口服途径相比吸收更快。但是,鼻腔给药的药物的生物利用度特别受到膜渗透性差的限制。因此,这项工作的目的是探索有效和增强的佐米曲普坦鼻腔递送的新型纳米囊泡脂肪酸富集结构(新脂质体)的潜力,并研究其鼻子对大脑的靶向潜力。除了使用游离脂肪酸外,还使用非离子表面活性剂,胆固醇制备了Novasomes。采用2(3)全因子设计研究表面活性剂类型,游离脂肪酸类型以及游离脂肪酸与表面活性剂之间的比例对新脂质体性能的影响。选择2小时后释放的粒度,包封率,多分散指数,ζ电势和佐米曲普坦%作为因变量。使用Design Expert(R)软件(第7版; Stat-Ease Inc.,明尼苏达州明尼阿波利斯)和由Span(R)80:胆固醇:硬脂酸(比例为1:1: 1)被选中。该制剂显示佐米曲普坦截留率为92.94%,粒径为149.9nm,ζ电势为-55.57mV,并且在2h后释放了48.43%的佐米曲普坦。使用透射电子显微镜进一步检查了优化的配方,该显微镜揭示了具有窄尺寸分布的非聚集多层纳米囊泡。通过DSC,XRD对优化配方进行检查,确认药物已以无定形状态均匀地分散在整个新生小体中。在小鼠上进行了Tc-99m放射性标记的鼻腔佐米曲普坦负载新体的体内生物分布研究,将其药代动力学参数与静脉注射Tc-99m-佐米曲普坦溶液后进行了比较。结果表明,与静脉内药物溶液相比,鼻腔给予新体后,佐米曲普坦靶向脑的功能大大增强,与之相比,其潜在的药物靶向潜力约为99%。因此,经鼻途径给药的佐米曲普坦负载的新体可能构成急性偏头痛发作的治疗方法的进步。

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