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Acute oral toxicity and biodistribution study of zinc-aluminium-levodopa nanocomposite

机译:锌-铝-左旋多巴纳米复合材料的急性口服毒性和生物分布研究

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摘要

Layered double hydroxide (LDH) is an inorganic–organic nano-layered material that harbours drug between its two-layered sheets, forming a sandwich-like structure. It is attracting a great deal of attention as an alternative drug delivery (nanodelivery) system in the field of pharmacology due to their relative low toxic potential. The production of these nanodelivery systems, aimed at improving human health through decrease toxicity, targeted delivery of the active compound to areas of interest with sustained release ability. In this study, we administered zinc-aluminium-LDH-levodopa nanocomposite (ZAL) and zinc-aluminium nanocomposite (ZA) to Sprague Dawley rats to evaluate for acute oral toxicity following OECD guidelines. The oral administration of ZAL and ZA at a limit dose of 2,000 mg/kg produced neither mortality nor acute toxic signs throughout 14 days of the observation. The percentage of body weight gain of the animals showed no significant difference between control and treatment groups. Animal from the two treated groups gained weight continuously over the study period, which was shown to be significantly higher than the weight at the beginning of the study (P < 0.05). Biochemical analysis of animal serum showed no significant difference between rats treated with ZAL, ZA and controls. There was no gross lesion or histopathological changes observed in vital organs of the rats. The results suggested that ZAL and ZA at 2,000 mg/kg body weight in rats do not induce acute toxicity in the animals. Elemental analysis of tissues of treated animals demonstrated the wider distribution of the nanocomposite including the brain. In summary, findings of acute toxicity tests in this study suggest that zinc-aluminium nanocomposite intercalated with and the un-intercalated were safe when administered orally in animal models for short periods of time. It also highlighted the potential distribution ability of Tween-80 coated nanocomposite after oral administration.
机译:层状双氢氧化物(LDH)是一种无机有机纳米层材料,在其两层薄板之间藏有药物,形成了类似三明治的结构。由于其相对较低的毒性潜力,它作为药理学领域的替代药物递送(阳极递送)系统引起了广泛的关注。这些纳米递送系统的生产旨在通过降低毒性来改善人类健康,将活性化合物靶向释放到具有持续释放能力的目标区域。在这项研究中,我们根据OECD指南,对Sprague Dawley大鼠施用了锌-铝-LDH-左旋多巴纳米复合物(ZAL)和锌-铝纳米复合物(ZA)。在观察的整整14天中,口服ZAL和ZA的极限剂量为2,000 mg / kg,既没有死亡也没有急性毒性迹象。动物的体重增加百分比显示对照组和治疗组之间没有显着差异。来自两个治疗组的动物在研究期内持续增加体重,这表明其显着高于研究开始时的体重(P <0.05)。动物血清的生化分析表明,用ZAL,ZA处理的大鼠与对照组之间无显着差异。在大鼠的重要器官中没有观察到大的病变或组织病理学变化。结果表明,大鼠中2,000 mg / kg体重的ZAL和ZA不会对动物产生急性毒性。对治疗动物组织的元素分析表明,包括脑在内的纳米复合材料分布更广。总而言之,这项研究的急性毒性试验结果表明,在动物模型中短期内口服和未插入的锌-铝纳米复合材料是安全的。它还强调了口服后吐温80涂层纳米复合材料的潜在分布能力。

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