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Preparation of Nanocrystals for Insoluble Drugs by Top-Down Nanotechnology with Improved Solubility and Bioavailability

机译:通过自上而下的纳米技术制备具有改善的溶解度和生物利用度的不溶性药物纳米晶体

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摘要

Midazolam is a rapidly effective benzodiazepine drug that is widely used as a sedative worldwide. Due to its poor solubility in a neutral aqueous solution, the clinical use of midazolam is significantly limited. As one of the most promising formulations for poorly water-soluble drugs, nanocrystals have drawn worldwide attention. We prepared a stable nanosuspension system that causes little muscle irritation. The particle size of the midazolam nanocrystals (MDZ/NCs) was 286.6 ± 2.19 nm, and the crystalline state of midazolam did not change in the size reduction process. The dissolution velocity of midazolam was accelerated by the nanocrystals. The pharmacokinetics study showed that the AUC0–t of the MDZ/NCs was 2.72-fold ( < 0.05) higher than that of the midazolam solution (MDZ/S), demonstrating that the bioavailability of the MDZ/NC injection was greater than that of MDZ/S. When midazolam was given immediately after the onset of convulsions, the ED for MDZ/NCs was significantly more potent than that for MDZ/S and DZP/S. The MDZ/NCs significantly reduced the malondialdehyde content in the hippocampus of the seizures model rats and significantly increased the glutathione and superoxide dismutase levels. These results suggest that nanocrystals significantly influenced the dissolution behavior, pharmacokinetic properties, anticonvulsant effects, and neuroprotective effects of midazolam and ultimately enhanced their efficacy in vitro and in vivo.
机译:咪达唑仑是一种快速有效的苯二氮卓类药物,在世界范围内被广泛用作镇静剂。由于其在中性水溶液中的溶解性差,因此咪达唑仑的临床使用受到了极大的限制。作为水溶性差的药物最有希望的制剂之一,纳米晶体已经引起了全世界的关注。我们准备了一个稳定的纳米悬浮系统,几乎不会引起肌肉刺激。咪达唑仑纳米晶体(MDZ / NCs)的粒径为286.6±2.19 nm,在减小尺寸的过程中,咪达唑仑的晶体状态没有改变。纳米晶体可加快咪达唑仑的溶解速度。药代动力学研究表明,MDZ / NCs的AUC0-t比咪达唑仑溶液(MDZ / S)高2.72倍(<0.05),表明MDZ / NC注射剂的生物利用度大于MDZ / S。惊厥发作后立即给予咪达唑仑时,MDZ / NCs的ED效力明显高于MDZ / S和DZP / S的ED。 MDZ / NCs显着降低了癫痫发作模型大鼠海马中的丙二醛含量,并显着增加了谷胱甘肽和超氧化物歧化酶水平。这些结果表明纳米晶体显着影响咪达唑仑的溶解行为,药代动力学特性,抗惊厥作用和神经保护作用,并最终增强了它们在体内和体外的功效。

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