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Fabrication of isradipine nanosuspension by anti-solvent microprecipitation-high-pressure homogenization method for enhancing dissolution rate and oral bioavailability

机译:通过抗溶剂微沉淀 - 高压均质化方法制备IsRadipine纳米悬井料,以提高溶出速率和口服生物利用度

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The aim of this study was to develop a nanosuspension of a highly hydrophobic drug, isradipine (ISR) by combination of anti-solvent microprecipitation and high-pressure homogenization to achieve the superior in vitro dissolution and in vivo pharmacokinetic profile. The nanosuspension was formulated using combination of stabilizers as vitamin E TPGS and sodium lauryl sulfate. The developed nanosuspension was characterized for particle size, shape, and zeta potential. The particle size of the developed ISR nanosuspension was observed to be approximately 538 nm (by laser diffraction) and 469 nm (by photon correlation spectroscopy) with -33.3 mV zeta potential. Scanning electron microscopy study revealed the good correlation with particle size measured by photon correlation spectroscopy and laser diffraction. The X-ray diffraction and differential scanning calorimetry showed that ISR was present as an amorphous state in the lyophilized form of nanosuspension. In vitro dissolution and saturation solubility study showed the dissolution rate of nanosuspensions (98.60 %) and saturation solubility (98.76 μg/ml) compared with the coarse drug (11.53 % and 14.1 μg/ml, respectively) had been significantly enhanced. The pharmacokinetic study showed that the nanosuspension exhibits increased in AUC0-48 by 2.0-fold compared to coarse suspension. Further, there was increased in C max and decreased in t max of ISR nanosuspension compared to coarse suspension of ISR. These studies proved that particle size reduction can influence ISR absorption in gastrointestinal tract and thus nanosuspension technology is responsible for enhancing oral bioavailability in rats.
机译:本研究的目的是通过抗溶剂微沉淀和高压均质化的组合来开发高度疏水性药物,ISRadipine(ISR)的纳米柱,以实现优异的体外溶解和体内药代动力学曲线。使用稳定剂的组合作为维生素E TPGS和月桂基硫酸钠配制纳米溶胶。开发的纳米悬雍垂的特征在于粒度,形状和Zeta电位。显影ISR纳米术的粒径被观察到约538nm(通过激光衍射)和469nm(通过光子相关光谱),具有-33.3mVζ电位。扫描电子显微镜研究揭示了通过光子相关光谱和激光衍射测量的粒度的良好相关性。 X射线衍射和差分扫描量热法显示ISR以冻干形式的纳米螺栓形式存在于非晶态。体外溶解和饱和溶解度研究表明,与粗药(分别为11.53%和14.1μg/ ml)显着提高了纳米杆子(98.60%)和饱和溶解度(98.76μg/ ml)的溶出速率。药代动力学研究表明,与粗悬浮液相比,纳米柱术表现在AUC0-48中增加2.0倍。此外,与ISR的粗悬浮液相比,C max和ISR纳米术的最大值下降。这些研究证明,粒度减少可以影响胃肠道中的ISR吸收,因此纳米缺失技术负责提高大鼠口腔生物利用度。

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