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Cubosomes with surface cross-linked chitosan exhibit sustained release and bioavailability enhancement for vinpocetine

机译:具有表面交联壳聚糖的立方体脂质体对长春西汀具有持续释放和生物利用度增强的特性

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The present study aims to develop cubosomes with surface cross-linked chitosan for sustained drug delivery and enhanced oral bioavailability of vinpocetine (VPT). GMO based liquid cubosomes with VPT loading were prepared by the high pressure homogenization method. In order to enhance the anti-digestion effect, chitosan was cross-linked on cubosomes by the Schiff reaction, followed by solidification via spray drying. The obtained spray-dried cubosomes (chito-cubosomes) are spherical microspheres with nano-sized holes on the surface. After reconstitution, the particle size and zeta potential of chito-cubosomes were determined to be ~250 nm and +35.9 mV, respectively. In comparison to unmodified liquid cubosomes, chito-cubosomes exhibited a significant anti-digestion effect with a typical sustained release profile. In comparison to a VPT suspension, liquid cubosomes showed a 2.5-fold higher C _(max) and 3.0-fold higher AUC _(0–∞) , while chito-cubosomes further enhanced bioavailability (5.0-fold) with prolonged MRT (2.2-fold) and delayed T _(max) (2.8-fold). The results suggested that chito-cubosomes could be a promising drug carrier for enhancing oral absorption with sustained release behavior.
机译:本研究旨在开发具有表面交联壳聚糖的立方脂质体,以实现持续的药物输送并提高长春西汀(VPT)的口服生物利用度。通过高压均质化方法制备了具有VPT负载的GMO基液态立方脂质体。为了增强抗消化作用,壳聚糖通过席夫反应在立方脂质体上交联,然后通过喷雾干燥进行固化。所获得的喷雾干燥的立方脂质体(壳状脂质体)是在表面具有纳米级孔的球形微球。重构后,确定了壳立方微粒的粒径和ζ电势分别为〜250 nm和+35.9 mV。与未修饰的液体立方脂质体相比,壳立方脂质体具有显着的抗消化作用,具有典型的持续释放特性。与VPT悬浮液相比,液体立方脂质体的C _(max)高2.5倍,AUC _(0-∞)高3.0倍,而壳立方脂质体的MRT延长则进一步提高了生物利用度(5.0倍)(2.2 -倍)和延迟的T _(最大值)(2.8倍)。结果表明,壳聚糖小体可能是一种有希望的药物载体,可以通过持续释放的行为增强口服吸收。

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