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Studies on the Effect of Oil and Surfactant on the Formation of Alginate-Based O/W Lidocaine Nanocarriers Using Nanoemulsion Template

机译:用纳米乳液模板对油和表面活性剂对藻酸钠纳米载体形成的影响

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摘要

The application of various nanocarrier systems was widely explored in the field of pharmaceuticals to achieve better drug encapsulation and delivery. The aim of this study was to encapsulate lidocaine in alginate-based o/w nanocarriers based on the type of oil (i.e., solid or liquid), using a nanoemulsion template prepared by ultrasound-assisted phase inversion temperature (PIT) approach. The nanoemulsion template was initially prepared by dissolving lidocaine in the oil phase and surfactant and alginate in the aqueous phase, and keeping the PIT at around 85 °C, accompanied by gradual water dilution at 25 °C, to initiate the formation of nanoparticles (o/w) with the aid of low frequency ultrasound. The composition and concentration of the oil phase had a major impact on the particle size and led to an increase in the size of the droplet. The lipids that showed a higher drug solubility also showed higher particle size. On the other hand, increasing the concentration of surfactant decreases the size of the droplet before the concentration of the surfactant exceeds the limit, after which the size of the particle increases due to the aggregates that could be produced from the excess surfactant. The method used produced nanoemulsions that maintained nano-sized droplets < 50 nm, over long-term storage. Our findings are important for the design of nanocarrier systems for the encapsulation of lipophilic molecules.
机译:各种纳米载波系统的应用在药物领域中广泛探讨,以实现更好的药物封装和递送。本研究的目的是基于通过超声辅助相位倒置温度(PIT)方法制备的纳米乳剂模板,将Lidocaine封装在基于藻酸盐的O / W纳米载体中。最初通过将Liatocaine溶解在油相和表面活性剂中并在水相中藻酸盐来制备纳米乳剂模板,并将凹坑保持在85℃的约85℃,伴随在25℃下逐渐稀释,以引发纳米颗粒的形成(O. / w)借助低频超声波。油相的组成和浓度对粒度具有重大影响,并导致液滴尺寸的增加。显示出更高的药物溶解度的脂质也显示出更高的粒度。另一方面,在表面活性剂的浓度超过极限之前,表面活性剂的浓度降低了液滴的尺寸,之后颗粒的尺寸增加,由于可以由过量的表面活性剂制备的聚集体增加。使用生产的纳米乳液的方法将纳米液体液滴<50nm保持在长期储存。我们的发现对于纳米载波系统的封装脂质分子的设计非常重要。

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